Patent · US10404028B2 · B2 · US
System for automatic robotic cable connector assembly using a cartridge
- (11) Publication number
- US10404028B2
- (21) Application number
- 15/803,528
- (22) Filing date
- 2017-11-03
- (30) Priority date
- 2013-07-22
- (43) Publication date
- 2019-09-03
- (45) Date of grant
- 2019-09-03
- (51) IPC
- B25J 11/00; H01R 43/02; H01R 43/05; H01R 43/28
- (52) CPC
- (73) Assignee
- Frisimos Ltd
- (72) Inventors
- Tal Pechter; Hanan Ben Ron
- (54) Title
- System for automatic robotic cable connector assembly using a cartridge
- (57) Abstract
An automatic-robotic-system-for-cable assembly system and method is provided. The method and system are configured to use a cartridge which holds one or both ends of the cable. The cartridge moves along an automatic cable assembly line, with the line segmented into different stages, at which a process is performed by a specific machine. Different machines, such as actuators or modular machines, perform operations on the cartridge at the different stages. In preparation for or as part of the operations, the actuators or modular machines may apply one or more forces to the cartridge, causing one or more of the following to occur: moving an end of the cartridge to a modular machine, rotating an end of the cable, tipping the ends of the cable, etc. In this way, use of the cartridge enables the automatic assembly of the cables held in the cartridge.
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Claims (21)
- A cable processing system comprising: a cartridge configured to hold a cable and to interface with a machine at a station in order to process the cable, the cartridge comprising: a base structure comprising a connector configured to connect to a conveyor in order to move the cartridge to the station, a first slide mating portion and a second slide mating portion; a first movable portion comprising a first sliding member, a first holder, and a first section, wherein the first sliding member is configured to mate with the first slide mating portion in order for the first movable portion to slide, relative to the base structure, in a direction toward the machine or away from the machine, wherein the first holder is configured to hold the cable proximate to a first end of the cable and wherein the first section is shaped to receive a first external motive force, the first external motive force being generated external to the cartridge; and a second movable portion comprising a second sliding member, a second holder, and a second section, wherein the second sliding member is configured to mate with the second slide mating portion in order for the second movable portion to slide, relative to the base structure, in the direction toward the machine or away from the machine, wherein the second holder is configured to hold the cable proximate to a second end of the cable and wherein the second section is shaped to receive a second external motive force, the second external motive force being generated external to the cartridge, wherein the first end and the second end are two ends of the cable; and an actuator in fixed relation to the station and comprising at least one motive force device configured to generate the first external motive force and the second external motive force; wherein, responsive to receiving the first external motive force at the first section, the first movable portion is configured to slide, via the first sliding member, in the direction toward or away from the machine; and wherein, responsive to receiving the second external motive force at the second section, the second movable portion is configured to slide, via the second sliding member, in the direction toward or away from the machine.
- The cable processing system of claim 1, wherein the first movable portion comprises a first arm; wherein the second movable portion comprises a second arm; wherein the first external motive force is configured to move the first arm, while the first holder of the first arm is holding the cable proximate to the first end of the cable, such that both the first arm and the first end of the cable move toward the machine; and wherein the second external motive force is configured to move the second arm, while the second holder of the second arm is holding the cable proximate to the second end of the cable, such that both the second arm and the second end of the cable move toward the machine.
- The cable processing system of claim 2, wherein the actuator comprises a piston; wherein the first arm includes a first grip configured to receive the piston in order to move the first arm toward the machine; and wherein the second arm includes a second grip configured to receive the piston in order to move the second arm toward the machine.
- The cable processing system of claim 3, wherein the first arm and the second arm are connected to the base structure; wherein the first arm is configured to slide along a first channel in order to move toward the machine; and wherein the second arm is configured to slide along a second channel in order to move toward the machine.
- The cable processing system of claim 4, wherein the first arm is further configured to receive a first rotation motion to rotate the first end of the cable; and wherein the second arm is further configured to receive a second rotation motion to rotate the second end of the cable.
- The cable processing system of claim 1, wherein the first holder comprises pincers configured to pinch the cable; and wherein the pincers are configured to receive a tool such that the tool pries the pincers apart in order to release the cable.
- The cable processing system of claim 6, wherein the pincers comprise a groove shaped to mate with the cable.
- The cable processing system of claim 6, wherein, after the tool pries the pincers apart in order to release the cable, the first movable portion is configured to receive an applied external force to move the first end of the cable toward the machine without any part of the first movable portion moving toward the machine.
- The cable processing system of claim 6, wherein the first movable portion is configured to receive the applied external force from a roller; wherein a first direction of rotation of the roller results in the first end of the cable moving toward the machine; and wherein a second direction of rotation of the roller results in the first end of the cable moving away the machine, the second direction of rotation being opposite to the first direction of rotation.
- The cable processing system of claim 1, wherein the actuator comprises one or more motors or pistons configured to generate the first external motive force and the second external motive force; and wherein the cartridge consists of passive elements incapable of independently generating a force.
- The cable processing system of claim 10, wherein the actuator comprises at least one rolling tool, the at least one rolling tool including a roller; wherein the actuator controls the one or more motors or pistons in order to move the at least one rolling tool and the cartridge relative to one another in order for the roller to contact at least a part of the cartridge or at least a part of the cable held by the cartridge; and wherein the actuator is configured to control the one or more motors or pistons in order for the roller to roll, thereby imparting motion to the at least a part of the cartridge or the at least a part of the cable held by the cartridge in order to move a respective end of the cable relative to the machine.
- The cable processing system of claim 11, wherein the actuator is configured to control the one or more motors or pistons in order for the roller to roll, thereby imparting motion in order to spool the respective end of the cable toward or away from the machine without moving either of the first sliding member or the second sliding member.
- The cable processing system of claim 12, wherein the actuator is configured to control the one or more motors or piston to modify a position of the first holder in order to release the hold of the cable proximate to the first end of the cable; and wherein the actuator is configured, after the hold of the cable proximate to the first end of the cable is released, to control the roller in order to spool the respective end of the cable toward or away from the machine without moving the first sliding member.
- The cable processing system of claim 11, wherein the direction toward or away from the machine defines a longitudinal axis; and wherein the actuator is configured to control the roller to impart motion in order to move the respective end of the cable rotationally about the longitudinal axis.
- The cable processing system of claim 11, wherein the roller comprises a first roller; and wherein a part of the cable is sandwiched between at least two rollers such that the rolling of the first roller imparts the motion to move the respective end of the cable relative to the machine.
- The cable processing system of claim 15, wherein one of the at least two rollers comprises a second roller; and wherein the second roller is a passive element and moves responsive to the first roller imparting motion.
- The cable processing system of claim 16, wherein the actuator is configured to control the one or more motors or piston in order for the first roller to physically contact a part of the cable; and wherein, after physical contact of the first roller with the part of the cable, the actuator is configured to control the first roller in order to impart the motion to move the respective end of the cable.
- The cable processing system of claim 16, wherein the cartridge comprises the second roller.
- The cable processing system of claim 18, wherein the first movable portion includes the second roller.
- The cable processing system of claim 16, wherein the first roller and the second roller are configured to spool a respective end of the cable toward or away from the machine.
- The cable processing system of claim 16, wherein the direction toward or away from the machine defines a longitudinal axis; and wherein the first roller and the second roller are configured to move a respective end of the cable rotationally about the longitudinal axis.
Description
The present disclosure generally relates to cable and connector industry, and more particularly the disclosure relates to a system and method of assembly connectors and cables.
Electronic devices may communicate with one another. Connectivity amongst the different electronic devices may be facilitated by using physical connectors (such as cables). The connectors may have various parameters such as: size, labeling, interface parameters, structure, etc. Interface parameters may include: number of connectivity pads (e.g., pins), the layout of the connectivity pads and their physical size, etc.
Further, there are many different types of connectors. Examples of different standard connector types include, but are not limited to: an eight position-eight conductor (8P8C) modular connector with eight positions, which may be used in Ethernet® communications; a D-subminiature electrical connector commonly used for the RS-232 serial port on: modems, computers, telecommunications, test and measurement instruments; an HDMI (High-Definition Multimedia Interface) connector compact audio/video interface for transferring uncompressed video data and compressed/uncompressed digital audio data from a HDMI-compliant device (“the source device”) to a compatible computer monitor, video projector, digital television, or digital audio device; a Universal Serial Bus (USB) connector (e.g., USB 2.0 has a 4-pin connector; USB 3.0 has 9 pins surrounded by a shield); a Power connector which may include a ...
Citations (36)
- US3153358A
- US3149390A
- US3768143A
- US3953706A
- US4916811A
- EP0117273A1
- US4653159A
- US4683636A
- US4733463A
- US4704925A
- CA1329981C
- JPH02197206A
- US4977934A
- JPH0765652A
- US5994646A
- US6003341A
- US6341242B1
- US6631554B1
- CN2454093Y
- US6895654B2
- US6964288B2
- US20050006345A1
- US20060084957A1
- US20060065640A1
- US8406598B2
- US20110127697A1
- US8052836B2
- US8302295B2
- US20100282487A1
- US8772671B2
- US20140174267A1
- US20160285221A1
- US9673587B2
- US9837778B2
- WO2015125129A1
- WO2017037691A1
Record as JSON
{
"publication_number": "US10404028B2",
"country": "US",
"kind": "B2",
"title": "System for automatic robotic cable connector assembly using a cartridge",
"abstract": "An automatic-robotic-system-for-cable assembly system and method is provided. The method and system are configured to use a cartridge which holds one or both ends of the cable. The cartridge moves along an automatic cable assembly line, with the line segmented into different stages, at which a process is performed by a specific machine. Different machines, such as actuators or modular machines, perform operations on the cartridge at the different stages. In preparation for or as part of the operations, the actuators or modular machines may apply one or more forces to the cartridge, causing one or more of the following to occur: moving an end of the cartridge to a modular machine, rotating an end of the cable, tipping the ends of the cable, etc. In this way, use of the cartridge enables the automatic assembly of the cables held in the cartridge.",
"claims": [
"1. A cable processing system comprising: a cartridge configured to hold a cable and to interface with a machine at a station in order to process the cable, the cartridge comprising: a base structure comprising a connector configured to connect to a conveyor in order to move the cartridge to the station, a first slide mating portion and a second slide mating portion; a first movable portion comprising a first sliding member, a first holder, and a first section, wherein the first sliding member is configured to mate with the first slide mating portion in order for the first movable portion to slide, relative to the base structure, in a direction toward the machine or away from the machine, wherein the first holder is configured to hold the cable proximate to a first end of the cable and wherein the first section is shaped to receive a first external motive force, the first external motive force being generated external to the cartridge; and a second movable portion comprising a second sliding member, a second holder, and a second section, wherein the second sliding member is configured to mate with the second slide mating portion in order for the second movable portion to slide, relative to the base structure, in the direction toward the machine or away from the machine, wherein the second holder is configured to hold the cable proximate to a second end of the cable and wherein the second section is shaped to receive a second external motive force, the second external motive force being generated external to the cartridge, wherein the first end and the second end are two ends of the cable; and an actuator in fixed relation to the station and comprising at least one motive force device configured to generate the first external motive force and the second external motive force; wherein, responsive to receiving the first external motive force at the first section, the first movable portion is configured to slide, via the first sliding member, in the direction toward or away from the machine; and wherein, responsive to receiving the second external motive force at the second section, the second movable portion is configured to slide, via the second sliding member, in the direction toward or away from the machine.",
"2. The cable processing system of claim 1, wherein the first movable portion comprises a first arm; wherein the second movable portion comprises a second arm; wherein the first external motive force is configured to move the first arm, while the first holder of the first arm is holding the cable proximate to the first end of the cable, such that both the first arm and the first end of the cable move toward the machine; and wherein the second external motive force is configured to move the second arm, while the second holder of the second arm is holding the cable proximate to the second end of the cable, such that both the second arm and the second end of the cable move toward the machine.",
"3. The cable processing system of claim 2, wherein the actuator comprises a piston; wherein the first arm includes a first grip configured to receive the piston in order to move the first arm toward the machine; and wherein the second arm includes a second grip configured to receive the piston in order to move the second arm toward the machine.",
"4. The cable processing system of claim 3, wherein the first arm and the second arm are connected to the base structure; wherein the first arm is configured to slide along a first channel in order to move toward the machine; and wherein the second arm is configured to slide along a second channel in order to move toward the machine.",
"5. The cable processing system of claim 4, wherein the first arm is further configured to receive a first rotation motion to rotate the first end of the cable; and wherein the second arm is further configured to receive a second rotation motion to rotate the second end of the cable.",
"6. The cable processing system of claim 1, wherein the first holder comprises pincers configured to pinch the cable; and wherein the pincers are configured to receive a tool such that the tool pries the pincers apart in order to release the cable.",
"7. The cable processing system of claim 6, wherein the pincers comprise a groove shaped to mate with the cable.",
"8. The cable processing system of claim 6, wherein, after the tool pries the pincers apart in order to release the cable, the first movable portion is configured to receive an applied external force to move the first end of the cable toward the machine without any part of the first movable portion moving toward the machine.",
"9. The cable processing system of claim 6, wherein the first movable portion is configured to receive the applied external force from a roller; wherein a first direction of rotation of the roller results in the first end of the cable moving toward the machine; and wherein a second direction of rotation of the roller results in the first end of the cable moving away the machine, the second direction of rotation being opposite to the first direction of rotation.",
"10. The cable processing system of claim 1, wherein the actuator comprises one or more motors or pistons configured to generate the first external motive force and the second external motive force; and wherein the cartridge consists of passive elements incapable of independently generating a force.",
"11. The cable processing system of claim 10, wherein the actuator comprises at least one rolling tool, the at least one rolling tool including a roller; wherein the actuator controls the one or more motors or pistons in order to move the at least one rolling tool and the cartridge relative to one another in order for the roller to contact at least a part of the cartridge or at least a part of the cable held by the cartridge; and wherein the actuator is configured to control the one or more motors or pistons in order for the roller to roll, thereby imparting motion to the at least a part of the cartridge or the at least a part of the cable held by the cartridge in order to move a respective end of the cable relative to the machine.",
"12. The cable processing system of claim 11, wherein the actuator is configured to control the one or more motors or pistons in order for the roller to roll, thereby imparting motion in order to spool the respective end of the cable toward or away from the machine without moving either of the first sliding member or the second sliding member.",
"13. The cable processing system of claim 12, wherein the actuator is configured to control the one or more motors or piston to modify a position of the first holder in order to release the hold of the cable proximate to the first end of the cable; and wherein the actuator is configured, after the hold of the cable proximate to the first end of the cable is released, to control the roller in order to spool the respective end of the cable toward or away from the machine without moving the first sliding member.",
"14. The cable processing system of claim 11, wherein the direction toward or away from the machine defines a longitudinal axis; and wherein the actuator is configured to control the roller to impart motion in order to move the respective end of the cable rotationally about the longitudinal axis.",
"15. The cable processing system of claim 11, wherein the roller comprises a first roller; and wherein a part of the cable is sandwiched between at least two rollers such that the rolling of the first roller imparts the motion to move the respective end of the cable relative to the machine.",
"16. The cable processing system of claim 15, wherein one of the at least two rollers comprises a second roller; and wherein the second roller is a passive element and moves responsive to the first roller imparting motion.",
"17. The cable processing system of claim 16, wherein the actuator is configured to control the one or more motors or piston in order for the first roller to physically contact a part of the cable; and wherein, after physical contact of the first roller with the part of the cable, the actuator is configured to control the first roller in order to impart the motion to move the respective end of the cable.",
"18. The cable processing system of claim 16, wherein the cartridge comprises the second roller.",
"19. The cable processing system of claim 18, wherein the first movable portion includes the second roller.",
"20. The cable processing system of claim 16, wherein the first roller and the second roller are configured to spool a respective end of the cable toward or away from the machine.",
"21. The cable processing system of claim 16, wherein the direction toward or away from the machine defines a longitudinal axis; and wherein the first roller and the second roller are configured to move a respective end of the cable rotationally about the longitudinal axis."
],
"description_excerpt": "The present disclosure generally relates to cable and connector industry, and more particularly the disclosure relates to a system and method of assembly connectors and cables.\n\nElectronic devices may communicate with one another. Connectivity amongst the different electronic devices may be facilitated by using physical connectors (such as cables). The connectors may have various parameters such as: size, labeling, interface parameters, structure, etc. Interface parameters may include: number of connectivity pads (e.g., pins), the layout of the connectivity pads and their physical size, etc.\n\nFurther, there are many different types of connectors. Examples of different standard connector types include, but are not limited to: an eight position-eight conductor (8P8C) modular connector with eight positions, which may be used in Ethernet® communications; a D-subminiature electrical connector commonly used for the RS-232 serial port on: modems, computers, telecommunications, test and measurement instruments; an HDMI (High-Definition Multimedia Interface) connector compact audio/video interface for transferring uncompressed video data and compressed/uncompressed digital audio data from a HDMI-compliant device (“the source device”) to a compatible computer monitor, video projector, digital television, or digital audio device; a Universal Serial Bus (USB) connector (e.g., USB 2.0 has a 4-pin connector; USB 3.0 has 9 pins surrounded by a shield); a Power connector which may include a ...",
"cpc": [
"H01R 43/28",
"B25J 11/00",
"H01R 43/0249",
"H01R 43/05"
],
"ipc": [
"B25J 11/00",
"H01R 43/02",
"H01R 43/05",
"H01R 43/28"
],
"assignees": [
"Frisimos Ltd"
],
"inventors": [
"Tal Pechter",
"Hanan Ben Ron"
],
"filing_date": "2017-11-03",
"publication_date": "2019-09-03",
"grant_date": "2019-09-03",
"priority_date": "2013-07-22",
"application_number": "US-201715803528-A",
"family_id": "61240724",
"cited_by_count": 3,
"citations": [
"US3153358A",
"US3149390A",
"US3768143A",
"US3953706A",
"US4916811A",
"EP0117273A1",
"US4653159A",
"US4683636A",
"US4733463A",
"US4704925A",
"CA1329981C",
"JPH02197206A",
"US4977934A",
"JPH0765652A",
"US5994646A",
"US6003341A",
"US6341242B1",
"US6631554B1",
"CN2454093Y",
"US6895654B2",
"US6964288B2",
"US20050006345A1",
"US20060084957A1",
"US20060065640A1",
"US8406598B2",
"US20110127697A1",
"US8052836B2",
"US8302295B2",
"US20100282487A1",
"US8772671B2",
"US20140174267A1",
"US20160285221A1",
"US9673587B2",
"US9837778B2",
"WO2015125129A1",
"WO2017037691A1"
]
}
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