IP Library Granted Patent US 12,482,986
Granted Patent B2
US 12,482,986 · App. 18/172,233 · Granted Nov 25, 2025

Integrally molded power connector housing having an insert held by a breakable bridge

Inventors: John M. Myer (Middletown, PA); Daniel W. Fry, Jr. (Middletown, PA); Hurley Chester Moll (Hershey, PA); Joel H. Barnett (Winston Salem, NC)
Assignee: TE Connectivity Solutions GmbH
H01R13/62938H01H9/20
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Quick Facts
Patent No.
US 12,482,986
App. No.
18/172,233
Granted
Nov 25, 2025
Kind
B2
Abstract

A power connector includes a housing including a terminal carrier and an insert matable to the terminal carrier. The terminal carrier includes terminal channels holding power terminals. The terminal carrier includes a pocket aligned with carrier openings. The insert is coupled to the terminal carrier at the pocket and configured to be received in the pocket. The insert includes insert openings therethrough configured to be aligned with the carrier openings when the insert is received in the pocket. The terminal carrier and the insert are molded as a single piece with a bridge connecting the terminal carrier and the insert. The bridge is breakable prior to or during assembly to allow loading of the insert into the pocket and coupling of the insert to the terminal carrier.

Claims (31)

1 . A power connector comprising:

a housing including a terminal carrier and an insert matable to the terminal carrier to define the housing;

the terminal carrier including terminal channels holding power terminals, the terminal carrier including carrier openings extending therethrough, the terminal carrier including a pocket, the pocket being aligned with the carrier openings;

the insert coupled to the terminal carrier at the pocket, the insert configured to be received in the pocket, the insert including insert openings therethrough configured to be aligned with the carrier openings when the insert is received in the pocket, wherein the terminal carrier and the insert are molded as a single piece with a bridge connecting the terminal carrier and the insert, the bridge configured to be breakable prior to or during assembly to allow loading of the insert into the pocket and coupling of the insert to the terminal carrier.

2 . The power connector of claim 1 , wherein the insert is loaded into the pocket in a loading direction, the loading direction being generally perpendicular to a mating direction for mating the power connector with a header connector.

3 . The power connector of claim 1 , wherein the bridge comprises flashing molded between the terminal carrier in the insert.

4 . The power connector of claim 1 , wherein the bridge is located at the pocket.

5 . The power connector of claim 1 , wherein the terminal carrier and the insert are molded with the insert being aligned for mating with the terminal carrier whereby the terminal carrier is configured to be pressed straight into the insert in a loading direction, the bridge being broken during loading of the terminal carrier into the insert.

6 . The power connector of claim 1 , wherein the carrier openings include high voltage interlock (HVIL) contact channels configured to receive HVIL contacts, the insert openings including HVIL contact channels configured to receive the HVIL contacts, the HVIL contact channels of the insert being aligned with the HVIL contact channels of the terminal carrier when the insert is loaded into the pocket.

7 . The power connector of claim 1 , wherein the terminal carrier includes a guide feature, the insert includes a guide feature aligned with, and engaging, the guide feature of the terminal carrier to guide mating of the insert and the terminal carrier, the bridge extending between the guide feature of the insert and the guide feature of the terminal carrier.

8 . The power connector of claim 1 , wherein the carrier openings have a first length, the insert openings having a second length approximately equal to the first length.

9 . The power connector of claim 1 , wherein the insert includes a securing latch, the power connector further comprising an outer shell having a shell cavity, the housing being received in the shell cavity, the outer shell surrounding the housing, the securing latch coupled to the outer shell to secure the housing in the shell cavity.

10 . The power connector of claim 1 , wherein the terminal channels include a first terminal channel and a second terminal channel, the pocket being positioned between the first terminal channel and the second terminal channel.

11 . The power connector of claim 1 , wherein the carrier openings include high voltage interlock (HVIL) contact channels configured to receive HVIL contacts, the insert openings including HVIL contact channels configured to receive the HVIL contacts, the HVIL contact channels of the insert being aligned with the HVIL contact channels of the terminal carrier when the insert is loaded into the pocket.

12 . The power connector of claim 1 , wherein the carrier openings include contact channels configured to receive electrical contacts, the insert openings including contact channels configured to receive the electrical contacts.

13 . The power connector of claim 12 , wherein the terminal carrier includes contact latches extending into the contact channels to latchably couple to the electrical contacts to retain the electrical contacts in the contact channels.

14 . The power connector of claim 1 , wherein the terminal carrier includes a front, a rear, a top, a bottom, a first side, and a second side, and wherein the insert includes a front, a rear, a top, a bottom, a first side, and a second side, the bridge extending between the top of the terminal carrier and the bottom of the insert.

15 . The power connector of claim 14 , wherein the bridge includes a first bridge member along the first side at the bottom of the insert and a second bridge member along the second side at the bottom of the insert.

16 . A power connector comprising:

a housing including a terminal carrier and an insert matable to the terminal carrier to define the housing;

the terminal carrier having a front, a rear, a top, a bottom, and opposite sides, the terminal carrier having terminal channels extending between the front and the rear, the terminal channels being configured to receive corresponding power terminals therein, the terminal carrier including a pocket, the pocket being open at the top, the terminal carrier including carrier openings extending therethrough, the pocket being aligned with the carrier openings;

the insert having a front, a rear, a top, a bottom, and opposite sides, the insert configured to be received in the pocket, the insert including insert openings therethrough configured to be aligned with the carrier openings when the insert is received in the pocket, wherein the terminal carrier and the insert are molded as a single piece with a bridge formed between the top of the terminal carrier and the bottom of the insert connecting the terminal carrier and the insert, the bridge configured to be breakable prior to or during assembly to allow loading of the insert into the pocket and coupling of the insert to the terminal carrier.

17 . The power connector of claim 16 , wherein the terminal carrier and the insert are molded with the insert being aligned for mating with the terminal carrier whereby the terminal carrier is configured to be pressed straight into the insert in a loading direction, the bridge being broken during loading of the terminal carrier into the insert.

18 . The power connector of claim 16 , wherein the bridge includes a first bridge member along the first side of the insert at the bottom of the insert and a second bridge member along the second side of the insert at the bottom of the insert.

19 . The power connector of claim 16 , wherein the carrier openings have a first length, the insert openings having a second length approximately equal to the first length.

20 . A power connector comprising:

a housing including a terminal carrier and an insert matable to the terminal carrier to define the housing;

the terminal carrier including terminal channels at a mating end of the terminal carrier configured to be mated to a header connector, the terminal carrier including high voltage interlock (HVIL) contact channels, the terminal carrier including a pocket aligned with the HVIL contact channels;

the insert coupled to the terminal carrier at the pocket, the insert configured to be received in the pocket, the insert including HVIL contact channels, wherein the terminal carrier and the insert are molded as a single piece with a bridge connecting the terminal carrier and the insert, the bridge configured to be breakable prior to or during assembly to allow loading of the insert into the pocket to a loaded position, the HVIL contact channels of the insert being aligned with the HVIL contact channels of the terminal carrier in the loaded position;

power terminals received in the terminal channels of the terminal carrier, the power terminals configured to be coupled to header power terminals of the header connector to form a power circuit; and

HVIL contacts received in the HVIL contact channels of the terminal carrier and the insert, the HVIL contacts configured to be mated with header HVIL contacts of the header connector to form a HVIL circuit, the HVIL circuit controlling the power circuit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 15, 2024
From: MYER, JOHN M.; FRY, DANIEL W., JR.; MOLL, HURLEY CHESTER; BARNETT, JOEL H.
To: TE CONNECTIVITY SOLUTIONS GMBH
Reel/Frame 066472/0450 →
Continuity (1)
Related Publication 20240283196A1 · Aug 22, 2024
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