Voice-directed portable terminals for wireless communication systems

Information

  • Patent Grant
  • 8128422
  • Patent Number
    8,128,422
  • Date Filed
    Friday, November 5, 2004
    19 years ago
  • Date Issued
    Tuesday, March 6, 2012
    12 years ago
Abstract
A communication system includes a voice-directed portable terminal with a voice user interface that is configured for being able to communicate with a computer system. The communication system includes a peripheral device having a cord coupled with the portable terminal and a connector adapted to disconnect from the portable terminal when a sufficient force is applied to the cord. This disengages the peripheral device from the portable terminal. The ability of the cord to break-away from the portable terminal prevents damage not only to the connector, but also to the cord, peripheral, and terminal.
Description
FIELD OF THE INVENTION

This invention relates generally to portable terminals and more specifically, to wearable, portable and/or mobile terminals and peripherals for wireless communication systems.


BACKGROUND OF THE INVENTION

Wearable, portable and/or mobile terminals are used for a wide variety of tasks. Such terminals allow a worker using them to have mobility, while providing them with desirable computing and data-processing functions. Furthermore, various terminals provide a communication link to a larger, more centralized computer system. Such terminals are being implemented for an ever-increasing number of tasks.


One illustrative example of a specific use for a wearable or portable terminal is inventory management. Computerized inventory management systems are used in inventory-driven industries for various tasks, such as food and retail product distribution, manufacturing, and quality control. An overall integrated inventory management system involves a combination of a central computer system for tracking and management, and the people who use and interface with the computer system in the form of order fillers, pickers and other workers. The workers handle the manual aspects of the integrated management system.


To provide an interface between the central computer system and the workers, wearable or portable computers or terminals are used by the workers as they complete their numerous tasks. Such wearable terminals, for example, pull information directly from the central system and translate the information into voice or text commands for the workers. Through wireless radiofrequency (RF) networks, the commands to and responses from the workers are communicated between the system and the terminals. To communicate in a voice-driven system, for example, the worker wears a headset, which is coupled to their wearable terminal. Through the headset, the workers are able to receive voice instructions, ask questions, report the progress of their tasks, and report working conditions, such as inventory shortages, for example. Using such terminals, the work is done virtually hands-free without equipment to juggle or paperwork to carry around.


In addition to headsets, other peripherals are often coupled to the terminals depending upon the tasks to be performed. For example, bar code readers and other scanners may be utilized alone or in combination with a headset to communicate back and forth with the system.


An illustrative example of a job through a system utilizing wearable and/or portable terminals having voice capabilities may involve initially welcoming the worker to the system and defining a particular task or order, for example, a load to be filled for a certain truck to depart from a warehouse. The worker may then answer with a particular area (e.g., freezer) that they will be working in for that order. The system then vocally directs the worker to a particular aisle and bin to pick a particular quantity of an item. The worker then vocally confirms their location and the amount of items that are picked. The system may then direct them to a loading dock or bay for a particular truck to receive the order. As may be appreciated, various different scenarios might be played out through the system using a wearable terminal and attached peripherals.


The peripherals, such as a headset, are attached to a terminal with a cord, which extends generally from the terminal (typically worn on a belt) to the head of the worker where the headset is located. As may be appreciated, the workers are moving rapidly around their work area and are often jumping on and off forklifts, pallet loaders, and other equipment. Therefore, there is a possibility for a cord to get caught on some object, such as a forklift. When this occurs, the cord will tend to want to separate either from the headset or from the terminal. Generally, the cords are permanently attached to a headset and each worker maintains their own headset (e.g. for individual responsibility and/or hygiene purposes). The cords are then plugged into the terminals, therefore the separation will generally occur at the terminal socket.


Attempts have been made to appropriately handle a snagged cord and cord separation. However, there are competing issues that must be addressed. When the cord plug is strongly secured to the terminal socket, a snagged cord may pull the socket out of the terminal housing. This may render the terminal inoperable and require repair or replacement. However, strengthening the anchoring point of the socket in the terminal may lead to cords pulling away from their plug, thus rendering the headset unusable. Making the cord more securely attached with its plug, making the terminal socket securely anchored in the terminal housing, and then providing a secure coupling between the plug and the socket, however, may prevent separation but may leave the cord susceptible to catching on surrounding objects resulting in damage to the cord and/or the plug.


Therefore, it is desirable to improve upon the conventional wearable terminals used in an environment where peripherals and their cords are susceptible to snagging.





BRIEF DESCRIPTION OF THE DRAWINGS

The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments of the invention and, together with a general description of the invention given above, and the detailed description given below, serve to explain the invention.



FIG. 1 is an illustration of a wearable terminal incorporating the present invention;



FIG. 1A is a schematic block diagram of a system incorporating the present invention;



FIG. 2 is an enlarged, exploded view of the encircled area 2 of FIG. 1, depicting an embodiment of the present invention;



FIG. 3 is a cross-sectional view taken generally along lines 3A-3A and 3B-3B of FIG. 2;



FIG. 4 is a cross-sectional view of the connector of FIG. 3, showing the plug and terminal portions just prior to coupling;



FIG. 5 is a cross-sectional view of the connector of FIG. 3, depicting the plug and terminal portions coupled together; and



FIG. 6 is a view showing detail of the terminal housing in cross-section and the lever arm and engagement claws in elevation.





DETAILED DESCRIPTION

Although the invention will be described next in relation to certain embodiments, the invention is not limited to practice in any one specific type of portable or wearable terminal. It is contemplated that the principles of the invention can be used with a variety of electronic devices, including but not limited to wearable, portable and/or mobile terminals for use with inventory systems. The description of the invention is intended to cover all alternatives, modifications, and equivalent arrangements as may be included within the spirit and scope of the invention as defined by the appended claims. In particular, those skilled in the art will recognize that the components of the invention described herein could be arranged in multiple different ways.


Referring to FIGS. 1 and 1A, a portable or wearable terminal 10 may be worn by a worker on a belt 14 and is connected to a peripheral device 16, such as a voice headset, by a cord 18 that is coupled to the terminal 10 by a break-away connector 12. Such wearable terminals 10 may be used in inventory management environments where workers 11, each using one of the wearable terminals 10, are required to retrieve various items within the warehouse. The wearable terminal 10 and peripheral 16 may permit the worker 11 to communicate bi-directionally, such as with a wireless link 19, with a central computer system 13 (FIG. 1A), or other information system, to send and receive information regarding the activities performed by the worker 11 and the inventory being managed. One suitable wearable terminal 10 for incorporating the invention is the TALKMAN® product available from Vocollect, Inc. of Pittsburgh, Pa.


The peripheral device 16 is adapted with a transducer that generates a signal in response to a suitable input, such as voice input, from the worker 11 and the cord 18 electrically couples the peripheral device 16 with the wearable terminal 10 for transferring the signal from peripheral device 16 to the wearable terminal 10. The central computer system 13 constitutes part of a larger system for sending and receiving information regarding the activities and tasks to be performed by the worker 11. The central computer system 13 may run one or more system software packages for handling a particular task, such as inventory and warehouse management. The peripheral device 16 may also include another transducer that translates information received from the computer system 13 into a format understood aurally by the worker 11.


In a certain environments in which inventories are managed, the cord 18 connecting the peripheral 16 with the terminal 10 may become snagged or entangled, such as on shelving structures or equipment, for example, used to transport the items collected from the inventory. Therefore, it is desirable to have connector 12 which provides a secure electrical connection between cord 18 and terminal 10, but which will break away at a specified break-away force whereby the connector 12 becomes uncoupled or disconnected from the terminal 10 to prevent damage to the terminal 10, peripheral 16 or cord 18.



FIG. 2 shows detail of the exemplary connector 12 comprising two portions, a plug portion 20 and a terminal portion or socket portion 22. The portions 20, 22 are shown uncoupled in FIG. 2 for clarity. Advantageously, plug portion 20 may be coupled to terminal portion 22 to provide an electric connection between a peripheral device 16 and the wearable terminal 10 via contacts 32, such as pins, on the plug portion 20 and corresponding contacts 74 on the terminal portion 22. The wearable terminal 10 may have a terminal portion for a single connector 12, or may be provided with multiple terminal portions 22 for the coupling of multiple plug portions 20, as depicted in FIG. 2. When multiple connectors 12 are used, the plug and terminal portions 20, 22 may be provided with keys 60 and corresponding keyways or key slots 62, respectively, to ensure that the appropriate plug portion 20 is coupled to its respective terminal portion 22.



FIGS. 3-5 show cross-sectional views of the plug and terminal portions 20, 22 of an exemplary electrical connector 12 of FIG. 2. The plug portion 20 includes a plug housing 24 which is configured to be attached to an end of a multi-conductor cord or cable 18. A strain relief 28 provided at one end of the plug housing 24 helps to retain the multi-conductor cord 18 and participates in preventing damage to individual conductors 30 within the cord 18 which may be caused by tension applied to the cord 18.


Individual conductors 30 of the multi-conductor cord 18 are separated within the plug housing 24 and are electrically coupled with respective electrical contacts 32. In the exemplary plug portion 20 shown, the electrical contacts 32 are retractable contacts, such as pogo pin contacts. The contacts 32 protrude through apertures 34 provided in a mating surface 36 of the plug portion 20. The contacts 32 have respective biasing members or springs 38 that bias the pins 32 in a direction toward the mating surface 36, and which also permit the contacts 32 to be displaced such that they are substantially flush with the mating surface 36 when the plug portion 20 couples with the terminal portion.


Each contact 32 is provided with an insert 42, such as a solder cup, that is press-fit into a corresponding cavity 41 provided in the plug housing 24. Each spring 38 is compressed between the insert 42 and a frustoconical portion 43 of the respective contact 32. The insert 42 also electrically couples each conductor 30 of the multi-conductor cord 18 with a corresponding one of the electrical contacts 32. The insert 42 operates to seal off the junction between each conductor 30 and the corresponding contact 32 from moisture infiltrating about the contact 32 into the associated cavity 41.


When the wearable terminal 10 is used in alternatingly warm, humid environments, such as a warehouse or the outdoors, and cold, dry environments, such as a storage freezer, there may be a tendency for the condensation which develops on the connector 12 to freeze, potentially interfering with the electrical contacts. Advantageously, the spring force of the springs 38 on contacts 32 may be selected such that the spring force will break off any ice which may have formed over the contacts 32, when the connector portions are uncoupled and the contacts 32 are moved toward their extended positions by springs 38.


With continued reference to FIGS. 3-5, the plug portion 20 further includes first and second engagement claws 44, 46 which are used to secure the plug portion 20 to the terminal portion 22 in a break-away fashion in accordance with the principles of the present invention. The first engagement claw 44 is provided on one part of the plug housing 24 such as by being formed with the housing, for example. The second engagement claw 46 is provided on a lever arm 48 which is pivotally mounted by a pin 50 to another part of the plug housing 24, such that the second engagement claw 46 is positioned substantially opposite the first engagement claw 44 on the housing 24. A biasing member or spring 52 disposed between the lever arm 48 and the plug housing 24 biases the arm 48 in one direction toward a first position for engaging the terminal portion 22 of connector 12 when coupled thereto. The lever arm 48 may be pivoted in the opposite direction toward a second position for coupling and uncoupling the plug and terminal portions 20, 22 by rotating the lever arm 48 about the pin 50 against the force of spring 52. A protrusion 54 formed into one end of the lever arm 48 helps to retain the spring 52 in position on the plug housing 24 along with a cavity 53 in the housing.


The first and second engagement claws 44, 46 have angled surfaces 56, 58, respectively, which facilitate coupling the plug portion 20 with the terminal portion 22. The second engagement claw 46 on lever arm 48 has a leading edge 60 which is angled to facilitate coupling the plug portion 20 with the terminal portion 22, whereby contact between leading edge 60 and the second engagement lip 78 urges lever arm 48 from the first position toward the second position, against the opposing bias force created by spring 52. In an exemplary embodiment, leading edge 60 is angled approximately 111° from a surface parallel to the angled surface 58 of second engagement claw 46, as depicted in FIG. 6. The angled surfaces 56, 58 also permit the plug portion 20 to become uncoupled from the terminal portion 22 when a specified force is applied to the plug portion 20, as will be described more fully below.


With continued reference to FIGS. 3-5, the terminal portion 22 of the electrical connector 12 includes a terminal housing 70 which is configured to mate with the plug housing 24. The terminal housing 70 may be connected to, or formed integrally with the housing of a device, such as wearable terminal 10, with which the electrical connector 12 is used. One or more conductors 72 are routed to the terminal portion 22 and are attached to electrical contacts 74 which are configured to mate with corresponding electrical contacts 32 of the plug portion 20. Therefore, the contacts 74 are arranged generally in the same fashion as the contacts 32 as seen in FIG. 2. In the exemplary electrical connector 12 shown, the electrical contacts 74 have flat ends which protrude just above, but generally flush with, a mating surface 75 of the terminal portion 22 (as opposed to the upraised pins 32) which is configured to interface with the mating surface 36 of the plug portion 20.


As shown in FIGS. 4 and 5, the terminal contacts 74 are configured to mate with the contacts 32 of the plug portion 20 when the plug portion 20 is coupled to the terminal portion 22. An O-ring 68 positioned inside the terminal housing 70 seals the interior of the housing 70 to protect the conductor-contact interface against moisture infiltration. While the contacts 32, 74 shown in the exemplary embodiment are pogo pins and flat contacts configured to mate with the pogo pins, it will be understood that the contacts 32, 74 may be of various other configurations as are known in the art.


As shown in FIGS. 3-5, the terminal housing 70 includes first and second engagement lips 76, 78 which are configured to mate with the first and second engagement claws 44, 46 of the plug portion 20 when the plug portion 20 is coupled to the terminal portion 22. The first and second engagement lips 76, 78 have angled surfaces 80, 82 which correspond to the angled surfaces 56, 58 of the first and second engagement claws 44, 46, respectively, whereby the contact between the first and second engagement claws 44, 46 and first and second engagement lips 76, 78 retains the plug portion 20 on the terminal portion 20, as shown in FIG. 5. When the plug portion 20 and the terminal portion 22 are coupled together, the mating surfaces 36, 75 of the plug and terminal portions 20, 22 interface with one another such that the contacts 32 on the plug portion 20 and the contacts 74 on the terminal portion 22 are in full contact.


Advantageously, the angled surfaces 56, 58, 80, 82 on the first and second engagement claws 44, 46 and on the corresponding first and second engagement lips 76, 78 act in cooperation with the spring 52 on the plug portion 20 to allow the plug portion 20 to break away from the terminal portion 22 when force of a specific magnitude is applied to the plug portion 20. This force may be applied to the plug portion 20 through the cord 18 connected to the plug housing 24, such as when the cord 18 becomes snagged on an object or machine. Accordingly, the angled surfaces 56, 58, 80, 82 on the first and second engagement claws 44, 46 and the first and second engagement lips 76, 78 may be selected, in conjunction with a given spring constant of the spring 52 on the plug housing 24 to permit the plug portion 20 to break away from the terminal portion 22 at a predetermined break-away force. This break-away force may be applied to the plug portion 20 in any direction, such as normal to the mating surface 36, tangential to the mating surface 36, or generally any angular direction therebetween.


When the force applied to plug portion 20 reaches the predetermined break-away force value, lever arm 48 is caused to rotate about pin 50 toward the second position, whereby plug portion 20 may become uncoupled from terminal portion 22. The relationship between the angled surfaces 58, 82 is such that the relative length dimensions of corresponding surfaces 58 and 82 determine the amount of rotation of lever arm 48 about pin 50 against the force created by the accompanying compression of spring 52.


Advantageously, the break-away force may be specified such that the plug connector portion 20 will remain coupled to the terminal portion 22 during normal operation of the terminal 10, but permits the plug portion 20 to uncouple from the terminal portion 22 when the force applied to the plug portion 20 through the cord 18 reaches the specified break-away force to thereby prevent damage to the electrical connector 12, or to prevent hindering the user of terminal 10. For example, the orientation of the angled surfaces 56, 58, 80, 82 and the spring constant of spring 52 may be selected such that the break-away force is approximately equal to a force at which cord 18 has been rated to operate without sustaining damage, multiplied by a design factor.


Generally, the force for which the cord 18 is rated to operate without sustaining damage is specified by the manufacturer of the cord. The design factor generally has a value less than 1 and is applied to the rated force to account for variations in material properties, the number of loadings which may be experienced by the cord, the durability of the cord over time, and other considerations which add uncertainty to the determination of a proper rating for the cord. In an exemplary embodiment, cord 18 is rated for about 40 pounds and the design factor is selected to range from about 0.25 to about 0.33, whereby the desired break-away force is about 10 pounds.


With reference to FIG. 6 and in an exemplary embodiment, the first engagement claw 44 has an angled surface 56 oriented approximately 46° from the mating surface 36 of the plug portion 20 and the second engagement claw 46 has an angled surface 58 oriented approximately 24° from the mating surface 36 of the plug portion 20 when the lever arm 48 is in the first position, as depicted by phantom lines in FIG. 6. In the exemplary embodiment, the 24° angle of the surface 58 of second engagement claw 46 corresponds to an angle of approximately 122° from a surface which is parallel to a longitudinal axis of lever arm 48, as shown in FIG. 6. The terminal portion 22 of the exemplary embodiment has first and second engagement lips 76, 78 with angled surfaces 80, 82 oriented at approximately 46° and 24°, respectively, from a plane containing the mating surface 75 of the terminal portion 22. When the spring constant of the spring 52 is 81.5 lb/in., the break-away force of the exemplary electrical connector 12 is in the range of approximately 8 to 12 pounds. Of course, other selected break-away force ranges may be used, such as by varying the spring force of spring 52 or the angles of the respective angled surfaces on the engagement claws 44, 46 and lips 76, 78. Generally, the break-away force may range from about 3 pounds to about 15 pounds without departing from the spirit and scope of the invention.


The plug housing 24, terminal housing 70, and arm 48 may be formed from polymeric material. In an exemplary embodiment, the plug housing 24, terminal housing 70, and arm 48 are formed from XENOY®, a thermoplastic resin available from GE Plastics, Seven Hills, Ohio. This polymer has good low temperature characteristics useful when the connector 12 is exposed to low temperatures.


With reference to FIGS. 3-5, coupling of the plug portion 20 with the terminal portion 22 will be described. In use, the connector 12 of the present invention may be used to couple a peripheral device 16, such as a headset, to a wearable terminal 10 or other device. The worker depresses lever arm 48 on the plug portion 20 to move the arm 48 toward the second position and brings the first engagement claw 44 on the plug portion 20 into engagement with the first engagement lip 76 on the terminal portion 22. The corresponding keys 60 and keyways 62 will ensure that the proper plug portion 20 is coupled with the proper terminal portion 22. The worker then urges the second engagement claw 46 into engagement with second engagement lip 78, whereby the angled leading edge 60 of the second engagement claw 46 facilitates engagement of the claw 46 with second engagement lip 78. Mating surfaces 36, 75 are brought into substantially abutting relation and contacts 32, 74 are in full contact with one another. The plug portion 20 and terminal portion 22 are fully coupled and the worker may then release lever arm 48. Advantageously, the connector 12 securely couples peripheral 16 to wearable terminal 10 during normal activities of the worker. However, if a cord 18 between peripheral 16 and plug portion 20 should become snagged on an object, the plug portion 20 will become uncoupled from terminal portion 22 when the force applied to plug portion 20 through cord 18 reaches the specific break-away force to thereby prevent damage to terminal 10, connector 12 or cord 18 while allowing a clean beak-away for the worker. The connector 12 may then be easily coupled or re-secured with the terminal 10 for further use.


While described herein with regard to a wearable terminal 10, it will be appreciated that the exemplary connector 12 is applicable to other wearable, portable and mobile electronic devices connected by a wire or cord to a peripheral device. Moreover, while an exemplary embodiment is disclosed herein with respect to a voice headset, other peripherals 16 may also be utilized equally with the present invention. For example, bar code readers, scanners, printers and other peripherals which might be coupled to terminal 10 through cord 18 will also benefit from the aspects of the present invention. Furthermore, while an exemplary embodiment is described with respect to use of the invention and a portable terminal 10 in an inventory management environment, the principles of the invention will have equal applicability to other terminals or electronic devices, and other operating environments.


While the present invention has been illustrated by the description of the various embodiments thereof, and while the embodiments have been described in considerable detail, it is not intended to restrict or in any way limit the scope of the appended claims to such detail. Additional advantages and modifications will readily appear to those skilled in the art. The invention in its broader aspects is therefore not limited to the specific details, representative apparatus and methods and illustrative examples shown and described. Accordingly, departures may be made from such details without departing from the scope or spirit of Applicants' general inventive concept.

Claims
  • 1. A connector for coupling a cord of a peripheral device with a terminal device, the connector comprising: a plug member configured for being coupled with an end of a cord, the plug member including a housing having a generally planar mating surface configured to mate against a connector surface of a housing of the terminal device, the plug member including a plurality of biased contacts that are biased to extend forward of the mating surface;a stationary engagement claw formed with the housing and positioned proximate one end of the mating surface, the stationary engagement claw having an angled surface configured to connect with an angled surface of an engagement lip on the housing of the terminal device;the angled surface of the stationary engagement claw being angled approximately 46 degrees with respect to the generally planar mating surface of the plug member;a pivoting engagement claw positioned proximate another end of the mating surface opposite the stationary engagement claw and having an angled surface, the pivoting engagement claw being coupled to a lever arm and configured to be moved by force on the lever arm for pivoting between a first position to engage a second angled surface proximate the connector surface of the terminal device and a second position to disengage from the second angled surface;a force element for providing a force on the lever arm in a direction that pivots the pivoting engagement claw toward the first position;the engagement claws, with the lever pivoted toward the first position, simultaneously engaging the respective complementary angled surfaces and directing the mating surface toward the connector surface to press the biased contacts against the connector surface.
  • 2. The connector of claim 1 wherein the angled surface of the stationary engagement claw is positioned rearwardly of the planar mating surface.
  • 3. The connector of claim 1 wherein the angled surface of the pivoting engagement claw is positioned forwardly of the planar mating surface.
  • 4. The connector of claim 1 further comprising a key structure positioned proximate the stationary engagement claw, the key structure configured for engaging a keyway of the terminal device.
  • 5. The connector of claim 1 wherein the force element for providing a force on the lever arm includes a spring.
  • 6. The connector of claim 1 wherein the force element provides a force on the lever arm to push the lever arm away from the connector housing for pivoting the pivoting engagement claw to the first position to engage the second angled surface.
  • 7. The connector of claim 1 wherein the force element may be manipulated to release the force on the lever arm and to allow the lever arm to move towards the connector housing for pivoting the pivoting engagement claw to the second position to disengage from the second angled surface.
  • 8. The connector of claim 1 wherein the pivoting engagement claw angled surface is angled approximately 24 degrees with respect to the generally planar mating surface.
  • 9. A connector for coupling a cord of a peripheral device with a terminal device, the connector comprising: a plug member configured for being coupled with an end of a cord, the plug member including a housing having a generally planar mating surface configured to mate against a connector surface of a housing of the terminal device, the plug member including a plurality of biased contacts that are biased to extend forward of the mating surface;a stationary engagement claw formed with the housing and positioned proximate one end of the mating surface, the stationary engagement claw having an angled surface configured to connect with an angled surface of an engagement lip on the housing of the terminal device;the angled surface of the stationary engagement claw being angled approximately 46 degrees with respect to the generally planar mating surface of the plug member;a pivoting engagement claw positioned proximate another end of the mating surface opposite the stationary engagement claw and having an angled surface, the angled surface of the pivoting engagement claw being angled approximately 24 degrees with respect to the generally planar mating surface;the pivoting engagement claw being coupled to a lever arm and configured to be moved by force on the lever arm for pivoting between a first position to engage a second angled surface proximate the connector surface of the terminal device and a second position to disengage from the second angled surface;a force element for providing a force on the lever arm in a direction that pivots the pivoting engagement claw toward the first position;the engagement claws, with the lever pivoted toward the first position, simultaneously engaging the respective angled surfaces and directing the mating surface toward the connector surface to press the biased contacts against the connector surface.
  • 10. A cord for connecting a peripheral device with a terminal device, the cord comprising: a plurality of conductors;a plug member configured for being coupled with the plurality of conductors at ends thereof, the plug member including a housing having a generally planar mating surface configured to mate against a connector surface of a housing of the terminal device, the plug member including a plurality of biased contacts, the biased contacts being electrically coupled with the plurality of conductors and biased to extend forward of the mating surface;a stationary engagement claw formed with the housing and positioned proximate one end of the mating surface, the stationary engagement claw having an angled surface configured to connect with an angled surface of an engagement lip on the housing of the terminal device;the angled surface of the stationary engagement claw being angled approximately 46 degrees with respect to the generally planar mating surface of the plug member;a pivoting engagement claw positioned proximate another end of the mating surface opposite the stationary engagement claw and having an angled surface, the angled surface of the pivoting engagement claw being angled approximately 24 degrees with respect to the generally planar mating surface;the pivoting engagement claw being coupled to a lever arm and configured to be moved by force on the lever arm for pivoting between a first position to engage a second angled surface proximate the connector surface of the terminal device and a second position to disengage from the second angled surface;a force element for providing a force on the lever arm in a direction that pivots the pivoting engagement claw toward the first position;the engagement claws, with the lever pivoted toward the first position, simultaneously engaging the respective angled surfaces and directing the mating surface toward the connector surface to press the biased contacts against the connector surface.
CROSS-REFERENCE TO RELATED APPLICATIONS

This application is a continuation of application Ser. No. 10/185,300 filed on Jun. 27, 2002 now U.S. Pat. No. 6,910,911, the disclosure of which is hereby incorporated in its entirety by reference herein.

US Referenced Citations (497)
Number Name Date Kind
1483315 Saal Feb 1924 A
1753317 Rothen Apr 1930 A
2170287 Kinnebrew Aug 1939 A
D130619 Kendall Dec 1941 S
2369860 Schroeder Feb 1945 A
D153112 Braun et al. Mar 1949 S
2506524 Stuck May 1950 A
2782423 Wiegand et al. Feb 1957 A
2958769 Bounds Nov 1960 A
3087028 Ernest Apr 1963 A
D196654 Van Den Berg Oct 1963 S
D206122 Bradbury et al. Nov 1966 S
3327807 Mullin Jun 1967 A
3363214 Wright Jan 1968 A
D206665 Pollak Dec 1968 S
D212863 Roberts Dec 1968 S
D215545 Husks Oct 1969 S
3654406 Reinthaler Apr 1972 A
3682268 Gorike Aug 1972 A
3781039 Locke et al. Dec 1973 A
3808577 Mathauser Apr 1974 A
3873757 Berke et al. Mar 1975 A
3969796 Hodsdon Jul 1976 A
3971900 Foley Jul 1976 A
3971901 Foley Jul 1976 A
3984885 Yoshimura et al. Oct 1976 A
4010998 Tolnar et al. Mar 1977 A
4018599 Hill et al. Apr 1977 A
4024368 Shattuck May 1977 A
4031295 Rigazio Jun 1977 A
4039765 Tichy Aug 1977 A
4068913 Stanger et al. Jan 1978 A
4138598 Cech Feb 1979 A
4189788 Schenke Feb 1980 A
4213253 Gudelis Jul 1980 A
RE30662 Foley Jun 1981 E
4302635 Jacobsen Nov 1981 A
D265989 Harris Aug 1982 S
D268675 Hass Apr 1983 S
4418248 Mathis Nov 1983 A
4471496 Gardner Sep 1984 A
4472607 Houng Sep 1984 A
4495646 Gharachorloo Jan 1985 A
4499593 Antle Feb 1985 A
4619491 Drogo Oct 1986 A
4620760 Duncan Nov 1986 A
4634816 O'Malley et al. Jan 1987 A
4649332 Bell Mar 1987 A
4672672 Eggert et al. Jun 1987 A
4689822 Houng Aug 1987 A
4698717 Scheid Oct 1987 A
4739328 Koelle Apr 1988 A
D299129 Wiegel Dec 1988 S
4811243 Racine Mar 1989 A
4821318 Wu Apr 1989 A
D301145 Besasie et al. May 1989 S
4845650 Meade et al. Jul 1989 A
4846714 Welsby et al. Jul 1989 A
4864158 Koelle et al. Sep 1989 A
4874316 Kamon et al. Oct 1989 A
4875233 Derhaag Oct 1989 A
4888591 Landt et al. Dec 1989 A
4907266 Chen Mar 1990 A
4914704 Cole et al. Apr 1990 A
4952024 Gale Aug 1990 A
D313092 Nilsson Dec 1990 S
4999636 Landt et al. Mar 1991 A
5003589 Chen Mar 1991 A
5010495 Willetts Apr 1991 A
5012511 Hanle Apr 1991 A
5018599 Dohi et al. May 1991 A
5023824 Chadima et al. Jun 1991 A
5024604 Savin et al. Jun 1991 A
D318670 Taniguchi Jul 1991 S
5028083 Mischenko Jul 1991 A
5030807 Landt et al. Jul 1991 A
5055659 Hendrick et al. Oct 1991 A
5056161 Breen Oct 1991 A
D321879 Emmerling Nov 1991 S
5063600 Norwood Nov 1991 A
D326655 Iribe Jun 1992 S
5148155 Martin et al. Sep 1992 A
5155659 Kunert Oct 1992 A
D330704 Wagner Nov 1992 S
5177784 Hu Jan 1993 A
5179736 Scanlon Jan 1993 A
D334043 Taniguchi et al. Mar 1993 S
5197332 Shennib Mar 1993 A
5202197 Ansell et al. Apr 1993 A
5225293 Mitchell Jul 1993 A
5241488 Chadima Aug 1993 A
5251105 Kobayashi Oct 1993 A
D341567 Acker Nov 1993 S
5267181 George Nov 1993 A
5280159 Schultz Jan 1994 A
5281957 Schoolman Jan 1994 A
D344494 Cardenas Feb 1994 S
D344522 Taniguchi Feb 1994 S
5305244 Newman et al. Apr 1994 A
5309359 Katz May 1994 A
5347477 Lee Sep 1994 A
D351841 Blankenship et al. Oct 1994 S
5365050 Worthington et al. Nov 1994 A
5365434 Figliuzzi Nov 1994 A
5369857 Sacherman et al. Dec 1994 A
5371679 Abe et al. Dec 1994 A
5381486 Ludeke Jan 1995 A
5386494 White Jan 1995 A
5393239 Ursich Feb 1995 A
5399102 Devine Mar 1995 A
5406037 Nageno Apr 1995 A
5432510 Matthews Jul 1995 A
5438626 Neuman Aug 1995 A
5438698 Burton et al. Aug 1995 A
5446788 Lucey et al. Aug 1995 A
5456611 Henry et al. Oct 1995 A
5462452 Devine Oct 1995 A
5478252 Lecomte et al. Dec 1995 A
5479001 Kumar Dec 1995 A
5480313 d'Alayer de Costemore d'Arc Jan 1996 A
5481645 Bertino Jan 1996 A
D367256 Tokunaga Feb 1996 S
5491651 Janik Feb 1996 A
5501571 Van Durrett et al. Mar 1996 A
5504485 Landt et al. Apr 1996 A
5510795 Koelle Apr 1996 A
5515303 Cargin et al. May 1996 A
5521601 Kandlur May 1996 A
5535437 Karl et al. Jul 1996 A
5550547 Chan et al. Aug 1996 A
5553312 Gattey et al. Sep 1996 A
5555490 Carroll Sep 1996 A
5555554 Hofer Sep 1996 A
5572401 Carroll Nov 1996 A
5579400 Ballein Nov 1996 A
D376598 Hayashi Dec 1996 S
5581492 Janik Dec 1996 A
5604050 Brunette et al. Feb 1997 A
5607792 Garcia et al. Mar 1997 A
D379456 Osiecki May 1997 S
D380199 Beruscha Jun 1997 S
5637417 Engmark Jun 1997 A
5639256 Endo et al. Jun 1997 A
D384072 Ng Sep 1997 S
5665485 Kuwayama et al. Sep 1997 A
5671037 Ogasawara et al. Sep 1997 A
5673037 Cesar et al. Sep 1997 A
D385263 Taylor Oct 1997 S
D385540 Taylor Oct 1997 S
D385541 Taylor Oct 1997 S
5680465 Boyden Oct 1997 A
D385855 Ronzani Nov 1997 S
D387898 Ronzani Dec 1997 S
D390552 Ronzani Feb 1998 S
D391234 Chacon et al. Feb 1998 S
5716730 Deguchi Feb 1998 A
5719743 Jenkins et al. Feb 1998 A
5719744 Jenkins et al. Feb 1998 A
D391953 Copeland Mar 1998 S
5729697 Schkolnick Mar 1998 A
D394436 Hall et al. May 1998 S
5748841 Morin May 1998 A
5757339 Williams et al. May 1998 A
5762512 Trant et al. Jun 1998 A
5763867 Main Jun 1998 A
5766794 Brunette et al. Jun 1998 A
5774096 Usuki et al. Jun 1998 A
5777561 Chieu et al. Jul 1998 A
5781644 Chang Jul 1998 A
5787361 Chen Jul 1998 A
5793878 Chang Aug 1998 A
D398899 Chaco Sep 1998 S
5803750 Purington et al. Sep 1998 A
5812977 Douglas Sep 1998 A
5825045 Koenck et al. Oct 1998 A
5828693 Mays et al. Oct 1998 A
D400848 Clark et al. Nov 1998 S
5832098 Chen Nov 1998 A
5841630 Seto et al. Nov 1998 A
5841859 Chen Nov 1998 A
5844824 Newman et al. Dec 1998 A
5850181 Heinrich et al. Dec 1998 A
5850187 Carrender et al. Dec 1998 A
5856038 Mason Jan 1999 A
5857148 Weisshappel et al. Jan 1999 A
5862241 Nelson Jan 1999 A
D406098 Walter et al. Feb 1999 S
5869204 Kottke et al. Feb 1999 A
5873070 Bunte et al. Feb 1999 A
D406575 Michael et al. Mar 1999 S
5884265 Squitteri Mar 1999 A
5890074 Rydbeck Mar 1999 A
5890123 Brown et al. Mar 1999 A
D408783 Lucaci et al. Apr 1999 S
5892813 Morin et al. Apr 1999 A
5895729 Phelps et al. Apr 1999 A
D409137 Sumita May 1999 S
5903870 Kaufman May 1999 A
5905632 Seto et al. May 1999 A
D410466 Mouri Jun 1999 S
D410921 Luchs et al. Jun 1999 S
D411179 Toyosato Jun 1999 S
5909667 Leontiades Jun 1999 A
5912632 Dieska et al. Jun 1999 A
5931513 Conti Aug 1999 A
5933330 Beutler et al. Aug 1999 A
5934911 Stout et al. Aug 1999 A
5935729 Mareno Aug 1999 A
5941726 Koegel et al. Aug 1999 A
5941729 Sri-Jayantha Aug 1999 A
5942987 Heinrich et al. Aug 1999 A
5945235 Clanton et al. Aug 1999 A
D413582 Tompkins Sep 1999 S
D414470 Chacon Sep 1999 S
5950167 Yaker Sep 1999 A
5956675 Setlur et al. Sep 1999 A
5962837 Main Oct 1999 A
5966082 Cofino et al. Oct 1999 A
5974384 Yasuda Oct 1999 A
D416263 Kuczyk et al. Nov 1999 S
5984709 Zink et al. Nov 1999 A
5991085 Rallison et al. Nov 1999 A
5991726 Immarco et al. Nov 1999 A
5993246 Moldenhauer et al. Nov 1999 A
5995019 Chieu et al. Nov 1999 A
5999085 Szwarc Dec 1999 A
6012030 French-St. George et al. Jan 2000 A
6016347 Magnasco Jan 2000 A
D420674 Powell Feb 2000 S
6021207 Puthuff et al. Feb 2000 A
6022237 Esh Feb 2000 A
6032127 Schkolnick Feb 2000 A
6044347 Abella et al. Mar 2000 A
D422962 Shevlin et al. Apr 2000 S
6051334 Tsurumaru Apr 2000 A
D424035 Steiner May 2000 S
D424577 Backs et al. May 2000 S
6056199 Wiklof May 2000 A
6060193 Remes May 2000 A
6062891 Villiers May 2000 A
D426529 Lohrding Jun 2000 S
6071640 Robertson et al. Jun 2000 A
6075857 Doss et al. Jun 2000 A
6078251 Landt et al. Jun 2000 A
6078825 Hahn et al. Jun 2000 A
6084556 Zwern Jul 2000 A
6085428 Casby et al. Jul 2000 A
6091546 Spitzer Jul 2000 A
D430158 Bhatia Aug 2000 S
D430159 Bhatia et al. Aug 2000 S
6101260 Jensen et al. Aug 2000 A
6104281 Heinrich et al. Aug 2000 A
6109526 Ohanian Aug 2000 A
D430882 Tsai Sep 2000 S
6114625 Hughes et al. Sep 2000 A
6120932 Slipy et al. Sep 2000 A
6122329 Zai Sep 2000 A
D431562 Bhatia et al. Oct 2000 S
6127990 Zwern Oct 2000 A
6127999 Mizutani Oct 2000 A
6136467 Phelps et al. Oct 2000 A
6137686 Saye Oct 2000 A
6137868 Leach Oct 2000 A
6137879 Papadopoulos et al. Oct 2000 A
6149451 Weber Nov 2000 A
6154669 Hunter et al. Nov 2000 A
D434762 Ikenaga Dec 2000 S
6157533 Sallam Dec 2000 A
6160702 Lee Dec 2000 A
6164853 Foote Dec 2000 A
6167413 Daley Dec 2000 A
D436104 Bhatia Jan 2001 S
D436349 Kim Jan 2001 S
6171138 Lefebvre et al. Jan 2001 B1
6172596 Cesar et al. Jan 2001 B1
6173266 Marx et al. Jan 2001 B1
6179192 Weinger et al. Jan 2001 B1
6185535 Hedin Feb 2001 B1
6188985 Thrift Feb 2001 B1
6190795 Daley Feb 2001 B1
6195053 Kodukula Feb 2001 B1
6199044 Ackley et al. Mar 2001 B1
6204765 Brady et al. Mar 2001 B1
D440966 Ronzani Apr 2001 S
6225777 Garcia et al. May 2001 B1
6226622 Dabbiere May 2001 B1
6229694 Kono May 2001 B1
6230029 Hahn et al. May 2001 B1
6233559 Balakrishnan May 2001 B1
6233560 Tannenbaum May 2001 B1
6235420 Ng May 2001 B1
6237051 Collins May 2001 B1
D443870 Carpenter et al. Jun 2001 S
6243682 Eghtesadi et al. Jun 2001 B1
6246989 Polcyn Jun 2001 B1
6261715 Nakamura et al. Jul 2001 B1
6266641 Takaya Jul 2001 B1
D448027 Jones et al. Sep 2001 S
6286763 Reynolds et al. Sep 2001 B1
D449289 Weikel et al. Oct 2001 S
6302454 Tsurumaru Oct 2001 B1
6304436 Branch et al. Oct 2001 B1
6304459 Toyosato et al. Oct 2001 B1
6310888 Hamlin Oct 2001 B1
6318636 Reynolds et al. Nov 2001 B1
6321198 Hank et al. Nov 2001 B1
6324053 Kamijo Nov 2001 B1
D451903 Amae et al. Dec 2001 S
D451907 Amae et al. Dec 2001 S
D451919 Abboud Dec 2001 S
6325507 Jannard Dec 2001 B1
6326543 Lamp Dec 2001 B1
6327152 Saye Dec 2001 B1
6339764 Livesay et al. Jan 2002 B1
6349001 Spitzer Feb 2002 B1
D454468 Mano Mar 2002 S
D454873 Clark et al. Mar 2002 S
6353313 Estep Mar 2002 B1
6356635 Lyman et al. Mar 2002 B1
6357534 Buetow et al. Mar 2002 B1
6357662 Helton Mar 2002 B1
6359603 Zwern Mar 2002 B1
6359777 Newman Mar 2002 B1
6359995 Ou Mar 2002 B1
6364675 Brauer et al. Apr 2002 B1
6369952 Rallison et al. Apr 2002 B1
6371535 Wei Apr 2002 B2
6373693 Seto et al. Apr 2002 B1
6373942 Braund Apr 2002 B1
6374126 MacDonald, Jr. et al. Apr 2002 B1
6376942 Burger Apr 2002 B1
D457133 Yoneyama May 2002 S
6384591 Estep May 2002 B1
6384712 Goldman May 2002 B1
6384982 Spitzer May 2002 B1
6386107 Rancourt May 2002 B1
6394278 Reed May 2002 B1
6404325 Heinrich Jun 2002 B1
6422476 Ackley Jul 2002 B1
6424357 Frulla Jul 2002 B1
6429775 Martinez et al. Aug 2002 B1
6434251 Jensen et al. Aug 2002 B1
6434526 Cilurzo Aug 2002 B1
6438523 Oberteuffer et al. Aug 2002 B1
6445175 Estep Sep 2002 B1
6454608 Kitahara et al. Sep 2002 B1
D463784 Taylor et al. Oct 2002 S
6486769 McLean Nov 2002 B1
D466497 Wikel Dec 2002 S
D467592 Hussaini Dec 2002 S
6496799 Pickering Dec 2002 B1
6500581 White et al. Dec 2002 B2
6501807 Chieu Dec 2002 B1
D469080 Kohli Jan 2003 S
6504914 Brademann et al. Jan 2003 B1
6509546 Egitto Jan 2003 B1
6511770 Chang Jan 2003 B2
6523752 Nishitani et al. Feb 2003 B2
6525648 Kubler Feb 2003 B1
6529880 McKeen Mar 2003 B1
6532148 Jenks Mar 2003 B2
6560092 Itou et al. May 2003 B2
D475996 Skulley Jun 2003 S
6574672 Mitchell et al. Jun 2003 B1
6581782 Reed Jun 2003 B2
6597465 Jarchow Jul 2003 B1
6608551 Anderson Aug 2003 B1
D480074 Tuhkanen Sep 2003 S
6628509 Kono Sep 2003 B2
6639509 Martinez Oct 2003 B1
D483281 Cobigo Dec 2003 S
D483369 Klemettila Dec 2003 S
D483370 Klemettila Dec 2003 S
6658130 Huang Dec 2003 B2
6660427 Hukill Dec 2003 B1
6677852 Landt Jan 2004 B1
D487064 Stekelenburg Feb 2004 S
6697465 Goss Feb 2004 B1
D487276 Cobigo Mar 2004 S
D487470 Cobigo Mar 2004 S
D488146 Minto Apr 2004 S
D488461 Okada et al. Apr 2004 S
6731771 Cottrell May 2004 B2
D491917 Asai Jun 2004 S
D491953 Arakaki et al. Jun 2004 S
D492295 Glatt Jun 2004 S
6743535 Yoneyama Jun 2004 B2
6745014 Seibert Jun 2004 B1
6749960 Takeshita Jun 2004 B2
6754361 Hall Jun 2004 B1
6754632 Kalinowski et al. Jun 2004 B1
D494571 Polito Aug 2004 S
6769762 Saito et al. Aug 2004 B2
6769767 Swab et al. Aug 2004 B2
6772454 Barry Aug 2004 B1
6778676 Groth et al. Aug 2004 B2
6811088 Lanzaro et al. Nov 2004 B2
6812852 Cesar Nov 2004 B1
6816063 Kubler Nov 2004 B2
6826532 Casby et al. Nov 2004 B1
6830181 Bennett Dec 2004 B1
6847336 Lemelson Jan 2005 B1
6853294 Ramamurthy Feb 2005 B1
6859134 Heiman et al. Feb 2005 B1
6872080 Pastrick Mar 2005 B2
6890273 Perez May 2005 B1
D506065 Sugino et al. Jun 2005 S
6909546 Hirai Jun 2005 B2
6910911 Mellott et al. Jun 2005 B2
D507523 Resch et al. Jul 2005 S
6915258 Kontonassios Jul 2005 B2
6934675 Glinski Aug 2005 B2
6965681 Almqvist Nov 2005 B2
D512417 Hirakawa et al. Dec 2005 S
D512718 Mori Dec 2005 S
D512985 Travers et al. Dec 2005 S
6982640 Lindsay et al. Jan 2006 B2
7003464 Ferrans et al. Feb 2006 B2
D517556 Cho Mar 2006 S
D518451 Nussberger Apr 2006 S
D519497 Komiyama Apr 2006 S
7028265 Kuromusha et al. Apr 2006 B2
7052799 Zatezalo et al. May 2006 B2
D522897 Kellond Jun 2006 S
7063263 Swartz et al. Jun 2006 B2
D524794 Kim Jul 2006 S
D525237 Viduya et al. Jul 2006 S
7082393 Lahr Jul 2006 B2
7085543 Nassimi Aug 2006 B2
7099464 Lucey et al. Aug 2006 B2
D528031 Kellond Sep 2006 S
7110800 Nagayasu et al. Sep 2006 B2
7110801 Nassimi Sep 2006 B2
D529438 Viduya et al. Oct 2006 S
D529447 Greenfield Oct 2006 S
D531586 Poulet Nov 2006 S
7143041 Sacks et al. Nov 2006 B2
D533184 Kim Dec 2006 S
7146323 Guenther et al. Dec 2006 B2
D535974 Alwicker et al. Jan 2007 S
D536692 Alwicker et al. Feb 2007 S
D537978 Chen Mar 2007 S
D539816 Aoki Apr 2007 S
7216351 Maes May 2007 B1
D543994 Kurihara Jun 2007 S
7228429 Monroe Jun 2007 B2
D548220 Takagi Aug 2007 S
D549216 Viduya Aug 2007 S
D549217 Viduya Aug 2007 S
D549694 Viduya et al. Aug 2007 S
7257537 Ross et al. Aug 2007 B2
D551615 Wahl Sep 2007 S
D552595 Viduya et al. Oct 2007 S
D558761 Viduya et al. Jan 2008 S
D558785 Kofford Jan 2008 S
7319740 Engelke Jan 2008 B2
7346175 Hui et al. Mar 2008 B2
D565569 Viduya et al. Apr 2008 S
D567218 Viduya et al. Apr 2008 S
D567219 Viduya et al. Apr 2008 S
D567799 Viduya et al. Apr 2008 S
D567806 Viduya et al. Apr 2008 S
D568881 Hsiau May 2008 S
D569358 Devenish, III et al. May 2008 S
D569876 Griffin May 2008 S
7369991 Manabe et al. May 2008 B2
D571372 Brefka et al. Jun 2008 S
D572655 Osiecki Jul 2008 S
D573577 Huang Jul 2008 S
D583827 Wahl Dec 2008 S
D587269 Keeports Feb 2009 S
7487440 Gergic et al. Feb 2009 B2
7496387 Byford et al. Feb 2009 B2
7519196 Bech Apr 2009 B2
7604765 Sugimoto et al. Oct 2009 B2
20010017926 Viamini Aug 2001 A1
20010046305 Muranami Nov 2001 A1
20020003889 Fischer Jan 2002 A1
20020015008 Kishida Feb 2002 A1
20020021551 Kashiwagi Feb 2002 A1
20020052134 Revis May 2002 A1
20020076060 Hall Jun 2002 A1
20020131616 Bronnikov Sep 2002 A1
20020178344 Bourguet Nov 2002 A1
20030095525 Lavin May 2003 A1
20030130852 Tanaka Jul 2003 A1
20030233165 Hein Dec 2003 A1
20040024586 Andersen Feb 2004 A1
20040063475 Weng Apr 2004 A1
20040091129 Jensen May 2004 A1
20040220686 Cass Nov 2004 A1
20050010418 McNair Jan 2005 A1
20050230388 Wu Oct 2005 A1
20050272401 Zatezalo Dec 2005 A1
20070080930 Logan Apr 2007 A1
20070221138 Manimi Sep 2007 A1
20080072847 Liao Mar 2008 A1
Foreign Referenced Citations (9)
Number Date Country
4111049 Oct 1991 DE
04138886 Apr 1993 DE
00732817 Sep 1996 EP
1383029 Jan 2004 EP
02242099 Sep 1991 GB
WO0041543 Jul 2000 WO
WO02069320 Sep 2002 WO
WO2005008476 Jan 2005 WO
WO2007004755 Jan 2007 WO
Related Publications (1)
Number Date Country
20050095899 A1 May 2005 US
Continuations (1)
Number Date Country
Parent 10185300 Jun 2002 US
Child 10982967 US