IP Library Patent Application 11460003
Patent Application
App. No. 11/460,003

CONNECTOR ADAPTOR AND METHOD

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Quick Facts
Patent No.
US None
App. No.
11/460,003
Abstract

A connector adaptor ( 205 ) and method may include a terminal block ( 210 ) and a power conductor ( 215 ). The power conductor includes in-line, hyperboloid radial sockets ( 220 ) to be applied to pins 235 mounted in an array on a power distribution unit ( 106 ), and two-hole terminal connectors 225, where the two-hole terminal connectors are each coupled to a pair of threaded studs ( 230 ) extending from the terminal block, and where the connector adaptor is adapted to conduct power to an embedded computer chassis.

Claims (32)

1 . A connector adaptor, comprising:

a terminal block;

a power conductor, comprising:

an in-line, hyperboloid radial socket joined at one end of the power conductor; and

a two-hole terminal connector joined a the other end of the power conductor, wherein the two-hole terminal connector is adapted to be coupled to the terminal block, and wherein the connector adaptor is adapted to conduct high amperage power to an embedded computer chassis.

2 . The connector adaptor of claim 1 , wherein the terminal block is adapted to be coupled to an embedded computer frame.

3 . The connector adaptor of claim 1 , wherein the in-line, hyperboloid radial socket is adapted to be coupled to a power distribution unit.

4 . The connector adaptor of claim 3 , wherein the in-line, hyperboloid radial socket is adapted to interface with a power ingress pin on the power distribution unit.

5 . The connector adaptor of claim 3 , wherein the power distribution unit is adapted to distribute the high amperage power to the embedded computer chassis.

6 . The connector adaptor of claim 1 , wherein the terminal block is adapted to interface with a power source.

7 . A method of supplying power to an embedded computer chassis, comprising:

providing a terminal block;

providing a power conductor, further comprising:

providing an in-line, hyperboloid radial socket joined at one end of the power conductor; and

providing a two-hole terminal connector joined at the other end of the power conductor, wherein the two-hole terminal connector is adapted to be coupled to the terminal block, and wherein the terminal block and the power conductor are adapted to conduct high amperage power to the embedded computer chassis.

8 . The method of claim 7 , further comprising coupling the terminal block to an embedded computer frame.

9 . The method of claim 7 , further comprising coupling the in-line, hyperboloid radial socket to a power distribution unit.

10 . The method of claim 9 , further comprising adapting the in-line, hyperboloid radial socket to interface with a power ingress pin on the power distribution unit.

11 . The method of claim 9 , further comprising adapting the power distribution unit to distribute the high amperage power to the embedded computer chassis.

12 . The method of claim 7 , further comprising adapting the terminal block to interface with a power source.

13 . The method of claim 12 , further comprising the power source supplying power to the embedded computer chassis via the terminal block and the power conductor.

14 . An embedded computer system, comprising:

a terminal block;

a power conductor, comprising:

an in-line, hyperboloid radial socket joined at one end of the power conductor; and

a two-hole terminal connector joined at the other end of the power conductor, wherein the two-hole terminal connector is adapted to be coupled to the terminal block, and wherein the terminal block and the power conductor are adapted to conduct high amperage power to an embedded computer chassis.

15 . The embedded computer system of claim 14 , wherein the terminal block is adapted to be coupled to an embedded computer frame.

16 . The embedded computer system of claim 14 , wherein the in-line, hyperboloid radial socket is adapted to be coupled to a power distribution unit.

17 . The embedded computer system of claim 16 , wherein the in-line, hyperboloid radial socket is adapted to interface with a power ingress pin on the power distribution unit.

18 . The embedded computer system of claim 16 , wherein the power distribution unit is adapted to distribute the high amperage power to the embedded computer chassis.

19 . The embedded computer system of claim 14 , wherein the terminal block is adapted to interface with a power source.

20 . The embedded computer system of claim 19 , wherein the power source is adapted to supply the high amperage power to the embedded computer chassis via the terminal block and the power conductor.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 22, 2008
From: MOTOROLA, INC.
To: EMERSON NETWORK POWER - EMBEDDED COMPUTING, INC.
Reel/Frame 020540/0714 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 26, 2006
From: NAUFEL, NAUFEL C.
To: MOTOROLA, INC.
Reel/Frame 018000/0919 →