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CN-224232974-U - Connector and servo motor

CN224232974UCN 224232974 UCN224232974 UCN 224232974UCN-224232974-U

Abstract

The utility model discloses a connector and a servo motor, which belong to the technical field of motors, wherein the servo motor comprises a shell and a connector, the connector is installed on the casing, and the connector includes first connecting block and second connecting block, and first connecting block and second connecting block are radial to be installed. According to the utility model, the first connecting block connected with the power line is arranged on the mounting groove, the mounting space of the brake cable is reserved, and after the brake assembly is pressed in, the brake cable is connected with the second terminal male head and the second connecting block is arranged, so that the brake cable is simply and conveniently mounted. The connector provided by the utility model has the advantages that the problem of electric wire stacking caused by overlong installed brake cables is avoided, the layout of the brake cables is optimized, and the working condition adaptability, the application environment and the working efficiency of the servo motor are improved.

Inventors

  • QIU XIN
  • YANG PING

Assignees

  • 金华市纳石科技有限公司

Dates

Publication Date
20260512
Application Date
20250521
Priority Date
20241122

Claims (19)

  1. 1. The connector is characterized by being mounted on a shell of a servo motor and comprises a first connecting block and a second connecting block, and the first connecting block and the second connecting block are radially mounted.
  2. 2. The connector of claim 1, wherein said first connector block has a first male terminal mounted thereon, said first male terminal being connected to a power line.
  3. 3. A connector as claimed in claim 2, wherein said second connection block is provided with a second male terminal, said second male terminal being connected to a brake cable.
  4. 4. A connector according to claim 3, further comprising a plurality of snaps.
  5. 5. A connector according to claim 4, wherein a plurality of said catches are provided at the outer edge of said connector.
  6. 6. A connector according to claim 4, wherein a plurality of said catches are provided on a side wall of said connector.
  7. 7. A connector as defined in claim 6, wherein the back of the clip is undercut to form the undercut.
  8. 8. The connector of claim 7, further comprising an opening formed in a sidewall edge of the connector.
  9. 9. The servo motor comprises the connector as claimed in any one of claims 1-8, and is characterized in that the servo motor comprises a shell, the shell comprises a first boss and a mounting groove, the first boss is arranged on the shell, the mounting groove is formed in the center of the first boss, and the connector is mounted in the mounting groove through the buckle.
  10. 10. The servo motor of claim 9 further comprising a sealing structure formed by curing glue for fixedly mounting the first and second connection blocks in the mounting groove.
  11. 11. A servo motor as recited in claim 10, wherein said catch is disposed at an outer edge of said connector, an inner wall of said mounting groove extends radially to form a stepped structure against which said catch abuts, said connector being mounted in said stepped structure by said catch.
  12. 12. A servo motor as recited in claim 11, wherein glue flows into said stepped structure through an end face of said connector, and cures to form said seal, said seal wrapping an end of said connector.
  13. 13. The servo motor of claim 10 wherein the catch is disposed on a side wall of the connector, an inner wall of the mounting groove being recessed to form a groove into which the catch snaps.
  14. 14. The servo motor of claim 13 wherein the connector further comprises an opening, the opening being formed in a sidewall edge of the connector.
  15. 15. A servo motor as recited in claim 14, wherein glue flows into said housing through said connector end along said opening, and cures to form said seal, said seal wrapping said connector end and periphery, and said housing inner wall.
  16. 16. The servo motor of claim 15 wherein the back of the clasp is undercut to form an undercut.
  17. 17. The servo motor of any one of claims 11 or 13 wherein the housing includes a first mounting region and a second mounting region, the first mounting region and the second mounting region being connected along an axial direction of the housing, a power line related assembly being mounted in the first mounting region, the power line related assembly being connected to the first terminal pin through a power line, and a brake line related assembly being mounted in the second region, the brake line related assembly being connected to the second terminal pin through a brake line.
  18. 18. The servo motor of claim 17 wherein the servo motor further comprises a female head, the female head being inserted into the other end of the connector, the female head being fixedly connected to the housing, the female head further comprising a sealing ring, the sealing ring being mounted on a contact surface of the female head and the first boss.
  19. 19. The servo motor of claim 18 wherein the female head further comprises a housing, a rubber core and a ground terminal, the rubber core being disposed in the housing, the ground terminal being mounted in the rubber core, an end of the ground terminal being crimped to a power line, the ground terminal being in planar contact with the housing after the female head is mounted on the housing.

Description

Connector and servo motor The application claims priority to the application patent with the patent name of 'servo motor' with the application date of 2024, 11, 22 and the application number of CN 202411680150.1. Technical Field The utility model relates to the technical field of motors, in particular to a connector and a servo motor. Background The servo motor is not directly connected with mechanical equipment, but is electrically connected with a power line and a brake cable in the servo motor by adopting a connector, and the connector is further connected with the mechanical equipment. In the assembly process, the power line related component is firstly installed, and after the brake line and the connector are connected, the brake line related component is pressed into the shell. The connector in the prior art can lead to the overlong brake cable which is remained in the servo motor after the installation is completed, and the long brake cable is piled up in the shell and is easy to be excessively bent and damaged, so that the working efficiency of the motor is reduced. Therefore, how to optimize the connector design to shorten the brake cable length is a problem that needs to be solved at present. Disclosure of utility model The utility model aims to solve the problem of overlong brake cable in the installation process in the prior art and provides a servo motor. In order to achieve the purpose, the connector is arranged on a shell of a servo motor and comprises a first connecting block and a second connecting block, and the first connecting block and the second connecting block are radially arranged. In a preferred embodiment of the present utility model, the first connector block is provided with a first male terminal, and the first male terminal is connected to a power line. In a preferred embodiment of the present utility model, a second terminal male is mounted on the second connection block, and the second terminal male is connected to the brake cable. In a preferred embodiment of the utility model, the connector further comprises a catch. In a preferred embodiment of the utility model, a plurality of said catches are provided at the outer edge of said connector. In a preferred embodiment of the utility model, a plurality of said catches are provided on a side wall of said connector. In a preferred embodiment of the present utility model, the back of the buckle is designed to be hollowed out to form a hollowed-out opening. In a preferred embodiment of the utility model, the connector further comprises an opening, which is provided on a side wall edge of the connector. The utility model also provides a servo motor, which comprises any connector, wherein the servo motor comprises a shell, the shell comprises a first boss and a mounting groove, the first boss is arranged on the shell, the center of the first boss is provided with the mounting groove, and the connector is mounted in the mounting groove through the buckle. In a preferred embodiment of the present utility model, the servo motor further includes a sealing structure, wherein the sealing structure is formed by curing glue, and the sealing structure is used for fixedly installing the first connection block and the second connection block in the installation groove. In a preferred embodiment of the utility model, the buckle is arranged at the outer edge of the connector, the inner wall of the mounting groove radially extends to form a step structure, the buckle abuts against the step structure, and the connector is embedded and mounted in the step structure through the buckle. In a preferred embodiment of the present utility model, glue flows into the step structure through the end face of the connector, and after curing, the sealing structure is formed, and the sealing structure wraps the end of the connector. In a preferred embodiment of the present utility model, the buckle is disposed on a side wall of the connector, and an inner wall of the mounting groove is recessed to form a groove, and the buckle is snapped into the groove. In a preferred embodiment of the utility model, the connector further comprises an opening, which is provided on a side wall edge of the connector. In a preferred embodiment of the utility model, glue flows into the housing through the end of the connector along the opening, and after curing, the sealing structure is formed, and the sealing structure wraps the end and the periphery of the connector and the inner wall of the housing. In a preferred embodiment of the present utility model, the back of the buckle is designed to be hollowed out to form a hollowed-out opening. In a preferred embodiment of the utility model, the housing comprises a first mounting area and a second mounting area, the first mounting area and the second mounting area are connected along the axial direction of the housing, a power line related component is mounted in the first mounting area and connected with the first terminal male head