WO1995035552A1 - A data transfer and communication network - Google Patents

A data transfer and communication network Download PDF

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Publication number
WO1995035552A1
WO1995035552A1 PCT/US1995/006500 US9506500W WO9535552A1 WO 1995035552 A1 WO1995035552 A1 WO 1995035552A1 US 9506500 W US9506500 W US 9506500W WO 9535552 A1 WO9535552 A1 WO 9535552A1
Authority
WO
WIPO (PCT)
Prior art keywords
voice
signals
recited
relay terminal
terminal
Prior art date
Application number
PCT/US1995/006500
Other languages
French (fr)
Inventor
Phillip A. Gattey
Dwight D. Lynn
Barry K. Yuen
Original Assignee
Acs Communications, Inc.
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 Acs Communications, Inc. filed Critical Acs Communications, Inc.
Publication of WO1995035552A1 publication Critical patent/WO1995035552A1/en

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Classifications

    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06KGRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K17/00Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations
    • G06K17/0022Methods or arrangements for effecting co-operative working between equipments covered by two or more of main groups G06K1/00 - G06K15/00, e.g. automatic card files incorporating conveying and reading operations arrangements or provisious for transferring data to distant stations, e.g. from a sensing device
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/60Substation equipment, e.g. for use by subscribers including speech amplifiers
    • H04M1/6033Substation equipment, e.g. for use by subscribers including speech amplifiers for providing handsfree use or a loudspeaker mode in telephone sets
    • H04M1/6041Portable telephones adapted for handsfree use
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04MTELEPHONIC COMMUNICATION
    • H04M1/00Substation equipment, e.g. for use by subscribers
    • H04M1/60Substation equipment, e.g. for use by subscribers including speech amplifiers
    • H04M1/6033Substation equipment, e.g. for use by subscribers including speech amplifiers for providing handsfree use or a loudspeaker mode in telephone sets
    • H04M1/6041Portable telephones adapted for handsfree use
    • H04M1/6058Portable telephones adapted for handsfree use involving the use of a headset accessory device connected to the portable telephone
    • H04M1/6066Portable telephones adapted for handsfree use involving the use of a headset accessory device connected to the portable telephone including a wireless connection

Definitions

  • the subject invention relates to system which allows remote users to transmit both speech and data information to a remote processor for analysis.
  • the system can be used in a wide variety of applications such as inventory control, security, sales and restaurants .
  • This system allows the restaurant to control food inventory.
  • it is cumbersome and cannot provide any data feedback to the waiter with information such as current availability, length of time to completion, or even permit questions or submission of special instructions concerning the order.
  • the cost of the terminals is not insignificant since computational capability is required.
  • the subject invention includes a headset intended to be worn by the user and including a transducer for converting voice to electrical signals.
  • the headset will also include a transducer for converting electrical signals into audio signals.
  • the headset will also include wireless transmit and receive circuitry.
  • the headset is intended to communicate a relatively short distance with a personal, hand-held relay terminal.
  • the relay terminal will also include at least one data entry means.
  • the data entry means could include items such as a keypad, bar code reader, magnetic stripe reader, temperature probe, etc.
  • the terminal will also include a second set of wireless transmit and receive circuits designed to send and receive signals to and from a central station or controller. It is intended that the relay terminal send signals (voice or input data) to the central station which are substantially unprocessed. By unprocessed it is meant that the signals are not analyzed (with, for example, a microprocessor) for protocols, parity or information content. It is expected that the relay terminal will condition the signals to improve transmission such as with filtering or amplification.
  • the subject invention further includes a central station or controller having transmit and receive circuitry for communicating with a plurality of relay terminals.
  • the controller provides the primary processing power of the system.
  • the hardware and software defining the controller will be based on the selected application. However, it is intended that the controller be supplied with unprocessed voice and data signals and that it be responsible for all calculation and analysis. By placing all intelligent processing activity at a remote location, the cost of providing processing power at each remote terminal is eliminated and the size of the remote terminals can be minimized.
  • the relay terminal will include some form of display. Information transmitted from the controller can be shown on the display.
  • Figure 1 is a block diagram of the voice and data communication system of the subject invention.
  • Figure 2 is a block diagram of the circuitry used in the headset.
  • FIG. 3 is a block diagram of the circuitry used in the local relay terminal.
  • Figure 4 is a block diagram of the circuitry used in a wireless data entry means.
  • Figure 5 is a block diagram of the circuitry used in the central station.
  • Figure 6 is an illustration of a terminal having a pen/pad data input screen.
  • FIG. 1 there is provided an illustration of the basic elements of the subject invention. These elements includes a headset 10, a relay terminal 12 and a central station or controller 14.
  • the headset includes transducers for converting voice into an analog electrical signal and electrical signals into sound.
  • One suitable headset is described in copending application Serial No. 08/105,283, filed July 30, 1993, and assigned to the same assignee herein and incorporated by reference.
  • the headset can include a mastoid microphone to minimize weight and maximize comfort.
  • the headset 10 will also include circuitry for transmitting the electrical signals to and from the relay terminal 12.
  • the type of circuitry which is selected will depend in large part on the environment and application, including the number of units in a given area. For example, communication can be conventional, low power, RF signals. Alternatively various forms of low frequency inductive coupling could be provided. Although communication over a hard wire electrical connection is simple, some form of wireless communication is preferred.
  • Relay terminal 12 will include complimentary circuitry for communicating with the headset 10. Terminal 12 will also include separate wireless communication circuitry for passing the voice signals to and from the central station 14. It is intended that relay terminal act primarily as a node through which these signals are passed. In this role, terminal 14 can demodulate the incoming signal from the headset and then remodulate the signal in the format used to communicate with the central station 14. Some additional amplification and filtering may be required.
  • the format used to communicate between the relay terminal 12 and the central station 14 will again be dependent upon the particular environment and application.
  • cellular type radio signals can be used to carry the voice signals.
  • data signals can be carried simultaneously. It is also possible to use other frequency bands or communicate with infra-red systems similar to present day remote restaurant message pads.
  • the relay terminal also includes at least one direct data entry means. As illustrated in Figure 1, one type of data entry means can be defined by a keypad 30.
  • Another data entry means can be defined by a probe 32 which can be a bar code wand or a probe for monitoring parameters such as temperature, pressure or electrical characteristics.
  • the data entry means may be hard wired to the terminal or communicate with wireless technology.
  • a magnetic stripe reader 34 In a retail environment, it would also be desirable to include a magnetic stripe reader 34.
  • the terminal can also include a pen/pad input.
  • Each of these data entry means will generate either analog or digital electrical data signals which are fed into the terminal .
  • the primary function of the relay terminal is to relay these signals to the central station 14 in substantially unprocessed form.
  • the central station 14 will include transmit and receive circuitry for communicating with the terminal 12. Since the central station can be at a fixed location, it can be easily provided with significant computational capabilities. The signals received from the terminal 12 can be decoded, analyzed and a response retransmitted back to the relay terminal in a very short period of time. It is envisioned that the total elapsed time between the start of the transmission of the signal from the terminal 12 to the central station 14, the processing of that signal, and return of a responsive signal to the display 40 of the terminal can be performed in under ten milliseconds. At this speed, the operation of the system should be perceived as essentially equivalent to what could be achieved if the processing power were located in the terminal itself.
  • Figures 2 through 5 are block diagrams of the preferred circuitry for the components of the subject system.
  • Figure 2 illustrates the circuits in the headset 10.
  • signals from a microphone 202 are supplied to an automatic gain control circuit 204.
  • the output from the AGC circuit is supplied to a base band modulation circuit 206 for modulating the signal in the desired format.
  • the output from circuit 206 is up converted by RF transmitter 208 and delivered to an antenna 210.
  • the return voice signals are picked up by an antenna 212. Depending on the transmission scheme selected, a single antenna could be used for transmission and reception.
  • the received signal is down converted by an RF receiver 214.
  • the signal is then demodulated by circuit 216, passed through an AGC circuit 218 to a speaker 219.
  • the relay terminal 12 includes complementary RF transceiver 220 and antenna 221 for communicating with the headset 10.
  • the signals are passed through a voice Codec 222 for modulation and retransmission by a modem 224 and transceiver 228.
  • the relay terminal includes a simple, low cost microcontroller or state machine logic 230 for controlling the internal logic functions and transferring and presenting data. Inputs from the keypad 30, magstripe reader 34, LCD display 40 and printer 50 are passed through various interface logic blocks 234 and 236 and are then transmitted to the central station by transceiver 228.
  • the terminal is provided with an extra antenna 238 and a composite receiver and demodulator 239 capture and carry the input signals to the interface logic 236.
  • the wireless data sensor 32 can include conditioning circuitry 240 as well as a modulator 242 and transmitter 246.
  • the central station 14 includes an RF transceiver 250 and modem 252 designed to communicate with the terminal 12.
  • the central station includes a microcontroller or state machine logic 256 for handling overall system operation.
  • This central processor can be PC based.
  • Separate processing modules based on a computer of some type 258 and 260 can be provided to handle both data and voice analysis . These modules communicate with the system through separate interfaces 262 and 264.
  • the speech processing module includes speech recognition software. By this arrangement, simple commands from the user could be decoded and processed. Voice commands could be used to annotate data entered into the terminal through the keypad or probe.
  • the waiter might punch a numeric code for a steak dinner. This numeric code will be transmitted to the central station which will process the code and return a signal so that "steak dinner” is shown on display 40.
  • the waiter may activate the headset by pressing a line button 42 on the terminal and speak the phrase “slice it please” into the headset.
  • the analog data will be transmitted from the headset, through the terminal to the central station 14.
  • the speech recognition software in the central station will decode information, generate a responsive signal so that the phrase "slice it please” will be displayed on the terminal.
  • Further voice input to the main order could include the side dish “fries” and the type of salad dressing "ranch.” Each of these terms could be encoded by the central station and transmitted back for verification at the terminal. Of course, the order would also be forwarded and displayed to the kitchen staff.
  • the waiter could have a menu list with associated bar codes.
  • the waiter will simply scan the associated bar code with probe 32. If there are variations, the waiter will hit a key 44 initiating a recording. The waiter will recite the details of the order which are then relayed by the terminal to the central station and stored.
  • the order will include a notation that additional instructions are stored. The cook can then press a button and replay the information spoken by the waiter.
  • the special order is relayed to the cook without the waiter ever having to write it down or physically walk to the kitchen.
  • the waiter can also take payment right at the table. More specifically, the waiter can run a credit card through the magnetic stripe reader 34 which records the card number. The waiter or system software can then enter a dollar amount representing the cost of the meal. This data is relayed to the central station where the transaction is processed and validated. Upon completion, a signal is resent to the terminal 12. In this environment, it would be possible to provide the terminal with a low cost printer 50 for generating a customer receipt.
  • the speech recognition feature can be used in a variety of other applications.
  • the user could transmit information about products being scanned.
  • a store clerk moving through the aisles could scan the bar code of the product and announce the number of those products remaining on the shelf at that time.
  • This information could be decoded by software and stored at the central station.
  • a quality control inspector can input the bar code for the product under examination and then describe the condition of the product, such as "pass" or "fail.” This information can be used to route the product to the next stage or to the reject bin.
  • the subject system can also be used to overcome some of the problems with present day PDA's.
  • Figure 6 illustrates a terminal 112 which has the outward appearance of a conventional PDA.
  • This device includes a pen/pad input 120-122 wherein the movement of the pen on the pad is detected.
  • attempts are made to analyze this complex data using the processing power within the PDA. Because of the limited space and cost requirements, satisfactory operation is difficult to achieve.
  • the raw data from the pen/pad 120-122 is transmitted to the central station 14.
  • the processing power of a work station could be called into play to decode the pen strokes into alphanumeric characters. This decoded information is than immediately retransmitted back to the terminal 112 for display.
  • handwritten notes could be annotated by voice input from the headset 10. The data written by the user would be stored at the central station for future retrieval.
  • the officer can communicate with a dispatcher regarding driver's license and license plate information.
  • the terminal would be provided with cellular type communication with the central station.
  • the officer could enter ticket information such as location, speed, and nature of the violation. All of this information would be processed at the central station.
  • the subject system could also be used in a variety of emergency services applications.
  • paramedics could use the combination of voice and data entry to speak to dispatchers and obtain routing instructions.
  • the remote terminal can be used to input data related to a patient's condition so that an "expert system" could provide quick diagnosis of potential problems and provide suggested intervention.
  • Various types of repairmen could obtain benefits with the system.
  • the headset provides instant access to dispatchers and supervisors for answering technical questions.
  • the terminal can be used to enter information about the make and model of a malfunctioning device.
  • the central station can be programmed to respond with a description of suitable replacement parts.
  • a shoe salesperson could be provided with a headset and terminal.
  • the salesperson can enter the model number into the terminal (either through a keypad or by scanning a bar code imprinted on the floor model . )
  • This information would be relayed to the central station which can generate a display indicating which colors and sizes are available on site.
  • the central station could be linked through a network to other stores so that shoe availability at other locations could be investigated.
  • the headset can also play an important role in this application.
  • the salesperson could use the headset to make voice contact with a central dispatcher or salesperson at another store without seeking out a separate telephone.
  • the inputs to the keypad could be used as a dialer. Without ever having to leave the side of the customer, the salesperson can arrange to find the desired size and color shoe and have the shoe shipped to the store or even the home of the customer.

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  • General Engineering & Computer Science (AREA)
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Abstract

A data transfer and communication system is disclosed including a central station and a plurality of remote, relay terminals. Each relay terminal includes a data entry device such as a keypad or bar code wand. A headset is associated with each relay terminal. Circuitry is provided to permit two-way wireless communication between the headset, relay terminal and central station. The relay terminal functions to transmit substantially unprocessed voice and data signals to the central station. The central station analyzes the signals and can retransmit a response which can be displayed on the relay terminal. The relay terminals are intended to be high volume, low cost items with the more expensive computational power being located at the central station.

Description

A DATA TRANSFER AND COMMUNICATION NETWORK
Technical Field
The subject invention relates to system which allows remote users to transmit both speech and data information to a remote processor for analysis. The system can be used in a wide variety of applications such as inventory control, security, sales and restaurants .
Background of the Invention In recent years, there have been significant advances in both wireless communication technology and computer processing technology. For example, both portable and cellular phones are now in wide use. There has also been some initial progress in developing wireless headset technology. In addition, with each passing year, computers are becoming smaller and more powerful. Recently, there has been a great effort to develop personal digital assistants (PDA' s) which provide palm size computational ability.
Unfortunately, to date, PDA's have not met with significant commercial success. Even though the processing power in these small devices is remarkable, they are expensive, bulky and require a reasonable amount of computer knowledge to operate.
Although these devices are often touted as being able to recognize handwritten data, the capabilities are still rudimentary since handwriting analysis requires significant processing capability and speed still unavailable in a portable device. In addition, it does not appear that any of the present PDA's include speech recognition systems since this feature would require even more processing power.
There has also been significant development in portable hand-held data entry communicators. The most ubiquitous of these devices now appear in restaurants . A waiter taking an order will enter a code into the device representing the order (often spelling the •item chosen from the menu) . When the customer requests a change to the standard offering, additional data entry is required which can take a significant amount of time. The information entered into the terminal is processed and then transmitted to the kitchen or bar, typically by infrared technology. The information is displayed so that the staff can fill the order.
This system allows the restaurant to control food inventory. However, it is cumbersome and cannot provide any data feedback to the waiter with information such as current availability, length of time to completion, or even permit questions or submission of special instructions concerning the order. In addition, the cost of the terminals is not insignificant since computational capability is required.
In view of the above, it is an object of the subject invention to create a system which allows both speech and data communication (including unprocessed transducer signals) between a remote location and a central station.
It is a further object of the subject invention to provide a system where a personal terminal functions for system access and as a relay for unprocessed voice and data information. It is another object of the subject invention to provide a system where the computational capabilities of a remote, hand-held terminal are essentially eliminated so that the terminal can be lightweight and low in cost. It is still a further object of the subject invention to provide a system where the central station can process data and transmit the result back to the remote terminal for display.
It is still a further object of the subject invention to provide a system which includes a headset for adding voice communication to the data transfer to improve efficiency and effectiveness.
It is still another object of the subject invention to provide speech recognition software in the central station for decoding analog voice signals into machine readable format.
It is still a further object of the subject invention to provide a system wherein the central station can reformat the decoded voice information for retransmission and display on the remote terminal .
Summary of the Invention
In accordance with these and other objects, the subject invention includes a headset intended to be worn by the user and including a transducer for converting voice to electrical signals. Although there may be some applications where only one way voice communication is required, in the preferred embodiment, the headset will also include a transducer for converting electrical signals into audio signals. The headset will also include wireless transmit and receive circuitry.
The headset is intended to communicate a relatively short distance with a personal, hand-held relay terminal. The relay terminal will also include at least one data entry means. The data entry means could include items such as a keypad, bar code reader, magnetic stripe reader, temperature probe, etc. The terminal will also include a second set of wireless transmit and receive circuits designed to send and receive signals to and from a central station or controller. It is intended that the relay terminal send signals (voice or input data) to the central station which are substantially unprocessed. By unprocessed it is meant that the signals are not analyzed (with, for example, a microprocessor) for protocols, parity or information content. It is expected that the relay terminal will condition the signals to improve transmission such as with filtering or amplification. It is also expected that the information would be translated or encoded with circuits for voltage to frequency conversion or modulation and demodulation. However, the intent is to minimize the interpretation of information necessary within the relay terminal. The subject invention further includes a central station or controller having transmit and receive circuitry for communicating with a plurality of relay terminals. The controller provides the primary processing power of the system. The hardware and software defining the controller will be based on the selected application. However, it is intended that the controller be supplied with unprocessed voice and data signals and that it be responsible for all calculation and analysis. By placing all intelligent processing activity at a remote location, the cost of providing processing power at each remote terminal is eliminated and the size of the remote terminals can be minimized.
In the preferred embodiment, the relay terminal will include some form of display. Information transmitted from the controller can be shown on the display. Various examples of the operation of the subject system in different environments will be discussed below with reference to the following drawings in which: Brief Description of the Drawings:
Figure 1 is a block diagram of the voice and data communication system of the subject invention.
Figure 2 is a block diagram of the circuitry used in the headset.
Figure 3 is a block diagram of the circuitry used in the local relay terminal.
Figure 4 is a block diagram of the circuitry used in a wireless data entry means. Figure 5 is a block diagram of the circuitry used in the central station.
Figure 6 is an illustration of a terminal having a pen/pad data input screen.
Detailed Description of the Preferred Embodiment Turning first to Figure 1, there is provided an illustration of the basic elements of the subject invention. These elements includes a headset 10, a relay terminal 12 and a central station or controller 14. In the preferred embodiment, the headset includes transducers for converting voice into an analog electrical signal and electrical signals into sound. One suitable headset is described in copending application Serial No. 08/105,283, filed July 30, 1993, and assigned to the same assignee herein and incorporated by reference. In the preferred embodiment, the headset can include a mastoid microphone to minimize weight and maximize comfort.
The headset 10 will also include circuitry for transmitting the electrical signals to and from the relay terminal 12. The type of circuitry which is selected will depend in large part on the environment and application, including the number of units in a given area. For example, communication can be conventional, low power, RF signals. Alternatively various forms of low frequency inductive coupling could be provided. Although communication over a hard wire electrical connection is simple, some form of wireless communication is preferred. Relay terminal 12 will include complimentary circuitry for communicating with the headset 10. Terminal 12 will also include separate wireless communication circuitry for passing the voice signals to and from the central station 14. It is intended that relay terminal act primarily as a node through which these signals are passed. In this role, terminal 14 can demodulate the incoming signal from the headset and then remodulate the signal in the format used to communicate with the central station 14. Some additional amplification and filtering may be required.
The format used to communicate between the relay terminal 12 and the central station 14 will again be dependent upon the particular environment and application. For example, cellular type radio signals can be used to carry the voice signals. With the addition of a small sideband, data signals can be carried simultaneously. It is also possible to use other frequency bands or communicate with infra-red systems similar to present day remote restaurant message pads.
In accordance with the subject invention, the relay terminal also includes at least one direct data entry means. As illustrated in Figure 1, one type of data entry means can be defined by a keypad 30.
Another data entry means can be defined by a probe 32 which can be a bar code wand or a probe for monitoring parameters such as temperature, pressure or electrical characteristics. The data entry means may be hard wired to the terminal or communicate with wireless technology. In a retail environment, it would also be desirable to include a magnetic stripe reader 34. As discuses below with reference to Figure 6, the terminal can also include a pen/pad input. Each of these data entry means will generate either analog or digital electrical data signals which are fed into the terminal . As with the voice signals, the primary function of the relay terminal is to relay these signals to the central station 14 in substantially unprocessed form.
The central station 14 will include transmit and receive circuitry for communicating with the terminal 12. Since the central station can be at a fixed location, it can be easily provided with significant computational capabilities. The signals received from the terminal 12 can be decoded, analyzed and a response retransmitted back to the relay terminal in a very short period of time. It is envisioned that the total elapsed time between the start of the transmission of the signal from the terminal 12 to the central station 14, the processing of that signal, and return of a responsive signal to the display 40 of the terminal can be performed in under ten milliseconds. At this speed, the operation of the system should be perceived as essentially equivalent to what could be achieved if the processing power were located in the terminal itself.
Figures 2 through 5 are block diagrams of the preferred circuitry for the components of the subject system. Figure 2 illustrates the circuits in the headset 10. As shown therein, signals from a microphone 202 are supplied to an automatic gain control circuit 204. The output from the AGC circuit is supplied to a base band modulation circuit 206 for modulating the signal in the desired format. The output from circuit 206 is up converted by RF transmitter 208 and delivered to an antenna 210.
The return voice signals are picked up by an antenna 212. Depending on the transmission scheme selected, a single antenna could be used for transmission and reception. The received signal is down converted by an RF receiver 214. The signal is then demodulated by circuit 216, passed through an AGC circuit 218 to a speaker 219. As shown in Figure 3, the relay terminal 12 includes complementary RF transceiver 220 and antenna 221 for communicating with the headset 10. The signals are passed through a voice Codec 222 for modulation and retransmission by a modem 224 and transceiver 228. The relay terminal includes a simple, low cost microcontroller or state machine logic 230 for controlling the internal logic functions and transferring and presenting data. Inputs from the keypad 30, magstripe reader 34, LCD display 40 and printer 50 are passed through various interface logic blocks 234 and 236 and are then transmitted to the central station by transceiver 228.
Where the data entry sensor is wireless, the terminal is provided with an extra antenna 238 and a composite receiver and demodulator 239 capture and carry the input signals to the interface logic 236. As shown in Figure 4, the wireless data sensor 32 can include conditioning circuitry 240 as well as a modulator 242 and transmitter 246.
As shown in Figure 5, the central station 14 includes an RF transceiver 250 and modem 252 designed to communicate with the terminal 12. The central station includes a microcontroller or state machine logic 256 for handling overall system operation. This central processor can be PC based. Separate processing modules based on a computer of some type 258 and 260 can be provided to handle both data and voice analysis . These modules communicate with the system through separate interfaces 262 and 264. In the preferred embodiment, the speech processing module includes speech recognition software. By this arrangement, simple commands from the user could be decoded and processed. Voice commands could be used to annotate data entered into the terminal through the keypad or probe.
For example, in a restaurant situation, the waiter might punch a numeric code for a steak dinner. This numeric code will be transmitted to the central station which will process the code and return a signal so that "steak dinner" is shown on display 40. The waiter may activate the headset by pressing a line button 42 on the terminal and speak the phrase "slice it please" into the headset. The analog data will be transmitted from the headset, through the terminal to the central station 14. The speech recognition software in the central station will decode information, generate a responsive signal so that the phrase "slice it please" will be displayed on the terminal. Further voice input to the main order could include the side dish "fries" and the type of salad dressing "ranch." Each of these terms could be encoded by the central station and transmitted back for verification at the terminal. Of course, the order would also be forwarded and displayed to the kitchen staff.
In a variation and simplification of this approach, (where speech recognition is not provided) , the waiter could have a menu list with associated bar codes. When the customer orders a dish, the waiter will simply scan the associated bar code with probe 32. If there are variations, the waiter will hit a key 44 initiating a recording. The waiter will recite the details of the order which are then relayed by the terminal to the central station and stored. When the cook is about to prepare a dish, the order will include a notation that additional instructions are stored. The cook can then press a button and replay the information spoken by the waiter. Thus, the special order is relayed to the cook without the waiter ever having to write it down or physically walk to the kitchen.
In the preferred embodiment, the waiter can also take payment right at the table. More specifically, the waiter can run a credit card through the magnetic stripe reader 34 which records the card number. The waiter or system software can then enter a dollar amount representing the cost of the meal. This data is relayed to the central station where the transaction is processed and validated. Upon completion, a signal is resent to the terminal 12. In this environment, it would be possible to provide the terminal with a low cost printer 50 for generating a customer receipt.
The speech recognition feature can be used in a variety of other applications. For example, when the probe is used for bar code scanning, the user could transmit information about products being scanned. A store clerk moving through the aisles could scan the bar code of the product and announce the number of those products remaining on the shelf at that time. This information could be decoded by software and stored at the central station. Alternatively, a quality control inspector can input the bar code for the product under examination and then describe the condition of the product, such as "pass" or "fail." This information can be used to route the product to the next stage or to the reject bin. The subject system can also be used to overcome some of the problems with present day PDA's. Figure 6 illustrates a terminal 112 which has the outward appearance of a conventional PDA. This device includes a pen/pad input 120-122 wherein the movement of the pen on the pad is detected. In existing systems, attempts are made to analyze this complex data using the processing power within the PDA. Because of the limited space and cost requirements, satisfactory operation is difficult to achieve.
However, with the present system, the raw data from the pen/pad 120-122 is transmitted to the central station 14. At this location, the processing power of a work station could be called into play to decode the pen strokes into alphanumeric characters. This decoded information is than immediately retransmitted back to the terminal 112 for display. As above, handwritten notes could be annotated by voice input from the headset 10. The data written by the user would be stored at the central station for future retrieval.
In a system which includes a data screen of the type shown in Figure 6, most of the input switches shown in Figure 1 could be eliminated. Once the system is activated, the central station 14 can generate a menu with icons in a "windows-like" display. The user will use the pen input like a mouse to click and select menu items. Once again, all of the intelligent processing will take place in the central station with the terminal 112 only acting as a relay or display.
One example where this might be useful would be in law enforcement and traffic ticketing. The officer can communicate with a dispatcher regarding driver's license and license plate information. In this case, the terminal would be provided with cellular type communication with the central station. Using a menu driven system, the officer could enter ticket information such as location, speed, and nature of the violation. All of this information would be processed at the central station.
The subject system could also be used in a variety of emergency services applications. For example, paramedics could use the combination of voice and data entry to speak to dispatchers and obtain routing instructions. The remote terminal can be used to input data related to a patient's condition so that an "expert system" could provide quick diagnosis of potential problems and provide suggested intervention. Various types of repairmen could obtain benefits with the system. The headset provides instant access to dispatchers and supervisors for answering technical questions. The terminal can be used to enter information about the make and model of a malfunctioning device. The central station can be programmed to respond with a description of suitable replacement parts.
Another application of the operation of the subject system would be in retail sales. For example, a shoe salesperson could be provided with a headset and terminal. When a customer requests a certain shoe, the salesperson can enter the model number into the terminal (either through a keypad or by scanning a bar code imprinted on the floor model . ) This information would be relayed to the central station which can generate a display indicating which colors and sizes are available on site. In addition, the central station could be linked through a network to other stores so that shoe availability at other locations could be investigated. The headset can also play an important role in this application. For example, the salesperson could use the headset to make voice contact with a central dispatcher or salesperson at another store without seeking out a separate telephone. The inputs to the keypad could be used as a dialer. Without ever having to leave the side of the customer, the salesperson can arrange to find the desired size and color shoe and have the shoe shipped to the store or even the home of the customer.
It should be appreciated from many of these various applications that the subject system can provide significant savings in time and labor for a work force. In addition, productivity can be improved and therefore costs lowered. Moreover, high powered, sophisticated computational power can be placed in the hands of a large work force at low cost. By concentrating the computing power at a single remote location and distributing low cost relay terminals, each employee can be provided with access to the important information.
While the subject invention has been described with reference to the preferred embodiments, various changes and modifications could be made therein, by one skilled in the art, without varying from the scope and spirit of the subject invention as defined by the appended claims.

Claims

1. A data transfer and communications system comprising: a headset including means for transmitting analog voice signals; a hand-held relay terminal having means for receiving analog voice signals from the headset, said terminal including at least one data entry means, said terminal further including means for the wireless transmission of unprocessed voice and data signals; and a central controller having means for receiving the unprocessed voice and data signals from the terminal, said controller further including a processor for analyzing the voice and data signals received from the terminal.
2. A system as recited in claim 1 wherein said controller includes a means for transmitting data signals back to said terminal and wherein said terminal includes a means for displaying the signals transmitted by the controller.
3. A system as recited in claim 1 wherein said controller includes a means for transmitting voice signals back to said terminal and said terminal includes a means for transmitting voice signals back to said headset to allow two way analog voice communication between the central controller and the headset.
4. A system as recited in claim 1 wherein the means for transmitting the voice signals between the headset and the relay terminal includes RF signals.
5. A system as recited in claim 1 wherein the means for transmitting the voice signals between the headset and the relay terminal includes inductive coupling.
6. A system as recited in claim 1 wherein the means for transmitting the voice and data signals between the relay terminal and the central controller includes RF signals.
7. A system as recited in claim 1 wherein the means for transmitting the voice and data signals between the relay terminal and the central controller includes infrared signals.
8. A system as recited in claim 1 wherein the means for transmitting the voice and data signals between the relay terminal and the central controller includes cellular communications.
9. A system as recited in claim 1 wherein said central controller includes a speech recognition means for decoding the analog voice information.
10. A system as recited in claim 1 wherein the data entry means of the relay terminal is defined by a keypad.
11. A system as recited in claim 1 wherein the data entry means of the relay terminal is defined by a bar code scanner.
12. A system as recited in claim 1 wherein the data entry means of the relay terminal is defined by a magnetic stripe reader.
13. A system as recited in claim 1 wherein the data entry means of the relay terminal is defined by a pen-pad input.
14. A system as recited in claim 1 wherein said relay terminal includes circuits for conditioning the voice and data signals prior to transmission.
15. A system as recited in claim 1 wherein said relay terminal includes circuits for translating the voice and data signals prior to transmission.
16. A data transfer and communications system comprising: a headset including means for transmitting and receiving analog voice signals; a hand-held relay terminal having means for transmitting and receiving analog voice signals to and from the headset, said terminal including at least one data entry means, said terminal further including means for the wireless transmission and reception of unprocessed voice and data signals; and a central controller having means for transmitting and receiving the unprocessed voice and data signals to and from the terminal, said controller including a speech recognition means for decoding the voice signals, said controller further including a processor for analyzing the decoded voice signals and the data signals received from the terminal .
17. A system as recited in claim 16 wherein said terminal includes a display and wherein said controller functions to reformat the decoded voice signals and retransmit the reformatted voice signals back to the terminal in a format which can be shown on the display.
18. A system as recited in claim 16 wherein the means for transmitting the voice signals between the headset and the relay terminal includes RF signals.
19. A system as recited in claim 16 wherein the means for transmitting the voice signals between the headset and the relay terminal includes inductive coupling.
20. A system as recited in claim 16 wherein the means for transmitting the voice and data signals between the relay terminal and the central controller includes RF signals.
21. A system as recited in claim 16 wherein the means for transmitting the voice and data signals between the relay terminal and the central controller includes infrared signals.
22. A system as recited in claim 16 wherein the means for transmitting the voice and data signals between the relay terminal and the central controller includes cellular communications.
23. A system as recited in claim 16 wherein the data entry means of the relay terminal is defined by a keypad.
24. A system as recited in claim 16 wherein the data entry means of the relay terminal is defined by a bar code scanner.
25. A system as recited in claim 16 wherein the data entry means of the relay terminal is defined by a magnetic stripe reader.
26. A system as recited in claim 16 wherein the data entry means of the relay terminal is defined by a pen-pad input.
27. A system as recited in claim 16 wherein said relay terminal includes circuits for conditioning the voice and data signals prior to transmission.
28. A system as recited in claim 16 wherein said relay terminal includes circuits for translating the voice and data signals prior to transmission.
PCT/US1995/006500 1994-06-20 1995-05-22 A data transfer and communication network WO1995035552A1 (en)

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Families Citing this family (107)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6614768B1 (en) 1989-04-28 2003-09-02 Broadcom Corporation Enhanced mobility and address resolution in a wireless premises based network
US6654378B1 (en) * 1992-03-18 2003-11-25 Broadcom Corp. Transaction control system including portable data terminal and mobile customer service station
GB2282906B (en) 1993-10-13 1996-11-06 Dataquill Ltd Data enty systems
US5758322A (en) * 1994-12-09 1998-05-26 International Voice Register, Inc. Method and apparatus for conducting point-of-sale transactions using voice recognition
US5982764A (en) * 1995-05-18 1999-11-09 Aura Communications, Inc. Time-multiplexed short-range magnetic communications
US5912925A (en) * 1995-05-18 1999-06-15 Aura Communications, Inc. Diversity circuit for magnetic communication system
KR19990014897A (en) 1995-05-18 1999-02-25 프란시스 에이 월드만 Near field communication system
US5722050A (en) * 1996-03-12 1998-02-24 Chen; Jinsaun Transmitter-receiver system for use in an audio equipment
USRE37884E1 (en) * 1996-04-17 2002-10-15 Bright Headphone Electronics Co. Transmitter-receiver system for use in an audio equipment
US5915238A (en) * 1996-07-16 1999-06-22 Tjaden; Gary S. Personalized audio information delivery system
US6137590A (en) * 1996-09-30 2000-10-24 Kyocera Corporation Image forming apparatus and image forming system
KR100229510B1 (en) * 1996-10-28 1999-11-15 윤종용 Circuit and method for controlling monitor by using no-wire headphone
FI111674B (en) * 1996-10-31 2003-08-29 Nokia Corp The user interface
US6308062B1 (en) * 1997-03-06 2001-10-23 Ericsson Business Networks Ab Wireless telephony system enabling access to PC based functionalities
US6021207A (en) * 1997-04-03 2000-02-01 Resound Corporation Wireless open ear canal earpiece
US7103380B1 (en) * 1997-04-04 2006-09-05 Ditzik Richard J Wireless handset communication system
US5983073A (en) 1997-04-04 1999-11-09 Ditzik; Richard J. Modular notebook and PDA computer systems for personal computing and wireless communications
US6026372A (en) 1997-05-27 2000-02-15 Savage; John K. Computer system for maintaining current and predicting future food needs
US6212282B1 (en) 1997-10-31 2001-04-03 Stuart Mershon Wireless speaker system
US6115616A (en) * 1998-05-28 2000-09-05 International Business Machines Corporation Hand held telephone set with separable keyboard
US6442507B1 (en) 1998-12-29 2002-08-27 Wireless Communications, Inc. System for creating a computer model and measurement database of a wireless communication network
US20050060154A1 (en) * 1998-12-31 2005-03-17 Hariharan Kumar Voice driven wireless pointer
US9773238B2 (en) 1999-01-28 2017-09-26 International Business Machines Corporation Vehicle-based order entry and processing mechanism
TW472992U (en) * 1999-02-01 2002-01-11 Cotron Corp Transferring device for telephone
US6560468B1 (en) * 1999-05-10 2003-05-06 Peter V. Boesen Cellular telephone, personal digital assistant, and pager unit with capability of short range radio frequency transmissions
AU4839300A (en) * 1999-05-11 2000-11-21 Webvan Group, Inc. Electronic commerce enabled delivery system and method
US6975937B1 (en) 1999-05-11 2005-12-13 Christopher Kantarjiev Technique for processing customer service transactions at customer site using mobile computing device
US7177825B1 (en) 1999-05-11 2007-02-13 Borders Louis H Integrated system for ordering, fulfillment, and delivery of consumer products using a data network
US6822639B1 (en) * 1999-05-25 2004-11-23 Silverbrook Research Pty Ltd System for data transfer
US6850946B1 (en) 1999-05-26 2005-02-01 Wireless Valley Communications, Inc. Method and system for a building database manipulator
US6493679B1 (en) * 1999-05-26 2002-12-10 Wireless Valley Communications, Inc. Method and system for managing a real time bill of materials
US6317599B1 (en) * 1999-05-26 2001-11-13 Wireless Valley Communications, Inc. Method and system for automated optimization of antenna positioning in 3-D
US6825620B2 (en) 1999-06-21 2004-11-30 Access Business Group International Llc Inductively coupled ballast circuit
US7126450B2 (en) 1999-06-21 2006-10-24 Access Business Group International Llc Inductively powered apparatus
US7612528B2 (en) 1999-06-21 2009-11-03 Access Business Group International Llc Vehicle interface
US7385357B2 (en) 1999-06-21 2008-06-10 Access Business Group International Llc Inductively coupled ballast circuit
ATE404947T1 (en) * 1999-06-30 2008-08-15 Silverbrook Res Pty Ltd METHOD AND SYSTEM FOR USER REGISTRATION IN A TERMINAL DEVICE.
US7243054B2 (en) 1999-07-14 2007-07-10 Wireless Valley Communications, Inc. Method and system for displaying network performance, cost, maintenance, and infrastructure wiring diagram
US6499006B1 (en) * 1999-07-14 2002-12-24 Wireless Valley Communications, Inc. System for the three-dimensional display of wireless communication system performance
CN1148044C (en) * 1999-08-06 2004-04-28 英业达集团(上海)电子技术有限公司 Device and method for connecting external keyboard to mobile telephone
AU1800101A (en) * 1999-11-22 2001-06-04 Terk Technologies Corp. Method and apparatus for providing remote, wireless access to a computer workstation
US6356209B1 (en) * 1999-12-20 2002-03-12 Robert P. Mitchell System and method for visually indicating receipt of a radio communication directed to a uniquely identified vehicle
US7240283B1 (en) 2000-11-10 2007-07-03 Narasimha Rao Paila Data transmission and rendering techniques implemented over a client-server system
US6971063B1 (en) * 2000-07-28 2005-11-29 Wireless Valley Communications Inc. System, method, and apparatus for portable design, deployment, test, and optimization of a communication network
US7680644B2 (en) * 2000-08-04 2010-03-16 Wireless Valley Communications, Inc. Method and system, with component kits, for designing or deploying a communications network which considers frequency dependent effects
US7246045B1 (en) 2000-08-04 2007-07-17 Wireless Valley Communication, Inc. System and method for efficiently visualizing and comparing communication network system performance
US6625454B1 (en) 2000-08-04 2003-09-23 Wireless Valley Communications, Inc. Method and system for designing or deploying a communications network which considers frequency dependent effects
US7085697B1 (en) 2000-08-04 2006-08-01 Motorola, Inc. Method and system for designing or deploying a communications network which considers component attributes
US7096173B1 (en) 2000-08-04 2006-08-22 Motorola, Inc. Method and system for designing or deploying a communications network which allows simultaneous selection of multiple components
GB0021238D0 (en) * 2000-08-31 2000-10-18 Lewis Marcus Hands-free kit for mobile radio telephone handset
GB2369743A (en) * 2000-08-31 2002-06-05 Lightwire Comm Ltd Infrared handsfree kit enters standby mode
US7055107B1 (en) 2000-09-22 2006-05-30 Wireless Valley Communications, Inc. Method and system for automated selection of optimal communication network equipment model, position, and configuration
US6973622B1 (en) 2000-09-25 2005-12-06 Wireless Valley Communications, Inc. System and method for design, tracking, measurement, prediction and optimization of data communication networks
EP1344123A4 (en) * 2000-12-18 2007-04-25 Wireless Valley Comm Inc Textual and graphical demarcation of location, and interpretation of measurements
US7233914B1 (en) 2000-12-27 2007-06-19 Joyo Wijaya Technique for implementing item substitution for unavailable items relating to a customer order
US7164883B2 (en) * 2001-02-14 2007-01-16 Motorola. Inc. Method and system for modeling and managing terrain, buildings, and infrastructure
US7142811B2 (en) * 2001-03-16 2006-11-28 Aura Communications Technology, Inc. Wireless communication over a transducer device
US7532901B1 (en) 2001-03-16 2009-05-12 Radeum, Inc. Methods and apparatus to detect location and orientation in an inductive system
US7308423B1 (en) 2001-03-19 2007-12-11 Franklin Goodhue Woodward Technique for handling sales of regulated items implemented over a data network
US7085693B2 (en) * 2001-06-19 2006-08-01 International Business Machines Corporation Manipulation of electronic media using off-line media
CA2354990A1 (en) * 2001-08-10 2003-02-10 Ibm Canada Limited-Ibm Canada Limitee Method and apparatus for fine dining queuing
US7574323B2 (en) * 2001-12-17 2009-08-11 Wireless Valley Communications, Inc. Textual and graphical demarcation of location, and interpretation of measurements
TW563974U (en) * 2002-02-06 2003-11-21 Lite On Technology Corp Electricity saving device for user for user interface terminal device of cellular phone
US6643503B1 (en) * 2002-04-17 2003-11-04 Motorola, Inc. Wireless speaker for radio communication device
US6910911B2 (en) * 2002-06-27 2005-06-28 Vocollect, Inc. Break-away electrical connector
US7258064B2 (en) * 2002-09-04 2007-08-21 Prince Castle, Inc. Food product timing system
US7295119B2 (en) 2003-01-22 2007-11-13 Wireless Valley Communications, Inc. System and method for indicating the presence or physical location of persons or devices in a site specific representation of a physical environment
US7295960B2 (en) * 2003-01-22 2007-11-13 Wireless Valley Communications, Inc. System and method for automated placement or configuration of equipment for obtaining desired network performance objectives
US20040259554A1 (en) * 2003-04-23 2004-12-23 Rappaport Theodore S. System and method for ray tracing using reception surfaces
US20070097878A1 (en) * 2003-06-04 2007-05-03 Masaaki Morioka Management device that registers communication device to wireless network, communication device, intermediate device, and method, program, and integrated circuit for registration of communication device
US7899698B2 (en) * 2004-03-19 2011-03-01 Accenture Global Services Limited Real-time sales support and learning tool
US7132926B2 (en) * 2004-03-25 2006-11-07 Prince Castle, Inc. Smart tray system and method for restaurant inventory management
US20050216349A1 (en) * 2004-03-25 2005-09-29 Prince Castle, Inc. Portable timer system for restaurant inventory management
US7462951B1 (en) 2004-08-11 2008-12-09 Access Business Group International Llc Portable inductive power station
US8594341B2 (en) * 2004-10-18 2013-11-26 Leigh M. Rothschild System and method for selectively switching between a plurality of audio channels
US7408324B2 (en) 2004-10-27 2008-08-05 Access Business Group International Llc Implement rack and system for energizing implements
US20070017998A1 (en) * 2005-07-25 2007-01-25 Sears Michael A Portable data collection system and method for inventory management utilizing same
US8417185B2 (en) * 2005-12-16 2013-04-09 Vocollect, Inc. Wireless headset and method for robust voice data communication
US7773767B2 (en) 2006-02-06 2010-08-10 Vocollect, Inc. Headset terminal with rear stability strap
US7885419B2 (en) * 2006-02-06 2011-02-08 Vocollect, Inc. Headset terminal with speech functionality
US20080235099A1 (en) * 2007-03-20 2008-09-25 Mark Armstrong Restaurant System
USD626949S1 (en) 2008-02-20 2010-11-09 Vocollect Healthcare Systems, Inc. Body-worn mobile device
USD605629S1 (en) 2008-09-29 2009-12-08 Vocollect, Inc. Headset
US8386261B2 (en) 2008-11-14 2013-02-26 Vocollect Healthcare Systems, Inc. Training/coaching system for a voice-enabled work environment
US8160287B2 (en) 2009-05-22 2012-04-17 Vocollect, Inc. Headset with adjustable headband
US8438659B2 (en) 2009-11-05 2013-05-07 Vocollect, Inc. Portable computing device and headset interface
US20110114624A1 (en) * 2009-11-16 2011-05-19 Prince Castle, Inc Food holding cabinet power supplies with downloadable software
US20110114625A1 (en) * 2009-11-16 2011-05-19 Prince Castle, Inc Food holding cabinet with self-aligning and addressable power supplies
US20110114618A1 (en) * 2009-11-16 2011-05-19 Prince Castle, Inc Universal food holding cabinet with snap-in escutcheons
US20140136366A1 (en) 2012-11-12 2014-05-15 Restaurant Technology Inc. System and method for receiving and managing remotely placed orders
US10640357B2 (en) 2010-04-14 2020-05-05 Restaurant Technology Inc. Structural food preparation systems and methods
US9003820B2 (en) 2010-04-20 2015-04-14 Prince Castle LLC Point-of-use holding cabinet
US9068768B2 (en) 2010-05-19 2015-06-30 Prince Castle LLC Refrigerated point-of-use holding cabinet with downloadable software
US8607587B2 (en) 2010-05-19 2013-12-17 Prince Castle LLC Refrigerated point-of-use holding cabinet
US8522675B2 (en) 2010-05-21 2013-09-03 Prince Castle, LLC Holding cabinet for separately heating food trays
US8659397B2 (en) 2010-07-22 2014-02-25 Vocollect, Inc. Method and system for correctly identifying specific RFID tags
USD643400S1 (en) 2010-08-19 2011-08-16 Vocollect Healthcare Systems, Inc. Body-worn mobile device
USD643013S1 (en) 2010-08-20 2011-08-09 Vocollect Healthcare Systems, Inc. Body-worn mobile device
US20120050019A1 (en) * 2010-08-30 2012-03-01 Castro Margie E Table tek systems
US10163064B2 (en) 2012-04-03 2018-12-25 Sears Brands, L.L.C. Methods and systems for connected sales associate services
US10242343B2 (en) 2012-04-03 2019-03-26 Sears Brands, L.L.C. Methods and systems for connected sales associate services
WO2013181017A2 (en) * 2012-06-01 2013-12-05 Sears Brands, Llc Methods and systems for connected sales associate services
US9507755B1 (en) 2012-11-20 2016-11-29 Micro Strategy Incorporated Selecting content for presentation
US9980322B1 (en) 2016-04-19 2018-05-22 Prince Castle LLC Multi-zone food holding bin
USD809326S1 (en) 2016-04-19 2018-02-06 Prince Castle LLC Food holding bin
US9976750B1 (en) 2016-04-20 2018-05-22 Prince Castle LLC Multi-zone food holding bin
US11278157B2 (en) 2018-03-22 2022-03-22 Marmon Foodservice Technologies, Inc. Food tray

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0337283A2 (en) * 1988-04-13 1989-10-18 TELEFUNKEN electronic GmbH Goods marking device
GB2229562A (en) * 1989-03-20 1990-09-26 Nitto Kohki Co Portable data input/transmission apparatus
US5149211A (en) * 1988-08-12 1992-09-22 Pettigrew Robert M Printers and ancillary systems
EP0531645A2 (en) * 1991-09-09 1993-03-17 Psc, Inc. Portable transaction terminal
DE4135496A1 (en) * 1991-10-28 1993-04-29 Deutsche Aerospace Electronic food ordering system with portable bar=code reader - has table number embossed as bar=code on table surface, and portable bar=code reader to select coded dishes on menu
WO1994002908A1 (en) * 1992-07-16 1994-02-03 Telxon Corporation Portable point of sale terminal

Family Cites Families (25)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3281789A (en) * 1962-11-02 1966-10-25 Frederick P Willcox Multiple remote interrogated information system
JPS56143751A (en) * 1980-04-09 1981-11-09 Clarion Co Ltd Transceiver with interphone
US4569421A (en) * 1980-11-17 1986-02-11 Sandstedt Gary O Restaurant or retail vending facility
US4415065A (en) * 1980-11-17 1983-11-15 Sandstedt Gary O Restaurant or retail vending facility
DE3043557C2 (en) * 1980-11-19 1987-12-23 Hartmut 6900 Heidelberg Bernot Device for acquiring, transmitting and processing data in optically readable codes
US4491699A (en) * 1981-04-15 1985-01-01 Nl Industries, Inc. Communication apparatus for hostile environments
US4462080A (en) * 1981-11-27 1984-07-24 Kearney & Trecker Corporation Voice actuated machine control
US4539706A (en) * 1983-02-03 1985-09-03 General Electric Company Mobile vehicular repeater system which provides up-link acknowledgement signal to portable transceiver at end of transceiver transmission
US4641292A (en) * 1983-06-20 1987-02-03 George Tunnell Voice controlled welding system
JPS6068734U (en) * 1983-10-18 1985-05-15 株式会社岩田エレクトリツク handset
US4885796A (en) * 1985-04-19 1989-12-05 Loftus Daniel L Communication apparatus for use in hazardous environments
US5218188A (en) * 1989-10-24 1993-06-08 Norand Corporation Compact hand-held RF data terminal
GB2196766A (en) * 1986-10-13 1988-05-05 Sangyai Pitayanukul Computer communication system
JPH01236737A (en) * 1988-03-16 1989-09-21 Seiko Instr & Electron Ltd Data gathering system
US4947028A (en) * 1988-07-19 1990-08-07 Arbor International, Inc. Automated order and payment system
US4916441A (en) * 1988-09-19 1990-04-10 Clinicom Incorporated Portable handheld terminal
US5003472A (en) * 1988-12-05 1991-03-26 Wand Corporation Apparatus for order entry in a restaurant
US5404577A (en) * 1990-07-13 1995-04-04 Cairns & Brother Inc. Combination head-protective helmet & communications system
ATE250299T1 (en) * 1990-07-25 2003-10-15 Broadcom Corp MULTIN-LEVEL RADIO COMMUNICATION SYSTEM
WO1993001664A1 (en) * 1991-07-08 1993-01-21 Motorola, Inc. Remote voice control system
JP2998361B2 (en) * 1991-11-26 2000-01-11 松下電器産業株式会社 Customer order processing device
DE4301824A1 (en) * 1992-02-18 1993-08-19 Norbert Neu Fa Computer based cash register for restaurant - has terminal at point of order linked to kitchen terminal and with information link to managers office
US5345071A (en) * 1992-04-27 1994-09-06 Charles Dumont Shopper's purchase monitoring device
US5389917A (en) * 1993-02-17 1995-02-14 Psc, Inc. Lapel data entry terminal
US5365050A (en) * 1993-03-16 1994-11-15 Worthington Data Solutions Portable data collection terminal with voice prompt and recording

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0337283A2 (en) * 1988-04-13 1989-10-18 TELEFUNKEN electronic GmbH Goods marking device
US5149211A (en) * 1988-08-12 1992-09-22 Pettigrew Robert M Printers and ancillary systems
GB2229562A (en) * 1989-03-20 1990-09-26 Nitto Kohki Co Portable data input/transmission apparatus
EP0531645A2 (en) * 1991-09-09 1993-03-17 Psc, Inc. Portable transaction terminal
DE4135496A1 (en) * 1991-10-28 1993-04-29 Deutsche Aerospace Electronic food ordering system with portable bar=code reader - has table number embossed as bar=code on table surface, and portable bar=code reader to select coded dishes on menu
WO1994002908A1 (en) * 1992-07-16 1994-02-03 Telxon Corporation Portable point of sale terminal

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