WO1998048551A2 - Electronic business cards - Google Patents

Electronic business cards Download PDF

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Publication number
WO1998048551A2
WO1998048551A2 PCT/IB1998/000772 IB9800772W WO9848551A2 WO 1998048551 A2 WO1998048551 A2 WO 1998048551A2 IB 9800772 W IB9800772 W IB 9800772W WO 9848551 A2 WO9848551 A2 WO 9848551A2
Authority
WO
WIPO (PCT)
Prior art keywords
electronic business
business card
further including
user
receiving
Prior art date
Application number
PCT/IB1998/000772
Other languages
French (fr)
Other versions
WO1998048551A3 (en
Inventor
Brian Finlay Beaton
Colin Donald Smith
Original Assignee
Northern Telecom Limited
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Northern Telecom Limited filed Critical Northern Telecom Limited
Publication of WO1998048551A2 publication Critical patent/WO1998048551A2/en
Publication of WO1998048551A3 publication Critical patent/WO1998048551A3/en

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/26Devices for calling a subscriber
    • H04M1/27Devices whereby a plurality of signals may be stored simultaneously
    • H04M1/274Devices whereby a plurality of signals may be stored simultaneously with provision for storing more than one subscriber number at a time, e.g. using toothed disc
    • H04M1/2745Devices whereby a plurality of signals may be stored simultaneously with provision for storing more than one subscriber number at a time, e.g. using toothed disc using static electronic memories, e.g. chips
    • H04M1/27467Methods of retrieving data
    • H04M1/27475Methods of retrieving data using interactive graphical means or pictorial representations
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/26Devices for calling a subscriber
    • H04M1/27Devices whereby a plurality of signals may be stored simultaneously
    • H04M1/274Devices whereby a plurality of signals may be stored simultaneously with provision for storing more than one subscriber number at a time, e.g. using toothed disc
    • H04M1/2745Devices whereby a plurality of signals may be stored simultaneously with provision for storing more than one subscriber number at a time, e.g. using toothed disc using static electronic memories, e.g. chips
    • H04M1/2753Devices whereby a plurality of signals may be stored simultaneously with provision for storing more than one subscriber number at a time, e.g. using toothed disc using static electronic memories, e.g. chips providing data content
    • H04M1/2757Devices whereby a plurality of signals may be stored simultaneously with provision for storing more than one subscriber number at a time, e.g. using toothed disc using static electronic memories, e.g. chips providing data content by data transmission, e.g. downloading
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/57Arrangements for indicating or recording the number of the calling subscriber at the called subscriber's set
    • H04M1/575Means for retrieving and displaying personal data about calling party
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/57Arrangements for indicating or recording the number of the calling subscriber at the called subscriber's set
    • H04M1/575Means for retrieving and displaying personal data about calling party
    • H04M1/576Means for retrieving and displaying personal data about calling party associated with a pictorial or graphical representation
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72403User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72469User interfaces specially adapted for cordless or mobile telephones for operating the device by selecting functions from two or more displayed items, e.g. menus or icons
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/72Mobile telephones; Cordless telephones, i.e. devices for establishing wireless links to base stations without route selection
    • H04M1/724User interfaces specially adapted for cordless or mobile telephones
    • H04M1/72403User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality
    • H04M1/7243User interfaces specially adapted for cordless or mobile telephones with means for local support of applications that increase the functionality with interactive means for internal management of messages
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M2250/00Details of telephonic subscriber devices
    • H04M2250/22Details of telephonic subscriber devices including a touch pad, a touch sensor or a touch detector

Definitions

  • the present invention relates generally to graphical user interfaces in telephony, and more particularly to scrolling lists with automatic compression and expansion.
  • CLID Caller ID
  • PDAs Personal Digital Assistants
  • communicators that facilitate various types of communication such as voice, faxes, SMS (Short Messaging Services) messages, and Internet-related applications.
  • One such product offers a "contacts" feature for managing contact information including names, telephone numbers, and addresses. It also allows exchanging contact information as business cards in an
  • the product has separate, distinct applications that handle each type of communication tasks.
  • the distributed interface of the product is highly compartmentalized by applications, thus restricting the sharing of information between applications.
  • the telephone application and contacts application are completely independent and must be launched separately. Because the two applications do not share information, it sometimes requires the user to input the same information in both applications.
  • features of each application may only be activated within the respective application.
  • a user When a user is in a telephone application, for example, a user cannot manipulate a contacts card. Therefore, to modify or update a contacts card information, the user must launch a contacts application. Similarly, the user can initiate a call only from a telephone application and not from a contacts card.
  • the product does not allow information to be shared between the telephone application and the contacts application.
  • create card to create a new contacts card. Even so, these series of steps only transfers the telephone number but not the associated name to a new contacts card, and any additional information must be entered within the contacts application.
  • CLID information is used for display purposes only in providing information to the receiver about the caller. After the CLID information is displayed, it cannot be manipulated, transferred to another device or user, or used in other application programs.
  • CLID does not provide additional information that further defines the type of communication device or the location of the caller. For example, the receiver may not know or remember whether the displayed number is a wireline or wireless, or a work or home telephone number. This type of information would further assist the receiver in determining the caller's device and location, thus, further defining the importance of the call.
  • directories are stored in the memory of the communication device, which generally has limited storage capacity. This restricts the device's ability to store a desired amount of information in the device.
  • Related to this problem is the need to store information at different locations within the device. For example, speed dial data is stored separately from the main directory data. Not only does this duplicate the data entry process, data maintenance and updates need to be performed for each location to avoid unsynchronization of the data. Searching for an entry in the directory can also be tedious. Unless the user remembers the name of the entry and conducts a text search for the desired entry, the user must scroll through each entry sequentially. In doing so, if each entry contains many related fields, scrolling through each entry while displaying other unnecessary fields reduces the efficiency of the search. Not only does this slow down the search significantly, it also makes the search more difficult.
  • the directory does not present additional information that further defines the type of communication device or the location of the caller in an easily recognizable manner.
  • a method for providing electronic business cards for a communication device comprises several steps. Initially, a plurality of electronic business cards, each including a telephone number and associated information, are stored in a memory. A user input selecting one of the electronic business cards is received, upon which, the selected one of the electronic business cards is displayed. Thereafter, a user input selecting the telephone number of the displayed electronic business card is received, and a call is initiated automatically to the selected telephone number of the electronic business card.
  • a system for providing electronic business cards for a communication device comprises a database, a first and second receiving means, a display, and an initiating means.
  • a database stores a plurality of electronic business cards each including a telephone number and associated information and first means receives a user input selecting one of the electronic business cards.
  • a display then displays the selected one of the electronic business cards.
  • Second receiving means receives a user input selecting the telephone number of the displayed electronic business card, and the initiating means initiates a call automatically to the selected telephone number of the electronic business card.
  • Fig. 1 shows a prior art CLID display
  • Fig. 2 is a diagram of a communication network consistent with the principles of the present invention
  • Fig. 3 is a diagram of a mobile telephone shown in Fig. 2;
  • Fig. 4 is a block diagram showing the elements of the mobile telephone of Fig. 3;
  • Fig. 5 is a block diagram showing the components of the memory of Fig. 4;
  • Fig. 6 is a table illustrating the format of the information stored in the directory;
  • Fig. 7 is a flowchart illustrating the process for creating a new Electronic Business Card (EBC).
  • EBC Electronic Business Card
  • Figs. 8A-8D show sample screens for creating a new EBC
  • Fig. 9 is a table illustrating exemplary icons
  • Fig. 10 is a sample screen for creating or modifying an icon
  • Figs. 11A-1 IB show sample screens illustrating a completed EBC
  • Figs. 12A-12C show sample screens for creating an EBC using CLID information
  • Figs. 13A-13B show sample screens of the directory view of the entries;
  • Fig. 14 is a flowchart illustrating the process for the scrolling feature;
  • Figs. 15A-15B show sample screens of compressed and expanded view of the directory during scroll
  • Fig. 16 is a flowchart illustrating the process for transmitting an EBC;
  • Figs. 17A-17B show sample screens for sending an EBC;
  • Figs. 18 A- 18B show sample screens for receiving an EBC;
  • Fig. 19 is a flowchart illustrating the process for the drag-and-drop feature
  • Figs. 20A-20B show sample screens showing the drag-and-drop feature
  • Figs. 21A-21B show sample screens illustrating an exemplary application of the drag-and-drop feature .
  • Fig. 2 shows a communications network containing mobile telephone 210 preferably having the multitasking graphical user interface of the present invention.
  • a user communicates with a variety of communication equipment, including external servers and databases, such as network services provider 220, using mobile telephone 210.
  • the user also uses mobile telephone 210 to communicate with callers having different types of communication equipment, such as ordinary telephone 230, caller mobile telephone 240, similar to user mobile telephone 210, facsimile equipment 250, computer 260, and Analog Display Services Interface (ADSI) telephone 270.
  • the user communicates with network services provider 220 and caller communication equipment 230 through 270 over a communications network, such as GSM switching fabric 280.
  • Fig. 2 shows caller communication equipment 230 through 270 directly connected to GSM switching fabric 280.
  • Fig. 2 shows caller communication equipment 230 through 270 directly connected to GSM switching fabric 280, more typically, this equipment connects to GSM switching fabric 280 via another type of network, such as a Public Switched Telephone Network (PSTN).
  • PSTN Public Switched Telephone Network
  • GSM networks provide an error-free, guaranteed delivery transport mechanism by which callers can send short point-to-point messages, i.e., SMS messages, through the GSM network, such as GSM switching fabric 280, in a GSM signaling channel, simultaneously with, or without, a voice or data call.
  • GSM protocol limits the length of the short messages to a maximum of 140 bytes in length.
  • GSM protocol limits the length of the standard SMS text message to a maximum of 140 bytes.
  • GSM protocol permits longer messages to be formed by concatenating several messages together, transparent to the caller. Because GSM protocol performs concatenation transparently, the caller is not subject to any restriction on message length.
  • GSM telephone networks can transfer data as CLID information and USSD.
  • One example of such network is the GSM network, which facilitates the transfer of custom defined data.
  • the switches handling the call require an application program, consistent with the standard industry practice, capable of recognizing the USSD data structure to complete the transfer of data from one device to another device.
  • Mobile telephone 210 provides a user- friendly interface to facilitate incoming and outgoing communication by the user.
  • Fig. 3 shows that mobile telephone 210 includes main housing 310, antenna 320, keypad 330, and display 340.
  • Fig. 4 shows the hardware elements in mobile telephone 210 include antenna 410, communications module 420, feature processor 430, memory 440, sliding keypad 450, analog controller 460, display module 470, battery pack 480, and switching power supply 490.
  • Antenna 410 transmits and receives radio frequency information for mobile telephone 210.
  • Antenna 410 preferably comprises a planar inverted F antenna (PIFA)-type or a short stub (2 to 4 cm) custom helix antenna.
  • Antenna 410 communicates over GSM switching fabric 280 using a conventional voice B- channel, data B-channel, or GSM signaling channel connection.
  • Communications module 420 connects to antenna 410 and provides the
  • GSM radio baseband, and audio functionality for mobile telephone 210.
  • Communications module 420 includes GSM radio 421, VEGA 423, BOCK 425, and audio transducers 427.
  • GSM radio 421 converts the radio frequency information to/from the antenna into analog baseband information for presentation to VEGA 423.
  • VEGA 423 is preferably a Texas Instruments VEGA device, containing analog-to-digital (A/D)/digital-to-analog (D/A) conversion units 424.
  • VEGA 423 converts the analog baseband information from GSM radio 421 to digital information for presentation to BOCK 425.
  • BOCK 425 is preferably a Texas Instruments BOCK device containing a conventional ARM microprocessor and a conventional LEAD DSP device.
  • BOCK 425 performs GSM baseband processing for generating digital audio signals and supporting GSM protocols.
  • BOCK 425 supplies the digital audio signals to VEGA 423 for digital-to-analog conversion.
  • VEGA 423 applies the analog audio signals to audio transducers 427. Audio transducers 427 include speaker 428 and microphone 429 to facilitate audio communication by the user.
  • Feature processor 430 provides graphical user interface features and a Java Virtual Machine (JVM). Feature processor 430 communicates with BOCK 425 using high level messaging over an asynchronous (UART) data link. Feature processor 430 contains additional system circuitry, such as a liquid crystal display (LCD) controller, timers, UART and bus interfaces, and real time clock and system clock generators (not shown).
  • JVM Java Virtual Machine
  • Feature processor 430 contains additional system circuitry, such as a liquid crystal display (LCD) controller, timers, UART and bus interfaces, and real time clock and system clock generators (not shown).
  • LCD liquid crystal display
  • Memory 440 stores data and program code used by feature processor 430.
  • Memory 440 includes static RAM 442 and flash ROM 444.
  • Static RAM 442 is a volatile memory that stores data and other information used by feature processor
  • Flash ROM 444 is a non-volatile memory that stores the program code executed by feature processor 430.
  • Sliding keypad 450 enables the user to dial a telephone number, access remote databases, and manipulate the graphical user interface features.
  • Sliding keypad 450 preferably includes a mylar resistive key matrix that generates analog resistive voltage in response to actions by the user.
  • Sliding keypad 450 preferably connects to main housing 310 (Fig. 4) of mobile telephone 210 through two mechanical "push pin"-type contacts.
  • Analog controller 460 is preferably a Phillips UCB1100 device that acts as an interface between feature processor 430 and sliding keypad 450. Analog controller 460 converts the analog resistive voltage from sliding keypad 450 to digital signals for presentation to feature processor 430.
  • Display module 470 is preferably a 160 by 320 pixel LCD with an analog touch screen overlay and an electroluminescent backlight. Display module 470 operates in conjunction with feature processor 430 to display the graphical user interface features.
  • Battery pack 480 is preferably a single lithium-ion battery with active protection circuitry.
  • Switching power supply 490 ensures highly efficient use of the lithium-ion battery power by converting the voltage of the lithium-ion battery into stable voltages used by the other hardware elements of mobile telephone 210.
  • Fig. 5 is a block diagram illustrating the components of memory 440.
  • Static RAM 442 contains a database 510 storing various types of data including a table representing a telephone directory.
  • Flash ROM 444 contains various programs including a program 520, a dialpad program 525, a handwriting recognition program 530, an icon edit program 535, and a call object program 540.
  • Program 520 preferably written in languages such as Java, C, or C++ for Macintosh, is a main program overseeing the operation of mobile telephone 210.
  • Dialpad program 525 facilitates data entry using keypad 330 using a typical keypad algorithm.
  • Handwriting recognition program 530 recognizes and translates handwriting input from display 340.
  • Icon edit program 535 facilitates graphical input as bitmaps.
  • Programs 525, 530, and 535 may be one of any commercially available packages.
  • call object program 540 may be a user- defined special feature program or a macro for telephony.
  • CLID information is stored in a telephone network and delivered to the receiver's device.
  • Mobile telephone 210 stores and interacts with highly descriptive information in database 510 of Fig. 5.
  • all or part of the descriptive information may be stored at an external device or a central server.
  • Table 600 of Fig. 6 is a table illustrating the format of the information stored. Each row represents a single entry and each column within a row represents a field of the entry.
  • table 600 contains many fields including fields for the name of the person, title of the person, name of the organization, communication addresses or numbers (e.g., multiple telephone numbers, fax number, e-mail address) as well as their associated icon, and a field for user-defined text. For exemplary purposes, features of the present invention may be explained using a telephone number. However, telephone number is used hereinafter to refer to any communication address or number.
  • Program 520 displays each entry containing the fields in Fig. 6 in the form of a business card (hereinafter referred as Electronic Business Card or EBC). EBCs, including location icons, may be formatted as USSD
  • Unstructured Supplementary Service Data may be transmitted among users in the GSM network.
  • Fig. 7 shows a flowchart for creating a new EBC
  • Figs. 8A-8D show sample screens.
  • a user selects a "Name List” icon in screen 810 (step 700), which in turn displays an action menu 811 as shown in Fig. 8 A (step 705).
  • a display driver oversees the display in display 340.
  • program 520 presents screen 820 from which the user may enter the data for the new EBC (step 715).
  • the present invention facilitates many modes of data entry.
  • the user may enter the data using keypad 330, in which case dialpad program 525 interprets the input data.
  • the user may input data by touching an onscreen keyboard 822.
  • the user may enter data by writing on display 340, which is then interpreted by handwriting recognition program 530.
  • Voice command is another mode of data entry facilitated by state-of-the-art voice recognition technology.
  • Screen 820 (Fig. 8B) shows a blank EBC as it first appears. To assist the user, the blank EBC preferably contains watermark headings for each field.
  • program 520 displays scroll buttons 821 and 831 for the user to scroll the display up or down by simply touching scroll buttons 821 and 831.
  • the user may scroll using the hard keys on keypad 330.
  • the user is in the process of entering the name "Bobby
  • Screen 830 (Fig. 8C) is the bottom portion of the blank EBC displaying additional user-defined text at the bottom. If the user selects an icon selection button 832, program 520 displays a screen 840 (Fig. 8D) with an icon menu 841 containing several predesigned icons for various communication devices and locations, for example, home, cellular, business, facsimile, e-mail, or others. In an embodiment consistent with the present invention, the icons preferably represent some characteristic of the associated telephone number.
  • Fig. 9 is a table 900 illustrating certain exemplary icons.
  • Row 910 of table 900 shows exemplary icons representing the location or type of communication terminal of the telephone number, e.g., home, office, cellular, or car/mobile.
  • row 920 shows exemplary icons representing the type of communication channel, e.g.. e-mail, fax, SMS, or paging.
  • row 930 shows exemplary custom icons, e.g., special person or group, corporate/business identifiers, or special service.
  • icons may present a certain group of people.
  • Custom icons may also represent specialized services or pre-programmed macros. For example, a macro may perform all steps necessary to set up a conference call to a predetermined group of people.
  • One skilled in the art may, however, easily modify the number and the type of icons shown in icon menu 841 and table 900.
  • the user also has an option of creating a new icon or modifying an existing one under "Others" option of icon menu 841. If the user selects the "Other” option, program 520 initiates icon edit program 535, which opens an icon editing screen 1010 shown in Fig. 10. Icon editing screen 1010 contains an eraser button 1011 and a draw button 1012 to create or edit an icon.
  • Icon edit program 535 displays the actual size icon in an icon view button 1013 as it would appear in the name list. Icon edit program 535 also provides an enlarged view of the icon in an icon bitmap view 1014. The user may erase or draw in the bits of the icon using eraser button 1011 and draw button
  • erasure button 1011 or draw button 1012 a user may turn on or off each bit of the icon simply by touching each block of icon shown in icon editing screen 1010.
  • a user may utilize erasure button 1011 and draw button 1012 to erase or draw a large section of the icon.
  • Icon edit program 535 When the user finishes modifying the icons, the user may select a "Save" icon 1015 to save the modifications.
  • Icon edit program 535 then stores the updated icon in the corresponding icon field of table 600.
  • Program 520 also facilitates the user to add the new icon in icon menu 841 upon user selection. The user may also select to display the new icon in icon selection button 832 associated with a corresponding phone number.
  • Figs. 11A and 1 IB show exemplary screens 1110 and 1120, respectively, displaying a completed EBC.
  • the EBC may be stored in memory 440 of mobile telephone 210 or at a central location (step 725).
  • the central location may be a server, which may be connected to a telephone network or a data network.
  • a user can also create a new EBC using the CLID information transmitted over a telephone network, such as the GSM network. Specifically, if the user's device receives and displays the CLID information, i.e., the phone number of the caller, the user can create a new EBC by transferring the CLID information to the new EBC.
  • screen 1210 is an exemplary display, consistent with the present invention, of when the user receives a call from a caller.
  • CLID information "Bobby Bonito" and "738-9157,” appears in the name and number fields, respectively.
  • the user while on the phone with the caller, may select an information icon 1211 to display the EBC associated with the caller.
  • program 520 searches either the name or telephone field of stored EBCs to locate the match. If program 520 finds a match, program 520 displays the corresponding EBC.
  • screen 1220 presents an option to create a new EBC corresponding to the caller as shown in screen 1220. If the user selects not to create a new EBC, program 520 displays screen 1210 again for the remainder of the call. If the user chooses to create a new EBC for the caller, program 520 presents a blank EBC and automatically transfers the name and telephone numbers included in the CLID to the corresponding fields in the EBC. For example, screen 1230 (Fig. 12C) illustrates that the caller's name
  • "Bobby Bonito" and telephone number with the appropriate area code is transferred to the appropriate fields of the new EBC.
  • the telephone number is identified as a home number by the associated home icon in the CLID information. Accordingly, program 520 also assigns a home icon with the caller's number. The user may input the remaining information through any input method described above. Thereafter, program 520 stores the EBC as a new entry in table 600.
  • a new EBC may be created using information manually entered by the user to initiate a call. After the user has manually entered the telephone number of the recipient, the user may select the "Create card” option of action menu 811 before initiating the call, during the call, or after the completion of the call. After selecting the "Create card” option, the user may enter other fields for that entry to be stored in table 600.
  • program 520 can present the EBCs to the user as a directory.
  • a user can specify the fields of the EBC to be displayed in the directory by modifying program 520.
  • screen 1310 displays the EBCs as a name list with corresponding telephone numbers.
  • a user may view or search the name list by scrolling using screen-based graphical scroll keys or the hard scroll keys on keypad 330.
  • a tap on the scroll key advances the display of the name list incrementally, providing the full name list view in display 340 (step 1405).
  • program 520 may advance to the next telephone number with a tap on the scroll key. If the bottom line of display 340 is the last of several telephone numbers associated with a particular name, then program 520 may advance the display to the first telephone number of the next name.
  • a user may activate a call. To do so, the user simply touches the name or telephone field of the desired entry, which in turn causes program 520 to display the corresponding name and first telephone number with the associated icon in a call object 1311.
  • Program 520 also displays associated information icon 1211 (Fig. 12A) in call object 1311 (Fig. 13A).
  • Information icon 1211 displayed in call object 1311 or within the name list, may be selected to instantly display the EBC associated with the selected information icon 1211 as shown in screen 1320 of Fig. 13B.
  • call object 1311 is in a ready-mode, able to activate the associated object upon user selection.
  • call object 1311 activates call object program 540, which automatically initiates a call to the telephone number in call object 1311. If the user selects either the name or the telephone number field in call object 1311, program 520 activates call object program 540 to initiate a call.
  • program 520 displays a compressed view of the name list in display 340 (step 1415).
  • the compressed view displays only the name field of the name list as shown in screen 1510 of Fig. 15 A.
  • One skilled in the art may, however, easily modify the fields to be displayed in the compressed view of the name list.
  • program 520 displays the first entry in display 340 in a call object 1311.
  • the user may stop scrolling by releasing the scroll key.
  • program 520 Upon release (step 1420), program 520 automatically displays a full view of the entries from the compressed view as shown in screen 1520 of Fig. 15B (step 1425).
  • a user may initiate a call to the telephone number in call object 1311 by selecting a "Dial" button 1521. If the user wants to select another entry for call object 1311, the user simply selects the name or telephone field of the desired entry from display 340 and program 520 displays the selected entry in call object 1311.
  • the automatic compression and expansion feature is described in a telephony setting using mobile telephone 210 for explanatory purposes, one skilled in the art may easily apply this feature in any program or platform.
  • a user may navigate easily between the name list view and the EBC view. From the name list, if the user selects information icon 121 1, program 520 displays the EBC view of the entry associated with the selected information icon 1211. The EBC view floats in its own window over top of any existing displays. The user may return to the name list view by selecting a "Close" icon 1321.
  • While screen 1310 is displayed, a user may edit the entries of the directory using any one of the input methods discussed above. If the user selects information icon 1211, program 520 displays the EBC in full view. At this point, the user may add or edit any field of the EBC. The EBC floats on top of any currently running application and does not require the user to exit current application to launch a separate application to edit the EBC. Program 520 updates the stored EBC with the edits in the corresponding fields in table 600.
  • a user may also locate a particular entry of the name list without scrolling through each entry.
  • the user inputs a search text, for example, a specific name or keyword, and program 520 searches the fields of EBCs in table 600.
  • the present invention employs an incremental search algorithm to make the search easier for the user. For example, if user enters the letter "M" of "Mike,” program 520 will display the portion of the directory with names starting with the letter "M.” A particular icon may also be used as a search criteria.
  • CLID information is stored at a telephone network and includes names and telephone numbers.
  • the telephone network may also store icons associated with the telephone numbers (step 1600).
  • telephone networks may receive location icons from individual subscribers and store the icons with the associated telephone numbers.
  • a private telephone switch there may be a uniform location icon for all telephone numbers within the private switch.
  • One example is a large corporation having a private switch and associating all telephone numbers of the corporation with a corporate location icon.
  • the telephone network When a call is initiated (step 1605), the telephone network transmits the CLID information (step 1610). Shortly thereafter, the telephone network also transmits any USSD, such as a location icon (step 1615).
  • program 520 searches table 600 for an entry corresponding to the telephone number included in the CLID (step 1620). If there is a match (step 1625), then program 520 displays the CLID information with the icon associated with the transmitted telephone number from table 600 (step 1630). If there is no match in table 600 (step 1625), then program 520 displays the CLID information with the transmitted icon in display 340 (step 1635). As described above in connection with Figs. 12A-12C, program 520 presents an option to create an EBC using the transmitted CLID information and the associated icon (step 1640).
  • the location icon provides visual assistance to the receiver in quickly determining the location or the type of device of the caller. Additionally, if the caller's device can display graphical images, the telephone network transmits the recipient's CLID information including the associated icon. There are efforts to develop standards and designing systems for capturing and transmitting GPS
  • USSD Global Positioning System
  • the present invention is well suited to incorporate such a feature.
  • the user may be presented with more precise GPS information about the caller's location by touching the location icon.
  • USSD is transmitted with a call from a caller or a non-ringing call from the switch over the telephone network.
  • a non-ringing call from the switch occurs when the user's device is turned on and communication takes place between the telephone network and the device for standard maintenance transactions such as determining the location of the device or updating the program on the user's device for a subscriber feature.
  • the transmitted information may be sent as a data packet of approximately 140 bytes. There are typically two possible times for transmitting USSD with respect to the timing of a call.
  • the user can also send and receive an EBC to another user over the GSM network.
  • the transmitted EBC may contain the data shown in table 600.
  • EBC may be transmitted as an SMS text message in a similar environment as described above in connection with CLID and associated icons.
  • EBCs may be stored at a central server accessible by any third party from which third party users may download the EBCs.
  • the EBCs stored at the central server might be voluntarily submitted by users wanting to provide public access to their
  • EBC EBC
  • the user selects the "Send Card” option of action menu 811 in Fig. 8.
  • program 520 prompts the user to input the name and phone number of the recipient as well as the name field of the EBC to be sent.
  • An exemplary display 1710 of Fig. 17A illustrates the user sending an EBC
  • the user Upon verifying this information, the user activates the transmission by selecting a "Send” icon 1721 of screen 1720 of Fig. 17B. The user may also abort the send option by selecting a "Quit" icon 1722. Alternatively, the user may send an EBC while the user is engaged in a voice call with the recipient or a third party.
  • the user can also receive an EBC from another user regardless of whether the user is engaged in a voice call.
  • program 520 displays the source of the EBC and the EBC itself as shown in screen 1810 of Fig. 18 A.
  • "Colin Smith” is engaged in a voice call with the user.
  • "Colin Smith” has also sent an EBC of "Bobby Bonito” to the user, who has an option to select any one of "Save” icon 1811, "Discard” icon 1812, or "Quit” icon 1813.
  • program 520 automatically incorporates the fields of the received EBC into the corresponding fields of a new EBC in table 600. For example, "Bobby Bonito" is automatically saved in the name field of the new EBC. After program 520 saves the new EBC in either memory 440 or at a central location, program 520 displays a name list view of the new entry as shown in screen 1820 of Fig. 18B.
  • CLID information may also be used in various application programs. Specifically, when
  • Fig. 19 is a flow chart of a process for a drag-and-drop feature. First, the user drags the call object containing the CLID information over to a desired application icon using a mouse, a finger, a stylus or other selection and pointing devices (step
  • Fig. 20A shows a screen 2010 and the user selecting call object 2011 containing CLID information by touching anywhere in call object 2011 except one of the optional buttons, e.g., Hold and Hang Up. While maintaining pressure on call object 2011, if the user starts to drag call object 2011, program 520 minimizes call object 2011 as shown in screen 2020 of Fig. 20B (step 1905). Minimizing the size of call object 2011 enables the user to move around and position call object 2011 onto the desired program icon.
  • the launched program then incorporates the CLID information into appropriate fields in the launched program (step 1930).
  • This drag-and-drop feature automatically transferring CLID information for use in another program is useful in many settings. For example, a reservation desk at a hotel receives a call from a customer. The hotel, upon receiving the call, has the customer's CLID information displayed in mobile telephone 210. If the customer requests a reservation for a room, the hotel clerk can drag call object 2011 onto a calendar reservation program as shown in screen 2110 of Fig. 21 A. Upon release of minimized call object 2011, program 520 initiates the calendar reservation program and the reservation program incorporates the CLID information into name and telephone number fields of the reservation form as shown in screen 2120 of Fig. 2 IB. As mentioned above, the drag-and-drop feature may launch any program.
  • the programs to be launched are pre-programmed to transfer the CLID information automatically into appropriate fields in the launched program.
  • a user may pre-program any program likely to utilize the CLID information to accommodate the drag-and-drop feature. If the user mistakenly drags-and-drops call object 2011 onto a program icon that has not been preprogrammed (step 1915), program 520 displays an error message or simply displays screen 2010 (step 1920).
  • the drag-and-drop feature saves time and increases accuracy of the information by eliminating the need for the clerk to solicit and type in the name and telephone number information manually. Once the clerk verifies the CLID information is that of the caller, the CLID information may be automatically incorporated into a desired program.
  • the identity or the location of the caller does not correspond to the CLID information. For example, if the registered name of a household phone is "John Wilson" and "Alice Wilson" calls from that phone for a reservation, only the telephone number would be correct. Similarly, some callers may be calling from a different residence, public phone, or an office phone. When only part of CLID information corresponds to the caller, the hotel clerk, in the example, only needs to obtain and enter the incorrect field. If neither field corresponds to the caller, both the name and telephone numbers are entered manually.
  • the drag-and-drop feature is particularly useful in environments where only one person uses a telephone number. For example, wireless telephone is likely to be used by only one person and provides a desirable forum for implementing the drag-and-drop feature. The same holds true for desktop telephones. CONCLUSION
  • the system and method consistent with the present invention provide a graphical icon identifying the caller's identity and the location of the call. It also facilitates the manipulation of the CLID information to offer enhanced user interfaces such as EBC and drag-and-drop. Additionally, the present invention improves searching and display of a directory, for example, by automatic compression and expansion of the directory during scrolling.

Abstract

A method of providing electronic business cards for a communication device for a telephone network, the method comprising the steps of: storing in a memory a plurality of electronic business cards each including a telephone number and associated information; receiving a user input selecting one of the electronic business cards; displaying the selected one of the electronic business cards; receiving a user input selecting the telephone number of the displayed electronic business card; and initiating a call automatically to the selected telephone number of the electronic business card.

Description

ELECTRONIC BUSINESS CARDS
RELATED APPLICATIONS This application is related to U.S. patent application, Serial No. 08/842,015 (Atty. Docket No. 3884.0085-00), entitled MULTITASKING GRAPHICAL USER INTERFACE; U.S. patent application, Serial No.08/841,486
(Atty. Docket No. 3884.0087-00), entitled SCROLLING WITH AUTOMATIC COMPRESSION AND EXPANSION; U.S. patent application, Serial No.08/842,019 (Atty. Docket No. 3884.0088-00), entitled CALLING LINE IDENTIFICATION WITH LOCATION ICON; U.S. patent application, Serial No.08/842,017 (Atty. Docket No. 3884.0089-00), entitled CALLING LINE
IDENTIFICATION WITH DRAG AND DROP CAPABILITY; U.S. patent application, Serial No. 08/842,020 (Atty. Docket No. 3884.0090-00), entitled INTEGRATED MESSAGE CENTER; and U.S. patent application, Serial No.08/842,036 (Atty. Docket No. 3884.0091-00), entitled ICONIZED NAME LIST, all of which are filed concurrently herewith, and all of which are hereby incorporated by reference.
BACKGROUND OF THE INVENTION The present invention relates generally to graphical user interfaces in telephony, and more particularly to scrolling lists with automatic compression and expansion.
In light of the rapid technological developments and globalization of the world economy, the role of telecommunication is becoming increasingly important. As such, there is a growing focus on using state of the art computer technology to provide new and improved telecommunication capabilities. The capability of combining voice and digital data transmission is enabled by the GSM
(Global System for Mobile Communications) protocol.
One popular feature, commonly referred to as Caller ID or CLID (Calling Line Identification), displays the caller's name and telephone number on the receiver's device as shown in Fig. 1. CLID information is stored at a public
RECTIFIED SHEET (RULE 91) ISA/EP telephone network and delivered to the receiver's display device if the receiver subscribes to the Caller ID feature.
There are also telephones that can store a list containing names, multiple telephone numbers, and address information. PDAs (Personal Digital Assistants), provide graphical icons associated with particular telephone numbers.
Also available today are communicators that facilitate various types of communication such as voice, faxes, SMS (Short Messaging Services) messages, and Internet-related applications. One such product offers a "contacts" feature for managing contact information including names, telephone numbers, and addresses. It also allows exchanging contact information as business cards in an
SMS message.
Conventional devices, however, have two distinct modes of operation: open and closed. When closed, the product operates as a telephone and the user cannot access the display of the contacts cards. To display the contacts cards, the product must be open and in hands-free mode. When the product is open, if the phone part of the product was not previously turned on, the user must close the product and turn on the phone part of the product, then reopen the product in PDA mode to make a call.
Additionally, the product has separate, distinct applications that handle each type of communication tasks. The distributed interface of the product is highly compartmentalized by applications, thus restricting the sharing of information between applications. Specifically, the telephone application and contacts application are completely independent and must be launched separately. Because the two applications do not share information, it sometimes requires the user to input the same information in both applications. Furthermore, features of each application may only be activated within the respective application.
When a user is in a telephone application, for example, a user cannot manipulate a contacts card. Therefore, to modify or update a contacts card information, the user must launch a contacts application. Similarly, the user can initiate a call only from a telephone application and not from a contacts card.
Even if a user enters a telephone number in a telephone application, this information cannot be saved in a contacts application as a new contacts card.
Likewise, the product does not allow information to be shared between the telephone application and the contacts application.
To create a contacts card, the user must launch the contacts application, select "logs," choose a communication event (such as call received), then press
"create card" to create a new contacts card. Even so, these series of steps only transfers the telephone number but not the associated name to a new contacts card, and any additional information must be entered within the contacts application.
To initiate a call, the user must leave the contacts application by pressing the hard key for "telephone." The telephone directory displays only the names but not related fields.
Current telecommunication features also do not take full advantage of
CLID information. Specifically, CLID information is used for display purposes only in providing information to the receiver about the caller. After the CLID information is displayed, it cannot be manipulated, transferred to another device or user, or used in other application programs.
Additionally, besides the name and the number of the caller, CLID does not provide additional information that further defines the type of communication device or the location of the caller. For example, the receiver may not know or remember whether the displayed number is a wireline or wireless, or a work or home telephone number. This type of information would further assist the receiver in determining the caller's device and location, thus, further defining the importance of the call.
Generally, telephone networks only transmit the caller's CLID information to the receiver. There are currently some private networks that transmit CLID information to both the caller and the receiver. As mentioned above, however, the transmitted CLID information has been limited to only the name and the number of the other party.
Moreover, directories are stored in the memory of the communication device, which generally has limited storage capacity. This restricts the device's ability to store a desired amount of information in the device. Related to this problem is the need to store information at different locations within the device. For example, speed dial data is stored separately from the main directory data. Not only does this duplicate the data entry process, data maintenance and updates need to be performed for each location to avoid unsynchronization of the data. Searching for an entry in the directory can also be tedious. Unless the user remembers the name of the entry and conducts a text search for the desired entry, the user must scroll through each entry sequentially. In doing so, if each entry contains many related fields, scrolling through each entry while displaying other unnecessary fields reduces the efficiency of the search. Not only does this slow down the search significantly, it also makes the search more difficult.
Additionally, the directory does not present additional information that further defines the type of communication device or the location of the caller in an easily recognizable manner.
Therefore, it is desirable to integrate various telecommunication applications to simplify user interfaces and facilitate efficient information sharing.
It is also desirable to manipulate the CLID information to provide enhanced user interfaces.
It is further desirable to provide additional information related to the CLID to better identify the caller's identity and location of the call. In addition, it is further desirable to improve the search feature to scroll through the directory more easily.
SUMMARY OF THE INVENTION Systems and methods consistent with the present invention automatically compress and expand the display of the directory during scrolling. Specifically, a method for providing electronic business cards for a communication device consistent with this invention comprises several steps. Initially, a plurality of electronic business cards, each including a telephone number and associated information, are stored in a memory. A user input selecting one of the electronic business cards is received, upon which, the selected one of the electronic business cards is displayed. Thereafter, a user input selecting the telephone number of the displayed electronic business card is received, and a call is initiated automatically to the selected telephone number of the electronic business card.
A system for providing electronic business cards for a communication device comprises a database, a first and second receiving means, a display, and an initiating means. A database stores a plurality of electronic business cards each including a telephone number and associated information and first means receives a user input selecting one of the electronic business cards. A display then displays the selected one of the electronic business cards. Second receiving means receives a user input selecting the telephone number of the displayed electronic business card, and the initiating means initiates a call automatically to the selected telephone number of the electronic business card.
BRIEF DESCRIPTION OF THE DRAWINGS The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate the invention and together with the description, serve to explain the principles of the invention.
In the drawings,
Fig. 1 shows a prior art CLID display;
Fig. 2 is a diagram of a communication network consistent with the principles of the present invention; Fig. 3 is a diagram of a mobile telephone shown in Fig. 2;
Fig. 4 is a block diagram showing the elements of the mobile telephone of Fig. 3;
Fig. 5 is a block diagram showing the components of the memory of Fig. 4; Fig. 6 is a table illustrating the format of the information stored in the directory;
Fig. 7 is a flowchart illustrating the process for creating a new Electronic Business Card (EBC);
Figs. 8A-8D show sample screens for creating a new EBC; Fig. 9 is a table illustrating exemplary icons;
Fig. 10 is a sample screen for creating or modifying an icon; Figs. 11A-1 IB show sample screens illustrating a completed EBC; Figs. 12A-12C show sample screens for creating an EBC using CLID information;
Figs. 13A-13B show sample screens of the directory view of the entries; Fig. 14 is a flowchart illustrating the process for the scrolling feature;
Figs. 15A-15B show sample screens of compressed and expanded view of the directory during scroll;
Fig. 16 is a flowchart illustrating the process for transmitting an EBC; Figs. 17A-17B show sample screens for sending an EBC; Figs. 18 A- 18B show sample screens for receiving an EBC;
Fig. 19 is a flowchart illustrating the process for the drag-and-drop feature; Figs. 20A-20B show sample screens showing the drag-and-drop feature; and
Figs. 21A-21B show sample screens illustrating an exemplary application of the drag-and-drop feature .
DESCRIPTION OF THE PREFERRED EMBODIMENT Reference will now be made in detail to the present preferred embodiment of the invention, an example of which is illustrated in the accompanying drawings. Where appropriate, the same reference numerals refer to the same or similar elements. While the appended claims define the scope of the invention, the following description does not limit that scope. System Architecture
Fig. 2 shows a communications network containing mobile telephone 210 preferably having the multitasking graphical user interface of the present invention. A user communicates with a variety of communication equipment, including external servers and databases, such as network services provider 220, using mobile telephone 210.
The user also uses mobile telephone 210 to communicate with callers having different types of communication equipment, such as ordinary telephone 230, caller mobile telephone 240, similar to user mobile telephone 210, facsimile equipment 250, computer 260, and Analog Display Services Interface (ADSI) telephone 270. The user communicates with network services provider 220 and caller communication equipment 230 through 270 over a communications network, such as GSM switching fabric 280. Fig. 2 shows caller communication equipment 230 through 270 directly connected to GSM switching fabric 280. Although Fig. 2 shows caller communication equipment 230 through 270 directly connected to GSM switching fabric 280, more typically, this equipment connects to GSM switching fabric 280 via another type of network, such as a Public Switched Telephone Network (PSTN).
The user communicates with a caller or network services provider 220 by establishing either a voice call, a data call, or by sending an SMS message. GSM networks provide an error-free, guaranteed delivery transport mechanism by which callers can send short point-to-point messages, i.e., SMS messages, through the GSM network, such as GSM switching fabric 280, in a GSM signaling channel, simultaneously with, or without, a voice or data call. GSM protocol limits the length of the short messages to a maximum of 140 bytes in length. GSM protocol limits the length of the standard SMS text message to a maximum of 140 bytes. However, GSM protocol permits longer messages to be formed by concatenating several messages together, transparent to the caller. Because GSM protocol performs concatenation transparently, the caller is not subject to any restriction on message length.
GSM telephone networks can transfer data as CLID information and USSD. One example of such network is the GSM network, which facilitates the transfer of custom defined data. The switches handling the call, however, require an application program, consistent with the standard industry practice, capable of recognizing the USSD data structure to complete the transfer of data from one device to another device.
Mobile telephone 210 provides a user- friendly interface to facilitate incoming and outgoing communication by the user. Fig. 3 shows that mobile telephone 210 includes main housing 310, antenna 320, keypad 330, and display 340. Fig. 4 shows the hardware elements in mobile telephone 210 include antenna 410, communications module 420, feature processor 430, memory 440, sliding keypad 450, analog controller 460, display module 470, battery pack 480, and switching power supply 490. Antenna 410 transmits and receives radio frequency information for mobile telephone 210. Antenna 410 preferably comprises a planar inverted F antenna (PIFA)-type or a short stub (2 to 4 cm) custom helix antenna. Antenna 410 communicates over GSM switching fabric 280 using a conventional voice B- channel, data B-channel, or GSM signaling channel connection. Communications module 420 connects to antenna 410 and provides the
GSM radio, baseband, and audio functionality for mobile telephone 210. Communications module 420 includes GSM radio 421, VEGA 423, BOCK 425, and audio transducers 427.
GSM radio 421 converts the radio frequency information to/from the antenna into analog baseband information for presentation to VEGA 423. VEGA
423 is preferably a Texas Instruments VEGA device, containing analog-to-digital (A/D)/digital-to-analog (D/A) conversion units 424. VEGA 423 converts the analog baseband information from GSM radio 421 to digital information for presentation to BOCK 425. BOCK 425 is preferably a Texas Instruments BOCK device containing a conventional ARM microprocessor and a conventional LEAD DSP device. BOCK 425 performs GSM baseband processing for generating digital audio signals and supporting GSM protocols. BOCK 425 supplies the digital audio signals to VEGA 423 for digital-to-analog conversion. VEGA 423 applies the analog audio signals to audio transducers 427. Audio transducers 427 include speaker 428 and microphone 429 to facilitate audio communication by the user.
Feature processor 430 provides graphical user interface features and a Java Virtual Machine (JVM). Feature processor 430 communicates with BOCK 425 using high level messaging over an asynchronous (UART) data link. Feature processor 430 contains additional system circuitry, such as a liquid crystal display (LCD) controller, timers, UART and bus interfaces, and real time clock and system clock generators (not shown).
Memory 440 stores data and program code used by feature processor 430. Memory 440 includes static RAM 442 and flash ROM 444. Static RAM 442 is a volatile memory that stores data and other information used by feature processor
430. Flash ROM 444, on the other hand, is a non-volatile memory that stores the program code executed by feature processor 430.
Sliding keypad 450 enables the user to dial a telephone number, access remote databases, and manipulate the graphical user interface features. Sliding keypad 450 preferably includes a mylar resistive key matrix that generates analog resistive voltage in response to actions by the user. Sliding keypad 450 preferably connects to main housing 310 (Fig. 4) of mobile telephone 210 through two mechanical "push pin"-type contacts.
Analog controller 460 is preferably a Phillips UCB1100 device that acts as an interface between feature processor 430 and sliding keypad 450. Analog controller 460 converts the analog resistive voltage from sliding keypad 450 to digital signals for presentation to feature processor 430.
Display module 470 is preferably a 160 by 320 pixel LCD with an analog touch screen overlay and an electroluminescent backlight. Display module 470 operates in conjunction with feature processor 430 to display the graphical user interface features.
Battery pack 480 is preferably a single lithium-ion battery with active protection circuitry. Switching power supply 490 ensures highly efficient use of the lithium-ion battery power by converting the voltage of the lithium-ion battery into stable voltages used by the other hardware elements of mobile telephone 210.
Fig. 5 is a block diagram illustrating the components of memory 440. Static RAM 442 contains a database 510 storing various types of data including a table representing a telephone directory.
Flash ROM 444 contains various programs including a program 520, a dialpad program 525, a handwriting recognition program 530, an icon edit program 535, and a call object program 540. Program 520, preferably written in languages such as Java, C, or C++ for Macintosh, is a main program overseeing the operation of mobile telephone 210.
Dialpad program 525 facilitates data entry using keypad 330 using a typical keypad algorithm. Handwriting recognition program 530 recognizes and translates handwriting input from display 340. Icon edit program 535 facilitates graphical input as bitmaps. Programs 525, 530, and 535 may be one of any commercially available packages. Finally, call object program 540 may be a user- defined special feature program or a macro for telephony.
Currently, CLID information is stored in a telephone network and delivered to the receiver's device. Mobile telephone 210, consistent with the present invention, stores and interacts with highly descriptive information in database 510 of Fig. 5. Alternatively, all or part of the descriptive information may be stored at an external device or a central server.
Table 600 of Fig. 6 is a table illustrating the format of the information stored. Each row represents a single entry and each column within a row represents a field of the entry. In one embodiment of the present invention, table 600 contains many fields including fields for the name of the person, title of the person, name of the organization, communication addresses or numbers (e.g., multiple telephone numbers, fax number, e-mail address) as well as their associated icon, and a field for user-defined text. For exemplary purposes, features of the present invention may be explained using a telephone number. However, telephone number is used hereinafter to refer to any communication address or number. Program 520 displays each entry containing the fields in Fig. 6 in the form of a business card (hereinafter referred as Electronic Business Card or EBC). EBCs, including location icons, may be formatted as USSD
(Unstructured Supplementary Service Data) and may be transmitted among users in the GSM network.
Fig. 7 shows a flowchart for creating a new EBC, and Figs. 8A-8D show sample screens. First, a user selects a "Name List" icon in screen 810 (step 700), which in turn displays an action menu 811 as shown in Fig. 8 A (step 705). A display driver oversees the display in display 340. If the user selects a "Create card" option (step 710), program 520 presents screen 820 from which the user may enter the data for the new EBC (step 715).
The present invention facilitates many modes of data entry. For example, the user may enter the data using keypad 330, in which case dialpad program 525 interprets the input data. Alternatively, the user may input data by touching an onscreen keyboard 822. Also, the user may enter data by writing on display 340, which is then interpreted by handwriting recognition program 530. Voice command is another mode of data entry facilitated by state-of-the-art voice recognition technology. Screen 820 (Fig. 8B) shows a blank EBC as it first appears. To assist the user, the blank EBC preferably contains watermark headings for each field. If display 340 cannot display the full screen, program 520 displays scroll buttons 821 and 831 for the user to scroll the display up or down by simply touching scroll buttons 821 and 831. Alternatively, the user may scroll using the hard keys on keypad 330. In screen 820, the user is in the process of entering the name "Bobby
Bon" (step 720).
Screen 830 (Fig. 8C) is the bottom portion of the blank EBC displaying additional user-defined text at the bottom. If the user selects an icon selection button 832, program 520 displays a screen 840 (Fig. 8D) with an icon menu 841 containing several predesigned icons for various communication devices and locations, for example, home, cellular, business, facsimile, e-mail, or others. In an embodiment consistent with the present invention, the icons preferably represent some characteristic of the associated telephone number.
Fig. 9 is a table 900 illustrating certain exemplary icons. Row 910 of table 900 shows exemplary icons representing the location or type of communication terminal of the telephone number, e.g., home, office, cellular, or car/mobile. Next, row 920 shows exemplary icons representing the type of communication channel, e.g.. e-mail, fax, SMS, or paging. Finally, row 930 shows exemplary custom icons, e.g., special person or group, corporate/business identifiers, or special service. As illustrated, icons may present a certain group of people. Custom icons may also represent specialized services or pre-programmed macros. For example, a macro may perform all steps necessary to set up a conference call to a predetermined group of people. One skilled in the art may, however, easily modify the number and the type of icons shown in icon menu 841 and table 900.
The user also has an option of creating a new icon or modifying an existing one under "Others" option of icon menu 841. If the user selects the "Other" option, program 520 initiates icon edit program 535, which opens an icon editing screen 1010 shown in Fig. 10. Icon editing screen 1010 contains an eraser button 1011 and a draw button 1012 to create or edit an icon.
In the example icon editing screen 1010, a user has selected to edit an existing home icon. Icon edit program 535 displays the actual size icon in an icon view button 1013 as it would appear in the name list. Icon edit program 535 also provides an enlarged view of the icon in an icon bitmap view 1014. The user may erase or draw in the bits of the icon using eraser button 1011 and draw button
1012.
Alternatively, rather than using erasure button 1011 or draw button 1012, a user may turn on or off each bit of the icon simply by touching each block of icon shown in icon editing screen 1010. In this embodiment, a user may utilize erasure button 1011 and draw button 1012 to erase or draw a large section of the icon.
When the user finishes modifying the icons, the user may select a "Save" icon 1015 to save the modifications. Icon edit program 535 then stores the updated icon in the corresponding icon field of table 600. Program 520 also facilitates the user to add the new icon in icon menu 841 upon user selection. The user may also select to display the new icon in icon selection button 832 associated with a corresponding phone number.
Figs. 11A and 1 IB show exemplary screens 1110 and 1120, respectively, displaying a completed EBC. In one embodiment consistent with the present invention, the EBC may be stored in memory 440 of mobile telephone 210 or at a central location (step 725). The central location may be a server, which may be connected to a telephone network or a data network.. A user can also create a new EBC using the CLID information transmitted over a telephone network, such as the GSM network. Specifically, if the user's device receives and displays the CLID information, i.e., the phone number of the caller, the user can create a new EBC by transferring the CLID information to the new EBC.
Referring to Fig. 12 A, screen 1210 is an exemplary display, consistent with the present invention, of when the user receives a call from a caller. CLID information, "Bobby Bonito" and "738-9157," appears in the name and number fields, respectively. The user, while on the phone with the caller, may select an information icon 1211 to display the EBC associated with the caller. Upon selection, program 520 searches either the name or telephone field of stored EBCs to locate the match. If program 520 finds a match, program 520 displays the corresponding EBC.
If, however, there is no match, screen 1220 (Fig. 12B) presents an option to create a new EBC corresponding to the caller as shown in screen 1220. If the user selects not to create a new EBC, program 520 displays screen 1210 again for the remainder of the call. If the user chooses to create a new EBC for the caller, program 520 presents a blank EBC and automatically transfers the name and telephone numbers included in the CLID to the corresponding fields in the EBC. For example, screen 1230 (Fig. 12C) illustrates that the caller's name
"Bobby Bonito" and telephone number with the appropriate area code is transferred to the appropriate fields of the new EBC. The telephone number is identified as a home number by the associated home icon in the CLID information. Accordingly, program 520 also assigns a home icon with the caller's number. The user may input the remaining information through any input method described above. Thereafter, program 520 stores the EBC as a new entry in table 600.
A new EBC may be created using information manually entered by the user to initiate a call. After the user has manually entered the telephone number of the recipient, the user may select the "Create card" option of action menu 811 before initiating the call, during the call, or after the completion of the call. After selecting the "Create card" option, the user may enter other fields for that entry to be stored in table 600.
Once the EBCs have been created and stored, program 520 can present the EBCs to the user as a directory. A user can specify the fields of the EBC to be displayed in the directory by modifying program 520. In an exemplary display shown in Fig. 13 A, screen 1310 displays the EBCs as a name list with corresponding telephone numbers.
Referring to Fig. 14, which is a flowchart of a process for implementing a scrolling feature, a user may view or search the name list by scrolling using screen-based graphical scroll keys or the hard scroll keys on keypad 330. A tap on the scroll key (step 1400) advances the display of the name list incrementally, providing the full name list view in display 340 (step 1405). One skilled in the art may easily vary the amount of advancement in the display. For example, program 520 may advance to the next telephone number with a tap on the scroll key. If the bottom line of display 340 is the last of several telephone numbers associated with a particular name, then program 520 may advance the display to the first telephone number of the next name.
From the full view of the name list, a user may activate a call. To do so, the user simply touches the name or telephone field of the desired entry, which in turn causes program 520 to display the corresponding name and first telephone number with the associated icon in a call object 1311. Program 520 also displays associated information icon 1211 (Fig. 12A) in call object 1311 (Fig. 13A). Information icon 1211, displayed in call object 1311 or within the name list, may be selected to instantly display the EBC associated with the selected information icon 1211 as shown in screen 1320 of Fig. 13B.
To select another one of the several telephone numbers associated with the selected name, a user touches the desired telephone number. Program 520 then displays the selected telephone number in call object 1311. Call object 1311 is in a ready-mode, able to activate the associated object upon user selection. In one embodiment, call object 1311 activates call object program 540, which automatically initiates a call to the telephone number in call object 1311. If the user selects either the name or the telephone number field in call object 1311, program 520 activates call object program 540 to initiate a call.
If the scroll key is pressed and held for a continuous scroll (step 1410), program 520 displays a compressed view of the name list in display 340 (step 1415). In one embodiment of the present invention, the compressed view displays only the name field of the name list as shown in screen 1510 of Fig. 15 A. One skilled in the art may, however, easily modify the fields to be displayed in the compressed view of the name list.
As shown in screen 1510, during the scroll, program 520 displays the first entry in display 340 in a call object 1311. The user may stop scrolling by releasing the scroll key. Upon release (step 1420), program 520 automatically displays a full view of the entries from the compressed view as shown in screen 1520 of Fig. 15B (step 1425).
As mentioned above, a user may initiate a call to the telephone number in call object 1311 by selecting a "Dial" button 1521. If the user wants to select another entry for call object 1311, the user simply selects the name or telephone field of the desired entry from display 340 and program 520 displays the selected entry in call object 1311. Although the automatic compression and expansion feature is described in a telephony setting using mobile telephone 210 for explanatory purposes, one skilled in the art may easily apply this feature in any program or platform.
From the directory, a user may navigate easily between the name list view and the EBC view. From the name list, if the user selects information icon 121 1, program 520 displays the EBC view of the entry associated with the selected information icon 1211. The EBC view floats in its own window over top of any existing displays. The user may return to the name list view by selecting a "Close" icon 1321.
While screen 1310 is displayed, a user may edit the entries of the directory using any one of the input methods discussed above. If the user selects information icon 1211, program 520 displays the EBC in full view. At this point, the user may add or edit any field of the EBC. The EBC floats on top of any currently running application and does not require the user to exit current application to launch a separate application to edit the EBC. Program 520 updates the stored EBC with the edits in the corresponding fields in table 600.
A user may also locate a particular entry of the name list without scrolling through each entry. Specifically, the user inputs a search text, for example, a specific name or keyword, and program 520 searches the fields of EBCs in table 600. The present invention employs an incremental search algorithm to make the search easier for the user. For example, if user enters the letter "M" of "Mike," program 520 will display the portion of the directory with names starting with the letter "M." A particular icon may also be used as a search criteria. Once program
520 locates the desired EBC, it displays the portion of the name list corresponding to the located entry.
As previously mentioned, CLID information is stored at a telephone network and includes names and telephone numbers. Referring to Fig. 16, in one embodiment consistent with the present invention, the telephone network may also store icons associated with the telephone numbers (step 1600). In one implementation consistent with the present invention, telephone networks may receive location icons from individual subscribers and store the icons with the associated telephone numbers. For a private telephone switch, there may be a uniform location icon for all telephone numbers within the private switch. One example is a large corporation having a private switch and associating all telephone numbers of the corporation with a corporate location icon.
When a call is initiated (step 1605), the telephone network transmits the CLID information (step 1610). Shortly thereafter, the telephone network also transmits any USSD, such as a location icon (step 1615).
Once a call is transmitted to the receiver's mobile telephone 210, program 520 searches table 600 for an entry corresponding to the telephone number included in the CLID (step 1620). If there is a match (step 1625), then program 520 displays the CLID information with the icon associated with the transmitted telephone number from table 600 (step 1630). If there is no match in table 600 (step 1625), then program 520 displays the CLID information with the transmitted icon in display 340 (step 1635). As described above in connection with Figs. 12A-12C, program 520 presents an option to create an EBC using the transmitted CLID information and the associated icon (step 1640).
The location icon provides visual assistance to the receiver in quickly determining the location or the type of device of the caller. Additionally, if the caller's device can display graphical images, the telephone network transmits the recipient's CLID information including the associated icon. There are efforts to develop standards and designing systems for capturing and transmitting GPS
(Global Positioning System) protocol. The present invention is well suited to incorporate such a feature. For example, the user may be presented with more precise GPS information about the caller's location by touching the location icon. USSD is transmitted with a call from a caller or a non-ringing call from the switch over the telephone network. A non-ringing call from the switch occurs when the user's device is turned on and communication takes place between the telephone network and the device for standard maintenance transactions such as determining the location of the device or updating the program on the user's device for a subscriber feature. The transmitted information may be sent as a data packet of approximately 140 bytes. There are typically two possible times for transmitting USSD with respect to the timing of a call. It may be transmitted either shortly after the CLID information transfer but before user pick up, or after the completion of the call. USSD may be transmitted, however, at other times. The user can also send and receive an EBC to another user over the GSM network. The transmitted EBC may contain the data shown in table 600. The
EBC may be transmitted as an SMS text message in a similar environment as described above in connection with CLID and associated icons. Alternatively, EBCs may be stored at a central server accessible by any third party from which third party users may download the EBCs. The EBCs stored at the central server might be voluntarily submitted by users wanting to provide public access to their
EBC. To send an EBC to another user, the user selects the "Send Card" option of action menu 811 in Fig. 8. Upon the user's selection, program 520 prompts the user to input the name and phone number of the recipient as well as the name field of the EBC to be sent. An exemplary display 1710 of Fig. 17A illustrates the user sending an
EBC of "Arlan Anderson" to "Bobby Bonito." Upon verifying this information, the user activates the transmission by selecting a "Send" icon 1721 of screen 1720 of Fig. 17B. The user may also abort the send option by selecting a "Quit" icon 1722. Alternatively, the user may send an EBC while the user is engaged in a voice call with the recipient or a third party.
The user can also receive an EBC from another user regardless of whether the user is engaged in a voice call. When mobile telephone 210 receives an EBC, program 520 displays the source of the EBC and the EBC itself as shown in screen 1810 of Fig. 18 A. In this sample display, "Colin Smith" is engaged in a voice call with the user. "Colin Smith" has also sent an EBC of "Bobby Bonito" to the user, who has an option to select any one of "Save" icon 1811, "Discard" icon 1812, or "Quit" icon 1813.
If the user selects "Save" icon 1811, program 520 automatically incorporates the fields of the received EBC into the corresponding fields of a new EBC in table 600. For example, "Bobby Bonito" is automatically saved in the name field of the new EBC. After program 520 saves the new EBC in either memory 440 or at a central location, program 520 displays a name list view of the new entry as shown in screen 1820 of Fig. 18B.
In addition to incorporating the CLID information in the directory, CLID information may also be used in various application programs. Specifically, when
CLID information of the caller is displayed in mobile telephone 210 of the user, the user may incorporate the CLID information to launch other programs. Fig. 19 is a flow chart of a process for a drag-and-drop feature. First, the user drags the call object containing the CLID information over to a desired application icon using a mouse, a finger, a stylus or other selection and pointing devices (step
1900). Fig. 20A shows a screen 2010 and the user selecting call object 2011 containing CLID information by touching anywhere in call object 2011 except one of the optional buttons, e.g., Hold and Hang Up. While maintaining pressure on call object 2011, if the user starts to drag call object 2011, program 520 minimizes call object 2011 as shown in screen 2020 of Fig. 20B (step 1905). Minimizing the size of call object 2011 enables the user to move around and position call object 2011 onto the desired program icon.
After the minimized call object 2011 is graphically overlaid on the desired program icon, the user releases the pressure on call object 2011 (step 1910). Thereafter, program 520 launches the program associated with the program icon
(step 1925). The launched program then incorporates the CLID information into appropriate fields in the launched program (step 1930).
This drag-and-drop feature automatically transferring CLID information for use in another program is useful in many settings. For example, a reservation desk at a hotel receives a call from a customer. The hotel, upon receiving the call, has the customer's CLID information displayed in mobile telephone 210. If the customer requests a reservation for a room, the hotel clerk can drag call object 2011 onto a calendar reservation program as shown in screen 2110 of Fig. 21 A. Upon release of minimized call object 2011, program 520 initiates the calendar reservation program and the reservation program incorporates the CLID information into name and telephone number fields of the reservation form as shown in screen 2120 of Fig. 2 IB. As mentioned above, the drag-and-drop feature may launch any program.
The programs to be launched are pre-programmed to transfer the CLID information automatically into appropriate fields in the launched program.
Therefore, a user may pre-program any program likely to utilize the CLID information to accommodate the drag-and-drop feature. If the user mistakenly drags-and-drops call object 2011 onto a program icon that has not been preprogrammed (step 1915), program 520 displays an error message or simply displays screen 2010 (step 1920). The drag-and-drop feature saves time and increases accuracy of the information by eliminating the need for the clerk to solicit and type in the name and telephone number information manually. Once the clerk verifies the CLID information is that of the caller, the CLID information may be automatically incorporated into a desired program.
There are occasions where the identity or the location of the caller does not correspond to the CLID information. For example, if the registered name of a household phone is "John Wilson" and "Alice Wilson" calls from that phone for a reservation, only the telephone number would be correct. Similarly, some callers may be calling from a different residence, public phone, or an office phone. When only part of CLID information corresponds to the caller, the hotel clerk, in the example, only needs to obtain and enter the incorrect field. If neither field corresponds to the caller, both the name and telephone numbers are entered manually. The drag-and-drop feature is particularly useful in environments where only one person uses a telephone number. For example, wireless telephone is likely to be used by only one person and provides a desirable forum for implementing the drag-and-drop feature. The same holds true for desktop telephones. CONCLUSION
The system and method consistent with the present invention provide a graphical icon identifying the caller's identity and the location of the call. It also facilitates the manipulation of the CLID information to offer enhanced user interfaces such as EBC and drag-and-drop. Additionally, the present invention improves searching and display of a directory, for example, by automatic compression and expansion of the directory during scrolling.
It will be apparent to those skilled in the art that various modifications and variations can be made in the system of the present invention and in construction of this system without departing from the scope or spirit of the invention. Other embodiments of the invention will be apparent to those skilled in the art from consideration of the specification and practice of the invention disclosed herein. The specification and examples should be considered as exemplary only, with the true scope and spirit of the invention indicated by the following claims.

Claims

WHAT IS CLAIMED IS:
1. A method of providing electronic business cards for a communication device for a telephone network, the method comprising the steps of: storing in a memory a plurality of electronic business cards each including a telephone number and associated information; receiving a user input selecting one of the electronic business cards; displaying the selected one of the electronic business cards; receiving a user input selecting the telephone number of the displayed electronic business card; and initiating a call automatically to the selected telephone number of the electronic business card.
2. The method of claim 1 further including the step of displaying the selected electronic business card.
3. The method of claim 1 wherein the initiating step further includes the substeps of correlating a call object to the selected electronic business card, and activating the call object to call the telephone number associated with the selected electronic business card.
4. The method of claim 1 wherein the selecting step includes the substep of accessing the electronic business cards by scrolling the electronic business cards on a display.
5. The method of claim 1 wherein the selecting step includes the substep of accessing the electronic business cards by searching a particular field of the electronic business card.
6. The method of claim 1 further including the step of sending the electronic business card to another user of the telephone network.
7. The method of claim 1 further including the step of receiving the electronic business card from another user of the telephone network.
8. The method of claim 7 further including the step of storing the received electronic business card in the memory.
9. The method of claim 1 wherein the storing step includes the substep of storing the electronic business cards in the memory of the communication device.
10. The method of claim 1 wherein the storing step includes the substep of storing the electronic business cards in the memory of a central computer.
11. The method of claim 1 further including the steps of receiving from a user a request to create a new electronic business card, and receiving input data corresponding to the new electronic business card.
12. The method of claim 11 further including the steps of creating the new electronic business card, and storing the new electronic business card in the memory.
13. The method of claim 1 further including the steps of receiving from a user a request to edit the electronic business card, and receiving input data editing the electronic business card.
14. The method of claim 13 further including the steps of editing the electronic business card with the received input data, and storing the edited electronic business card in the memory.
15. The method of claim 1 further including the step of displaying the electronic business card on a display while a user is engaged in a voice communication on the communication device.
16. The method of claim 1 wherein the initiating step includes a substep of initiating the call automatically over a GSM network to the telephone number associated with the selected entry.
17. A method of providing electronic business cards for a communication device for a telephone network, the method comprising the steps of: receiving a call from a caller and associated caller ID information; receiving a user request to create a new electronic business card; and creating the electronic business card by automatically incorporating the caller ID information into the new electronic business card.
18. The method of claim 17 further including the step of storing the electronic business card in a memory of the communication device.
19. The method of claim 17 further including the step of storing the electronic business card in a memory of a central computer.
20. The method of claim 17 further including the step of accessing the electronic business card by scrolling a particular field of the electronic business card on a display.
21. The method of claim 17 further including the step of accessing the electronic business card by searching a particular field of the electronic business cards.
22. The method of claim 17 wherein the creating step includes the substep of receiving from a user additional information corresponding to the electronic business card.
23. The method of claim 17 further including the step of sending the electronic business card to another user of the telephone network.
24. The method of claim 17 further including the step of receiving the electronic business card from another user of the telephone network.
25. The method of claim 24 further including the step of storing the received electronic business card in a memory.
26. The method of claim 17 further including the steps of receiving from a user a request to edit the electronic business card, and receiving input data editing the electronic business card.
27. The method of claim 13 further including the steps of editing the electronic business card with the received input data, and storing the edited electronic business card in the memory.
28. The method of claim 17 further including the step of displaying the electronic business card on a display of the communication device while a user is engaged in a voice communication using the communication device.
29. The method of claim 17 wherein the receiving step includes a substep of receiving the call from the caller over a GSM network.
30. A system for providing electronic business cards for a communication device for a telephone network, comprising: a database for storing a plurality of electronic business cards each including a telephone number and associated information; first means for receiving a user input selecting one of the electronic business cards; a display for displaying the selected one of the electronic business cards; second means for receiving a user input selecting the telephone number of the displayed electronic business card; and means for initiating a call automatically to the selected telephone number of the electronic business card.
31. The system of claim 30 further including a display for displaying the selected electronic business card.
32. The system of claim 30 wherein the initiating means further includes means for correlating a call object to the selected electronic business card, and means for activating the call object to call the telephone number associated with the selected electronic business card.
33. The system of claim 30 wherein the selecting means includes means for accessing the electronic business cards by scrolling the electronic business cards on a display.
34. The system of claim 30 wherein the selecting means includes means for accessing the electronic business cards by searching a particular field of the electronic business card.
35. The system of claim 30 further including means for sending the electronic business card to another user of the telephone network.
36. The system of claim 30 further including means for receiving the electronic business card from another user of the telephone network.
37. The system of claim 36 further including means for storing the received electronic business card.
38. The system of claim 30 wherein the communication device has a memory, and wherein the database resides in the memory of the communication device.
39. The system of claim 30 further including a central computer having a memory, and wherein the database resides in the memory of the central computer.
40. The system of claim 30 further including means for receiving from a user a request to create a new electronic business card, and means for receiving input data corresponding to the new electronic business card.
41. The system of claim 40 further including means for creating the new electronic business card, and means for storing the new electronic business card.
42. The system of claim 30 further including means for receiving from a user a request to edit the electronic business card, and means for receiving input data editing the electronic business card.
43. The system of claim 42 further including means for editing the electronic business card with the received input data, and means for storing the edited electronic business card.
44. The system of claim 30 further including means for displaying the electronic business card while a user is engaged in a voice communication on the communication device.
45. The system of claim 30 wherein the initiating means includes means for initiating the call automatically over a GSM network to the telephone number associated with the selected entry.
46. A system for providing electronic business cards for a communication device for a telephone network, comprising: first means for receiving a call from a caller and associated caller ID information; second means for receiving a user request to create a new electronic business card; and means for creating the electronic business card by automatically incoφorating the caller ID information into the new electronic business card.
47. The system of claim 46 further including means for storing the electronic business card in the communication device.
48. The system of claim 46 further including means for storing the electronic business card in a central computer.
49. The system of claim 46 further including means for accessing the electronic business card by scrolling a particular field of the electronic business card on a display.
50. The system of claim 46 further including means for accessing the electronic business card by searching a particular field of the electronic business cards.
51. The system of claim 46 wherein the creating means includes means for receiving from a user additional information corresponding to the electronic business card.
52. The system of claim 46 further including means for sending the electronic business card to another user of the telephone network.
53. The system of claim 46 further including means for receiving the electronic business card from another user of the telephone network.
54. The system of claim 53 further including means for storing the received electronic business card.
55. The system of claim 46 further including means for receiving from a user a request to edit the electronic business card, and means for receiving input data editing the electronic business card.
56. The method of claim 55 further including means for editing the electronic business card with the received input data, and means for storing the edited electronic business card.
57. The system of claim 46 further including means for displaying the electronic business card on a display of the communication device while a user is engaged in a voice communication using the communication device.
58. The system of claim 46 wherein the first receiving means includes means for receiving the call from the caller over a GSM network.
PCT/IB1998/000772 1997-04-23 1998-04-21 Electronic business cards WO1998048551A2 (en)

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Cited By (18)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2000045586A1 (en) * 1999-01-28 2000-08-03 Boris Katic Telephone-business card
EP1094657A1 (en) * 1999-10-18 2001-04-25 BRITISH TELECOMMUNICATIONS public limited company Mobile conferencing system and method
WO2001037161A2 (en) * 1999-11-12 2001-05-25 Ericsson Inc Intelligent system for managing profiles of subscribers
US6254001B1 (en) * 1999-02-22 2001-07-03 George Ming Fai Chan Electronic business card device
WO2001061444A2 (en) * 2000-02-18 2001-08-23 Vtech Mobile Limited Mobile telephone with improved man machine interface
WO2002042938A1 (en) * 2000-11-21 2002-05-30 Cionsoft Co., Ltd. System and method for retrieving an electronic business card by using network
US6412689B1 (en) * 1999-04-22 2002-07-02 Kabushiki Kaisha Toshiba Communication equipment and method for business card information interchange
EP1246433A2 (en) * 2001-03-27 2002-10-02 Nokia Corporation Communication terminal handling user to user information received during a call
AU765611B2 (en) * 1998-09-09 2003-09-25 Nec Infrontia Corporation Telephone directory address storing method and information terminal having telephone function as well as storage medium on which program therefor is recorded
WO2008030762A2 (en) * 2006-09-06 2008-03-13 Apple Inc. Missed telephone call management for a portable multifunction device
WO2008030778A1 (en) * 2006-09-06 2008-03-13 Apple Inc. Incoming telephone call management for a portable multifunction device with touch screen display
US7718655B2 (en) 2001-10-12 2010-05-18 New York University Trisubstituted triazine compounds, and methods for making and using the compounds, which have antitubulin activity
US7975242B2 (en) 2007-01-07 2011-07-05 Apple Inc. Portable multifunction device, method, and graphical user interface for conference calling
US8090087B2 (en) 2006-10-26 2012-01-03 Apple Inc. Method, system, and graphical user interface for making conference calls
US8205157B2 (en) 2008-03-04 2012-06-19 Apple Inc. Methods and graphical user interfaces for conducting searches on a portable multifunction device
US8229478B2 (en) 2003-05-22 2012-07-24 Nokia Corporation Method for updating session initiation information in connection with a telephone call and a terminal device using the method
DE10226105B4 (en) * 2002-06-12 2013-01-17 Siemens Aktiengesellschaft Method for identifying a telecommunication subscriber
US8589374B2 (en) 2009-03-16 2013-11-19 Apple Inc. Multifunction device with integrated search and application selection

Families Citing this family (126)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US8677384B2 (en) 2003-12-12 2014-03-18 At&T Intellectual Property I, L.P. Methods and systems for network based capture of television viewer generated clickstreams
US7587323B2 (en) 2001-12-14 2009-09-08 At&T Intellectual Property I, L.P. System and method for developing tailored content
US8640160B2 (en) 1997-01-06 2014-01-28 At&T Intellectual Property I, L.P. Method and system for providing targeted advertisements
US5946684A (en) 1997-02-18 1999-08-31 Ameritech Corporation Method and system for providing computer-network related information about a calling party
US5978806A (en) * 1997-02-18 1999-11-02 Ameritech Corporation Method and apparatus for communicating information about a called party to a calling party
US6782088B1 (en) * 1998-08-31 2004-08-24 Lucent Technologies Inc. Apparatus and method for downloading a forwarding telephone number
AU6410699A (en) 1998-10-13 2000-05-01 Chris Cheah Method and system for controlled distribution of information over a network
US7003546B1 (en) 1998-10-13 2006-02-21 Chris Cheah Method and system for controlled distribution of contact information over a network
US6628756B2 (en) * 1998-11-27 2003-09-30 Yair Avitsur System and method for telephone number verification and identification
US20060288298A1 (en) * 1999-08-12 2006-12-21 Robert Haitani System, method and technique for enabling users to interact with address fields of messaging applications
US20060288297A1 (en) * 1999-08-12 2006-12-21 Robert Haitani System, method and technique for enabling users to interact and edit address fields of messaging applications
US20020055351A1 (en) * 1999-11-12 2002-05-09 Elsey Nicholas J. Technique for providing personalized information and communications services
US7284033B2 (en) * 1999-12-14 2007-10-16 Imahima Inc. Systems for communicating current and future activity information among mobile internet users and methods therefor
JP5246827B2 (en) * 1999-12-14 2013-07-24 ジャンジ、ニラジ Improved system and method for coordinating current and future behavioral information among mobile internet users
US7822823B2 (en) 1999-12-14 2010-10-26 Neeraj Jhanji Systems for communicating current and future activity information among mobile internet users and methods therefor
US20070226240A1 (en) * 2000-01-19 2007-09-27 Sony Ericsson Mobile Communications Ab Technique for providing data objects prior to call establishment
JP2001223783A (en) * 2000-02-04 2001-08-17 Sony Corp System, device, and method for information processing, program storage medium and telephone set
US6920110B2 (en) * 2001-02-14 2005-07-19 Microsoft Corporation System and method for transferring data over a network
US7437428B1 (en) * 2000-02-16 2008-10-14 Microsoft Corporation System and method for transferring data over a network
US7017109B1 (en) * 2000-02-18 2006-03-21 Hewlett-Packard Development Company, L.P. E-service to manage contact information and signature ECards
US6633311B1 (en) * 2000-02-18 2003-10-14 Hewlett-Packard Company, L.P. E-service to manage and export contact information
US6889213B1 (en) * 2000-02-18 2005-05-03 Hewlett-Packard Development Company, L.P. E-service to manage contact information with privacy levels
CN1271870C (en) * 2000-04-04 2006-08-23 宋承翰 Information management system by means of portable appliances via wire or wireless Internet and the method for the same
US7127237B2 (en) * 2000-06-29 2006-10-24 Kabushiki Kaisha Toshiba Communication terminal having caller identification information display function
JP2002092303A (en) * 2000-07-13 2002-03-29 Fumio Ri Managing system and using program for personal information
GB2366697A (en) * 2000-08-31 2002-03-13 Nokia Mobile Phones Ltd Transmission of user profile via messaging service
US8332553B2 (en) 2000-09-21 2012-12-11 Hewlett-Packard Development Company, L.P. Method and apparatus for accessing a contacts database and telephone services
US7099921B1 (en) * 2000-10-16 2006-08-29 Hall Aluminum Llc Method and apparatus for people to simply communicate their location and activity information
US6941127B2 (en) * 2000-12-12 2005-09-06 Yamaha Corporation Portable telephone apparatus
US20020076015A1 (en) * 2000-12-15 2002-06-20 Norwitz Grant N. Comprehensive message communication system
US6681004B2 (en) * 2001-03-22 2004-01-20 Koninklijke Philips Electronics N.V. Telephone memory aid
US20040029567A1 (en) * 2001-05-25 2004-02-12 Timmins Timothy A. Technique for effectively providing personalized communications and information assistance services
US7085358B2 (en) 2001-06-25 2006-08-01 Bellsouth Intellectual Property Corporation Visual caller identification
JP4215968B2 (en) * 2001-07-10 2009-01-28 シャープ株式会社 Communication system, terminal used in the communication system, communication method in the terminal, and program for communication in the terminal
US7315614B2 (en) 2001-08-14 2008-01-01 At&T Delaware Intellectual Property, Inc. Remote notification of communications
US7692667B2 (en) * 2001-08-17 2010-04-06 Palm, Inc. Handheld computer having moveable segments that are interactive with an integrated display
US20030043974A1 (en) * 2001-09-04 2003-03-06 Emerson Harry E. Stored profile system for storing and exchanging user communications profiles to integrate the internet with the public switched telephone network
KR100405048B1 (en) * 2001-09-10 2003-11-07 주식회사 케이티프리텔 System and method for modifying display formation of mobile phone
US7269249B2 (en) 2001-09-28 2007-09-11 At&T Bls Intellectual Property, Inc. Systems and methods for providing user profile information in conjunction with an enhanced caller information system
US20110178877A1 (en) 2001-12-14 2011-07-21 Swix Scott R Advertising and content management systems and methods
US7212979B1 (en) 2001-12-14 2007-05-01 Bellsouth Intellectuall Property Corporation System and method for identifying desirable subscribers
US9967633B1 (en) 2001-12-14 2018-05-08 At&T Intellectual Property I, L.P. System and method for utilizing television viewing patterns
US7086075B2 (en) * 2001-12-21 2006-08-01 Bellsouth Intellectual Property Corporation Method and system for managing timed responses to A/V events in television programming
US7315618B1 (en) 2001-12-27 2008-01-01 At&T Bls Intellectual Property, Inc. Voice caller ID
US8086491B1 (en) 2001-12-31 2011-12-27 At&T Intellectual Property I, L. P. Method and system for targeted content distribution using tagged data streams
JP3709377B2 (en) * 2002-02-18 2005-10-26 日本電気株式会社 Mobile phone with business card substitution function
US20030212819A1 (en) * 2002-05-09 2003-11-13 Russell Ryan S. Transferring data wirelessly between digital devices
US20040203642A1 (en) * 2002-05-31 2004-10-14 Peter Zatloukal Population of directory search results into a wireless mobile phone
US7139374B1 (en) 2002-07-23 2006-11-21 Bellsouth Intellectual Property Corp. System and method for gathering information related to a geographical location of a callee in a public switched telephone network
US7623645B1 (en) 2002-07-23 2009-11-24 At&T Intellectual Property, I, L.P. System and method for gathering information related to a geographical location of a caller in a public switched telephone network
KR100635325B1 (en) * 2002-09-19 2006-10-18 리서치 인 모션 리미티드 System and method for accessing contact information on a communication device
US7734028B2 (en) * 2002-09-30 2010-06-08 Avaya Inc. Method and apparatus for delivering enhanced caller identification services to a called party
US7221748B1 (en) * 2002-11-12 2007-05-22 Bellsouth Intellectual Property Corporation Method for linking call log information to address book entries and replying using medium of choice
US7412042B2 (en) * 2003-02-14 2008-08-12 Grape Technology Group, Inc. Technique for providing information assistance including a concierge-type service
US20090171807A1 (en) * 2003-03-05 2009-07-02 Sandy Kosloff System and method for interactive electronic data card with survey and purchase options
US20040210455A1 (en) * 2003-03-05 2004-10-21 Sandy Kosloff Method and apparatus for promoting individuals and companies and marketing the goods and services of others
US7463727B2 (en) * 2003-04-18 2008-12-09 At&T International Property, I, L.P. Caller ID messaging device
US7978833B2 (en) 2003-04-18 2011-07-12 At&T Intellectual Property I, L.P. Private caller ID messaging
US7443964B2 (en) 2003-04-18 2008-10-28 At&T Intellectual Property, I,L.P. Caller ID messaging
US7295852B1 (en) 2003-05-01 2007-11-13 Palm, Inc. Automated telephone conferencing method and system
US7865180B2 (en) 2003-06-23 2011-01-04 Palm, Inc. Automated telephone conferencing method and system
US7133062B2 (en) * 2003-07-31 2006-11-07 Polycom, Inc. Graphical user interface for video feed on videoconference terminal
US7280647B2 (en) * 2003-08-07 2007-10-09 Microsoft Corporation Dynamic photo caller identification
US7623849B2 (en) 2003-11-13 2009-11-24 At&T Intellectual Property, I, L.P. Method, system, and storage medium for providing comprehensive originator identification services
GB2409607A (en) * 2003-12-23 2005-06-29 Symbian Ltd Caller ID using a movie clip
US7672444B2 (en) 2003-12-24 2010-03-02 At&T Intellectual Property, I, L.P. Client survey systems and methods using caller identification information
US20090008440A1 (en) * 2004-03-05 2009-01-08 Sandy Kosloff System and method for interactive electronic data card
US8195136B2 (en) 2004-07-15 2012-06-05 At&T Intellectual Property I, L.P. Methods of providing caller identification information and related registries and radiotelephone networks
US8965457B2 (en) * 2004-08-09 2015-02-24 Blackberry Limited Method and apparatus for controlling an electronic device display for presenting information on said display
JP2006080707A (en) * 2004-09-08 2006-03-23 Nec Corp Telephone system, server device, information display method used for them, and program of information display method
JP2006101469A (en) * 2004-09-29 2006-04-13 Microsoft Corp Terminal for exchanging electronic business card
WO2006056785A2 (en) * 2004-11-25 2006-06-01 Sms Card Limited Data processing
GB2425192A (en) * 2004-11-25 2006-10-18 Sms Card Ltd Providing up-to-date contact information
US7974877B2 (en) * 2005-06-23 2011-07-05 Microsoft Corporation Sending and receiving electronic business cards
US20060293905A1 (en) * 2005-06-23 2006-12-28 Microsoft Corporation Exchanging electronic business cards over digital media
US8559928B2 (en) * 2005-06-29 2013-10-15 Nokia Corporation Mobile communication terminal, method, and computer program product
JP4800686B2 (en) * 2005-06-30 2011-10-26 マイクロソフト コーポレーション Electronic business card exchange system and method
US8078993B2 (en) * 2005-08-08 2011-12-13 Hewlett-Packard Development Company, L.P. Operating multiple views on a computing device in connection with a wireless communication session
US7680513B2 (en) 2005-08-08 2010-03-16 Palm, Inc. Contact-centric user-interface features for computing devices
US20070130153A1 (en) * 2005-12-02 2007-06-07 Palm, Inc. Techniques to communicate and process location information from communications networks on a mobile computing device
US8005194B2 (en) * 2005-12-21 2011-08-23 Hewlett-Packard Development Company, L.P. Technique for handling incoming reply messages
DE102006026273A1 (en) * 2006-06-02 2007-12-06 Gerhard Kaspar Electronic visiting card transmitting method involves sending message by mobile telephone to connected server-computer through mobile network, where contact information assigned to digital visiting cards is stored on server-computer
US11019007B1 (en) 2006-07-13 2021-05-25 United Services Automobile Association (Usaa) Systems and methods for providing electronic official documents
US20080147497A1 (en) * 2006-12-13 2008-06-19 Tischer Steven N Advertising and content management systems and methods
US20080243868A1 (en) * 2007-03-27 2008-10-02 Sholem Weisner Method and apparatus for a digital leg history
US10146871B2 (en) 2007-03-27 2018-12-04 Sholem Weisner Method and apparatus for a digital leg history
US10225389B2 (en) * 2007-06-29 2019-03-05 Nokia Technologies Oy Communication channel indicators
US8572216B2 (en) * 2007-08-08 2013-10-29 Yahoo! Inc. Social network building
US8160226B2 (en) 2007-08-22 2012-04-17 At&T Intellectual Property I, L.P. Key word programmable caller ID
US8243909B2 (en) 2007-08-22 2012-08-14 At&T Intellectual Property I, L.P. Programmable caller ID
US8126519B2 (en) 2007-08-31 2012-02-28 Hewlett-Packard Development Company, L.P. Housing for mobile computing device having construction to slide and pivot into multiple positions
US8150482B2 (en) 2008-01-08 2012-04-03 Hewlett-Packard Development Company, L.P. Mobile computing device with moveable housing segments
US8233948B2 (en) 2007-12-11 2012-07-31 Hewlett-Packard Development Company, L.P. Slider assembly for a housing of a mobile computing device
US9817540B2 (en) * 2007-12-31 2017-11-14 Intel Corporation Device, system, and method of composing logical computing platforms
US8200298B2 (en) 2008-01-08 2012-06-12 Hewlett-Packard Development Company, L.P. Keypad housing configuration for a mobile computing device
US20100081419A1 (en) * 2008-09-26 2010-04-01 Htc Corporation Communication method and communication device thereof
US20100175000A1 (en) * 2009-01-08 2010-07-08 Microsoft Corporation Dynamically creating and managing alternate contacts list
US8452959B2 (en) * 2009-02-24 2013-05-28 Research In Motion Limited Method and system for registering a presence user with a presence service
US8060572B2 (en) * 2009-02-24 2011-11-15 Research In Motion Limited Subscription management for a content-based presence service
US8606233B2 (en) * 2009-02-24 2013-12-10 Blackberry Limited Content-based publication-subscription system for presence information
US20100217614A1 (en) * 2009-02-24 2010-08-26 Research In Motion Limited Method and system for updating a virtual business card
US8370482B2 (en) * 2009-11-30 2013-02-05 Xerox Corporation Method and system for storing and distributing social and business contact information online
SG172508A1 (en) 2010-01-04 2011-07-28 Smart Communications Inc System and method for a global directory service
US8594280B1 (en) 2010-02-03 2013-11-26 Zvi Or-Bach Systems and methods for visual presentation and selection of IVR menu
US8553859B1 (en) 2010-02-03 2013-10-08 Tal Lavian Device and method for providing enhanced telephony
US8879698B1 (en) 2010-02-03 2014-11-04 Tal Lavian Device and method for providing enhanced telephony
US8681951B1 (en) 2010-02-03 2014-03-25 Tal Lavian Systems and methods for visual presentation and selection of IVR menu
US8687777B1 (en) 2010-02-03 2014-04-01 Tal Lavian Systems and methods for visual presentation and selection of IVR menu
US8537989B1 (en) 2010-02-03 2013-09-17 Tal Lavian Device and method for providing enhanced telephony
US8548131B1 (en) 2010-02-03 2013-10-01 Tal Lavian Systems and methods for communicating with an interactive voice response system
US8903073B2 (en) 2011-07-20 2014-12-02 Zvi Or-Bach Systems and methods for visual presentation and selection of IVR menu
US9001819B1 (en) 2010-02-18 2015-04-07 Zvi Or-Bach Systems and methods for visual presentation and selection of IVR menu
US8625756B1 (en) 2010-02-03 2014-01-07 Tal Lavian Systems and methods for visual presentation and selection of IVR menu
US8548135B1 (en) 2010-02-03 2013-10-01 Tal Lavian Systems and methods for visual presentation and selection of IVR menu
US8572303B2 (en) 2010-02-03 2013-10-29 Tal Lavian Portable universal communication device
WO2011114354A1 (en) * 2010-03-17 2011-09-22 Zipdial Mobile Solutions Pvt. Ltd. Service triggering by call attempt
KR101227904B1 (en) * 2011-07-13 2013-01-30 수 남 채 Method for transferring mobile name card and Recording Media therefor
US8694485B2 (en) * 2011-07-14 2014-04-08 Normand Pigeon Interactive media card
US8731148B1 (en) 2012-03-02 2014-05-20 Tal Lavian Systems and methods for visual presentation and selection of IVR menu
US8867708B1 (en) 2012-03-02 2014-10-21 Tal Lavian Systems and methods for visual presentation and selection of IVR menu
US20140207806A1 (en) * 2013-01-21 2014-07-24 Samsung Electronics Co., Ltd. Method and apparatus for processing information of a terminal
USD799526S1 (en) * 2014-03-30 2017-10-10 Sorenson Ip Holdings, Llc Display screen or portion thereof of a captioning communication device with graphical user interface
US9264461B1 (en) 2015-01-16 2016-02-16 Stephen James Van de Wetering Methods and systems for a personal data sharing app
USD777189S1 (en) * 2015-03-30 2017-01-24 Captioncall, Llc Display screen of a captioning communication device with graphical user interface
USD777190S1 (en) * 2015-03-30 2017-01-24 Captioncall, Llc Display screen of a captioning communication device with graphical user interface
US11126994B2 (en) * 2017-06-23 2021-09-21 Microsoft Technology Licensing, Llc Systems and methods for contact card customization

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO1994017480A1 (en) * 1993-01-22 1994-08-04 Taligent, Inc. Flexible system
US5341414A (en) * 1992-02-05 1994-08-23 Fred Popke Calling number verification service
EP0651544A2 (en) * 1993-11-01 1995-05-03 International Business Machines Corporation Personal communicator having a touch sensitive contol panel
US5446882A (en) * 1992-10-02 1995-08-29 Apple Computer, Inc. Interface for a computerized database having card and list views
US5546447A (en) * 1994-06-29 1996-08-13 Intel Corporation Displaying caller identification information in a computer system
WO1996036927A1 (en) * 1995-05-18 1996-11-21 Intel Corporation System and method for exchanging business cards during a videoconference

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4924496A (en) * 1988-05-12 1990-05-08 Romek Figa D/B/A Abraham & Sons Automatic incoming telephone call originating number and party display system
US5754636A (en) * 1994-11-01 1998-05-19 Answersoft, Inc. Computer telephone system
JPH08242307A (en) * 1995-03-03 1996-09-17 Canon Inc Method for registering data in telephone directory database and visual telephone system
US5754775A (en) * 1995-09-27 1998-05-19 Intel Corporation Method and apparatus for formulating connection addresses on a PC conferencing system supporting multiple transport type
US5889852A (en) * 1997-02-10 1999-03-30 Nokia Mobile Phones Limited Photo screen scroll graphic user interface

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5341414A (en) * 1992-02-05 1994-08-23 Fred Popke Calling number verification service
US5446882A (en) * 1992-10-02 1995-08-29 Apple Computer, Inc. Interface for a computerized database having card and list views
WO1994017480A1 (en) * 1993-01-22 1994-08-04 Taligent, Inc. Flexible system
EP0651544A2 (en) * 1993-11-01 1995-05-03 International Business Machines Corporation Personal communicator having a touch sensitive contol panel
US5546447A (en) * 1994-06-29 1996-08-13 Intel Corporation Displaying caller identification information in a computer system
WO1996036927A1 (en) * 1995-05-18 1996-11-21 Intel Corporation System and method for exchanging business cards during a videoconference

Non-Patent Citations (4)

* Cited by examiner, † Cited by third party
Title
"CALLING CARD INTERFACE FOR VISUAL TELEPHONY" IBM TECHNICAL DISCLOSURE BULLETIN, vol. 35, no. 4B, 1 September 1992, pages 291-293, XP000313950 *
"ON-LINE DESKTOP ADDRESS BOOK AND AUTO-DIALER" IBM TECHNICAL DISCLOSURE BULLETIN, vol. 35, no. 2, 1 July 1992, pages 439-441, XP000313349 *
HATTORI S ET AL: "A MULTIMEDIA INTELLIGENT MESSAGE COMMUNICATION SYSTEM FOR DISTRIBUTED COORDINATION ENVIRONMENTS" ELECTRONICS & COMMUNICATIONS IN JAPAN, PART I - COMMUNICATIONS, vol. 76, no. 1, 1 January 1993, pages 11-23, XP000408621 *
PATENT ABSTRACTS OF JAPAN vol. 097, no. 001, 31 January 1997 & JP 08 242307 A (CANON INC), 17 September 1996 *

Cited By (42)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AU765611B2 (en) * 1998-09-09 2003-09-25 Nec Infrontia Corporation Telephone directory address storing method and information terminal having telephone function as well as storage medium on which program therefor is recorded
WO2000045586A1 (en) * 1999-01-28 2000-08-03 Boris Katic Telephone-business card
US6254001B1 (en) * 1999-02-22 2001-07-03 George Ming Fai Chan Electronic business card device
US6412689B1 (en) * 1999-04-22 2002-07-02 Kabushiki Kaisha Toshiba Communication equipment and method for business card information interchange
EP1094657A1 (en) * 1999-10-18 2001-04-25 BRITISH TELECOMMUNICATIONS public limited company Mobile conferencing system and method
WO2001030059A1 (en) * 1999-10-18 2001-04-26 British Telecommunications Public Limited Company Mobile conferencing system and method
WO2001037161A3 (en) * 1999-11-12 2002-07-04 Ericsson Inc Intelligent system for managing profiles of subscribers
WO2001037161A2 (en) * 1999-11-12 2001-05-25 Ericsson Inc Intelligent system for managing profiles of subscribers
WO2001061444A3 (en) * 2000-02-18 2003-04-17 Vtech Mobile Ltd Mobile telephone with improved man machine interface
WO2001061444A2 (en) * 2000-02-18 2001-08-23 Vtech Mobile Limited Mobile telephone with improved man machine interface
DE10195665B4 (en) * 2000-02-18 2010-06-17 Vtech Telecommunications, Ltd. Mobile phone with improved interface between man and machine
WO2002042938A1 (en) * 2000-11-21 2002-05-30 Cionsoft Co., Ltd. System and method for retrieving an electronic business card by using network
EP1246433B1 (en) * 2001-03-27 2011-04-27 Nokia Corporation Communication terminal handling user to user information received during a call
EP1246433A2 (en) * 2001-03-27 2002-10-02 Nokia Corporation Communication terminal handling user to user information received during a call
US7718655B2 (en) 2001-10-12 2010-05-18 New York University Trisubstituted triazine compounds, and methods for making and using the compounds, which have antitubulin activity
DE10226105B4 (en) * 2002-06-12 2013-01-17 Siemens Aktiengesellschaft Method for identifying a telecommunication subscriber
US8229478B2 (en) 2003-05-22 2012-07-24 Nokia Corporation Method for updating session initiation information in connection with a telephone call and a terminal device using the method
EP2387215A1 (en) * 2006-09-06 2011-11-16 Apple Inc. Incoming telephone call management for a portable multifunction device
US10536819B2 (en) 2006-09-06 2020-01-14 Apple Inc. Missed telephone call management for a portable multifunction device
US8014760B2 (en) 2006-09-06 2011-09-06 Apple Inc. Missed telephone call management for a portable multifunction device
WO2008030762A3 (en) * 2006-09-06 2008-09-18 Apple Inc Missed telephone call management for a portable multifunction device
US11039283B2 (en) 2006-09-06 2021-06-15 Apple Inc. User interfaces for a messaging application
US8135389B2 (en) 2006-09-06 2012-03-13 Apple Inc. Missed telephone call management for a portable multifunction device
US8452342B2 (en) 2006-09-06 2013-05-28 Apple Inc. Missed telephone call management for a portable multifunction device
WO2008030778A1 (en) * 2006-09-06 2008-03-13 Apple Inc. Incoming telephone call management for a portable multifunction device with touch screen display
US8255003B2 (en) 2006-09-06 2012-08-28 Apple Inc. Missed telephone call management for a portable multifunction device
WO2008030762A2 (en) * 2006-09-06 2008-03-13 Apple Inc. Missed telephone call management for a portable multifunction device
US8090087B2 (en) 2006-10-26 2012-01-03 Apple Inc. Method, system, and graphical user interface for making conference calls
US10999442B2 (en) 2007-01-07 2021-05-04 Apple Inc. Portable multifunction device, method, and graphical user interface for conference calling
US11743390B2 (en) 2007-01-07 2023-08-29 Apple Inc. Portable multifunction device, method, and graphical user interface for conference calling
US8972904B2 (en) 2007-01-07 2015-03-03 Apple Inc. Portable multifunction device, method, and graphical user interface for conference calling
US9706054B2 (en) 2007-01-07 2017-07-11 Apple Inc. Portable multifunction device, method, and graphical user interface for conference calling
US11405507B2 (en) 2007-01-07 2022-08-02 Apple Inc. Portable multifunction device, method, and graphical user interface for conference calling
US10320987B2 (en) 2007-01-07 2019-06-11 Apple Inc. Portable multifunction device, method, and graphical user interface for conference calling
US7975242B2 (en) 2007-01-07 2011-07-05 Apple Inc. Portable multifunction device, method, and graphical user interface for conference calling
US8205157B2 (en) 2008-03-04 2012-06-19 Apple Inc. Methods and graphical user interfaces for conducting searches on a portable multifunction device
US10379728B2 (en) 2008-03-04 2019-08-13 Apple Inc. Methods and graphical user interfaces for conducting searches on a portable multifunction device
US9354811B2 (en) 2009-03-16 2016-05-31 Apple Inc. Multifunction device with integrated search and application selection
US10067991B2 (en) 2009-03-16 2018-09-04 Apple Inc. Multifunction device with integrated search and application selection
US10042513B2 (en) 2009-03-16 2018-08-07 Apple Inc. Multifunction device with integrated search and application selection
US11720584B2 (en) 2009-03-16 2023-08-08 Apple Inc. Multifunction device with integrated search and application selection
US8589374B2 (en) 2009-03-16 2013-11-19 Apple Inc. Multifunction device with integrated search and application selection

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