DATA PROCESSING AND COMMUNICATIONS DEVICE WITH INTERCHANGEABLE MODULES
A portable, hand-held data terminal of modular structure includes a base module with a keyboard and a display screen. A data and communications module may be selected from a number of different data and communications modules, each having different types of data communications transceivers, or including in addition data collection devices, such as shelf label readers or bar code readers. The base module includes a microprocessor-controlled data communications and control interface having a predetermined protocol. To adapt the various types of data and communications modules for selection of any one thereof to become attached to the base module and function therewith, each of the data and communications modules includes a microprocessor operable to function as an emulator to interact with the microprocessor of the base module and communicate with the microprocessor of the base module in accordance with the protocol of the data communications and control interface of the base module.
This application is a continuation-in-pact application of PCT application PCT/US90/03282, filed Jun. 7, 1990 and U.S. application Ser. No. 07/467.096, filed Jan. 18, 1990, by S. E. Koenck and R. L. Mahany
INCORPORATION BY REFERENCEThe descriptive matter of the above-referred to PCT application PCT/US90/03282, filed Jun. 7, 1990, as published under International Publication No. WO 90/16033 on 27 Dec. 1990, including forty-six pages of specification and nineteen sheets of drawings including FIGS. 1 through 37, and that of the U.S. patent application Ser. No. 07/467,096, filed Jan. 18, 1990, are incorporated herein by reference in their entirety, and made Part of this application.
BACKGROUND OF THE INVENTIONThis invention relates generally to data systems, and more particularly to data collection and processing systems using portable, hand-held data terminals for collecting, selectively processing and for communicating collected data to other system elements. Typical collection processes may include reading data and manually keying in such read data. Typical automated processes may include scanning indicia of information with a scanner, for example a bar code reader. Data collected by such terminals may become part of the data base of the system. Real time use of data collected by the data terminals may be implemented by communication interfaces within such data terminals.
Though host computers which as central processing stations of such data systems may control data bases and data flow, the hand-held data terminals are key elements for operating the data systems efficiently. Current data systems using hand-held data terminals have shown a correlation between the functionality of the hand-held data terminals and the overall effectiveness of the systems. While progress has already been made in improving efficiency and functionality of hand-held data terminals, there is nevertheless a need to provide hand-held data terminals which are readily adaptable to perform various functions and communicate with a variety of communications equipment.
SUMMARY OF THE INVENTIONThe PCT application Serial Number 90/0382, filed Jun. 7, 1989, assigned to and owned by the assignee of the present application, the descriptive matter of which is incorporated herein by reference in its entirety, refers to a modular hand-held unit and discloses a manner of attaching one functional module to another.
According to this invention, one of a plurality of special purpose data and communications modules is selectively combined with a base module or unit of the hand-held data terminal.
According to one particular aspect of the invention, a base unit includes a user interface in an upward directed surface which would typically be facing toward a person using the data terminal. The user interface typically features a keyboard adjacent a bottom end, and a liquid crystal display adjacent a top end of a substantially rectangular, elongate housing of the data terminal. The base unit provides for a data and communications module to be attached beneath the user interface and adjacent the top end of the housing.
According to another particular aspect of the invention, the data and communications module attachable to the base module includes a communications means of one type, such as a radio using spread spectrum modulation transmissions, the data and communications module including provisions emulating data communications of a second type, the second type of communications and the respective protocol being compatible with data circuits of the base module.
In another particular aspect of the invention, the data and communications module to be attached to the base module includes provisions for data communications and a data scanner provision for collecting data. In a more particular implementation of the invention, the base module includes data collection provisions, collected data being transferable via a cable mounted to the base unit. In combination with the data scanner module, the data and communications module includes provisions for selectively switching data collection operations between the data scanner provision of the data and communications module and the data collection provisions of the base module.
In yet another aspect of the invention the data and communications module may include a modern and typical telephone communications coupling either in lieu of a radio communications provision or in addition thereto. The modem may be provided in the data and communications module with a data scanning device or with alternate data identification and collection provisions.
In one particular implementation including certain features of the invention, the data and communications module is contemplated to include the combination of a radio frequency communications provision and a data identification and collection provision, and an antenna of radio frequency communications provision of the data and communications module may be pivotally mounted to be pivoted to a position out of interfering relationship with the data identification and collection provision, while optimally receiving radio frequency communication.
In furtherance of efficient adaptability of data communications modules to base modules of the data terminals in accordance with the invention, it is contemplated to provide an elastic hand strap on the downward facing surface of a data terminal for retaining manual engagement with the data terminal, the hand strap being attached at one end thereof to a base module of the data terminal. A second, opposite end of the elastic strap is slidably inserted into engagement with a guide track disposed in an outer surface of the data and communications module. The direction of insertion is in the direction of the one end of the elastic hand strap, such that ah elastic tension in the hand strap retains the slidable engagement of the other elastic hand strap with the data and communications module of the data terminal. In accordance with the invention, the elastic strap is readily removed without tools by sliding the second end along the guide track in a direction against the tension of the elastic strap.
In a further embodiment according to the invention, in which a base unit includes a data and control interface for interacting with a data and communications module, an improvement in each of a plurality of data and communications modules includes a data and control interface provision including data and control signal conversion provisions for communicating data between the data and communication module and the base module in accordance with a data protocol resident within the base unit.
Various other features and advantages of the data terminal in accordance with the invention will become apparent from the following detailed description, which may be best understood when read with reference to the appended drawings.
Referring now to
At a bottom end 30 of the housing 14, there are located two connector plugs 31 and 32 in recesses 33 and 34, respectively. Inasmuch as the connectors 31 and 32 are disposed in the recesses, adjacent end and interleaved protrusions 36 of the housing 14 extend somewhat past the connectors to protect the connectors from damage should the data terminal accidentally be dropped or set down on the bottom end 30. A preferred embodiment of the data terminal 10 is intended to withstand without damage a drop of about 1.2 meters to a solid surface, such as concrete. The preferred connector 31 is an input-output port, as may be used for such data collection as bar code reading, for example. In such instance, the connector 31 is preferred to be a 9-pin D-subminiature connector with pins interfacing to typical 5 volt scanning peripherals. The connector 32 may be used for accessing external power sources or provide of combined power and data communication. A circular miniature DIN-type connector 32 may be used in the preferred embodiment. A top end 40 of the preferred embodiment of the base module 16 typically may not include connectors. An antenna 41 shown to extend above the top end 40 is further described in reference to
One of the features of hand-held data terminals as disclosed herein and in the PCT application PCT/US90/03282 incorporated herein by reference relates to the exchangeability of modules of different shape and varied function. The data and communications module 48 in
In accordance herewith it is contemplated to provide the data and communications module 48 as a module which is readily replaceable with another data and communications module. Each such module will feature a quick exchange mounting mechanism, such as is more clearly illustrated with respect to
The data and communications module 55, as a representative module featuring the attachment to the base module 16 has a plurality of laterally disposed latching hooks or latch hooks 56 which become engaged by respective latching seats or latch seats 57 disposed along the adjacent edge of the base module 16 when the module 55 is moved toward and into engagement with the adjacent edge and then toward the battery compartment 44, as shown by the arrow. Electrical communication is established via a power and communications connector 61 the pins of which engage a mating connector socket 62 within the base module 16. A set of screws 63 may be tightened through the battery compartment 44 into a set of threaded seats 64 disposed in the adjacent wall of the module 55 to securely retain the attached module as an integrated part of the data terminal 10. At the top end of the data terminal 10, a lip or extending stop edge 66 of the module 55 engages a complementarily shaped seat 67 at the top end of the base module 16 to securely interlock the data and communications module 55 with the base module 16.
It is contemplated, for example, for the module 55 to include any of a number of combinations of diverse functional elements. For example, the module 55 may include the aforementioned transceiver, though the antenna 41 may be attached externally as shown in
In reference to
The data and communication module 100 is of particular interest in that an improved interfacing may be obtained by coupling communication between the data and communication module 100 and the base module 16 through a microprocessor 125, such as, for example an 80C51 microprocessor circuit. Typical on board ROM allows the microprocessor to be programmed to interact with a number of devices in accordance with the stored program. The microprocessor interacts with an interface circuit 126 which may be an analog or mixed analog and digital interface circuit. The program for interacting with the interface circuit 126 may also be stored within a ROM of the interface circuit 126. The interface circuit 126 is coupled to a transceiver module 129. The microprocessor 125 may also be coupled directly to a data collection interface 128 to receive data from a scanner for reading any number of different bar codes or for providing input data from other external sources. The operation of the microprocessor 125 for coupling data to the base module 16 allows various input patterns to be processed by any of specific operational protocols controlled by the microprocessor 125, such that the data input from the data collection circuit can be made the same from any of a number of devices. Also with respect to the operation of the transceiver, in that the program for operating the microprocessor 125 may include particular address codes for data retrieval and data communication via the transceiver, the data sent via a data and control bus between the microprocessors 125 and 104 can emulate a uniform data transfer protocol to the base module 16. The simplification resulting from the microprocessor 125 increases the number of communications devices that may be represented by the data communication transceiver circuit or module.
Referring now to
Various changes and modifications in the structure of the described embodiment are possible without departing from the spirit and scope of the invention as set forth in the claims.
Claims
1-24. (canceled)
25. A communication device comprising:
- a base module comprising a base module processor, the base module being operable to couple to one of a plurality of different communication modules, each of the plurality of communication modules comprising a radio transceiver, wherein the base module processor is operable to interface with communication modules employing different wireless communication protocols, thereby enabling the communication device to communicate using a plurality of different wireless communication protocols.
26. The communication device of claim 25 wherein the base module further comprises a keypad for receiving user input.
27. The communication device of claim 25 wherein the base module further comprises a visual display for displaying information.
28. The communication device of claim 25 wherein each of the communication modules is operable to communicate with a second communication device via its radio transceiver.
29. The communication device of claim 25 wherein the base module further comprises a base module memory that stores base module communication software that is used by the base module processor to support wireless communication by the radio transceiver of a selected communication module.
30. The communication device of claim 29 wherein the base module, using the base module communication software, supports wireless communication by the radio transceiver of the selected communication module regardless of which of the plurality of communication modules is selected.
31. The communication device of claim 25 wherein the base module processor is configured such that data is transferred between the base module processor and the communication module pursuant to a uniform data transfer protocol regardless of which of the plurality of communication modules is selected.
32. A communication device comprising:
- a base module comprising a base module processor, and
- a communication module configured to couple to the base module, the communication module being a selected one of a plurality of different communication modules, each of the plurality of communication modules comprising a radio transceiver, wherein the base module processor is operable to interface with communication modules employing different wireless communication protocols, thereby enabling the communication device to communicate using a plurality of different wireless communication protocols.
33. The communication device of claim 32 wherein the base module further comprises a keypad for receiving user input.
34. The communication device of claim 32 wherein the base module further comprises a visual display for displaying information.
35. The communication device of claim 32 wherein the communication module is operable to communicate with a second communication device via the radio transceiver.
36. The communication device of claim 32 wherein the base module further comprises a base module memory that stores base module communication software that is used by the base module processor to support wireless communication by the radio transceiver of the communication module.
37. The communication device of claim 32 wherein the base module, using the base module communication software, supports wireless communication by the radio transceiver of the communication module regardless of which of the plurality of communication modules is selected.
38. The communication device of claim 32 wherein the communication module further comprises a communication processor operable to control communications of the wireless transceiver.
39. The communication device of claim 38 wherein the communication processor is operable to exchange communication data with the base processor pursuant to a uniform data transfer protocol regardless of which of the plurality of communication modules is selected.
40. The communication device of claim 38 wherein the communication module further comprises a communication module memory that stores communication module communication software that is used by the communication processor to control communications of the wireless transceiver.
Type: Application
Filed: Jan 5, 2010
Publication Date: Apr 29, 2010
Inventors: Steven E. Koenck (Cedar Rapids, IA), Phillip Miller (Cedar Rapids, IA), George E. Hanson (Cedar Rapids, IA), Darald R. Schultz (Cedar Rapids, IA), Jeffrey S. Krunnfusz (Cedar Rapids, IA)
Application Number: 12/652,503
International Classification: H04B 1/38 (20060101); H04M 1/00 (20060101);