IP Library Granted Patent US 6,982,400
Granted Patent B1
US 6,982,400 · App. 10/980,532 · Granted Jan 3, 2006

Electrical heater apparatus

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Quick Facts
Patent No.
US 6,982,400
App. No.
10/980,532
Granted
Jan 3, 2006
Kind
B1
Abstract

A self retaining crankcase heater ( 10 ) has a tubular casing ( 12 ) of relatively flexible, thermally conductive material in which is received a PTC element ( 16 ), sandwiched by semi-cylindrical terminal blocks ( 14 ). Spring contacts ( 18 a ) are received in grooves ( 14 c ) of the terminal blocks and the assembly is potted with heat conductive material ( 20 ) and sealed with sealant ( 22 ). Locking projections ( 12 d ) are formed at open end ( 12 c ) of the casing which are lockingly received in an annular recess ( 24 a ; 26 d ) of a well ( 24; 26 ) in a compressor housing wall.

Claims (21)

1. A heater device for use in a well formed in a housing, the well having an open end and a generally cylindrical side wall portion and a recess portion intermediate to the open end and the cylindrical side wall portion, the heater device comprising a generally cylindrical, tubular casing of thermally conductive, relatively flexible material having a side wall defining a chamber and having a first open end and a second closed end,

at least two locking projections extending radially outwardly from the side wall of the casing at the first open end for receipt in the recess portion of the well, the casing having a longitudinal axis and at least two locking projections extending beyond the open end of the side wall in the longitudinal direction, each locking projection having a lower surface facing toward the closed end of the casing, the lower surface being inclined upwardly and outwardly from the casing sidewall,

a heating assembly received in the chamber including:

an electrical resistance heater element having spaced apart first and second electrically conductive terminals,

first and second heat conductive members sandwiching the heater element, the outer peripheral surface of the heat conductive members when sandwiching the heater element having an outer peripheral curved surface complimentary to the inside surface of the casing side wall and closely received in the chamber, wire leads electrically connected to the respective first and second terminals of the heater element and extending out of the open end of the casing, whereby the heater device upon being inserted into the well with the at least two locking projections received in the recess portion of the well is retained in the well by the locking projection.

2. A heater device according to claim 1 in which the casing is formed with two diametrically opposed locking projections.

3. A heater device according to claim 2 in which the locking projections have a lower surface facing toward the closed end of the casing, the lower surface being inclined upwardly and outwardly from the casing side wall.

4. A heater according to claim 3 in which the locking projections have an upper surface facing away from the closed end of the casing, the upper surface being generally flat and extending generally in a radial direction.

5. A heater device according to claim 1 in which the heater element is a positive temperature coefficient of resistivity element.

6. A heater device according to claim 1 in which the terminals of the heater element comprise electrically conductive layers and a groove is formed in each heat conductive member in a surface facing an electrically conductive layer on the heater element when sandwiching the heater element and a spring contact is attached to each wire lead, the spring contacts being disposed in respective grooves in engagement with a respective electrically conductive layer of the heater element.

7. A heater device according to claim 6 further comprising thermally conductive potting material received between the heater element, spring contacts and the heat conductive members.

8. A heater device according to claim 7 further comprising moisture resistant polymeric sealant material in the open end of the casing between the thermally conductive material and the open end of the casing side wall.

9. A heater device according to claim 1 in which the first and second heat conductive members are generally semi-cylindrical.

10. A heater device according to claim 9 in which the casing has a longitudinal axis and the side wall of the casing is formed with a pair of opposed longitudinally extending ribs forming separate seating areas and the heat conductive members are received in the respective seating areas separated from each other by the ribs.

11. A heater device according to claim 1 in which the lower surface is curved.

12. A heater device according to claim 1 in which the at least two locking projections have an upper surface facing away from the closed end of the casing, the upper surface being generally flat and extending generally in a radially direction.

13. A heater device according to claim 1 in which the casing is formed of a thermally conductive silicone polymer.

14. A heater device for use in a well formed in a housing, the well having an open end and a generally cylindrical side wall portion and a recess portion intermediate to the open end and the cylindrical side wall portion,

the heater device comprising a generally cylindrical, tubular casing of thermally conductive, relatively flexible material having a side wall defining a chamber and having a first open end and a second closed end,

two diametrically opposed locking projections extending radially outwardly from the side wall of the casing at the first open end for receipt in the recess portion of the well, the locking projections each having a lower surface facing toward the closed end of the casing, the lower surface being inclined upwardly and outwardly from the casing sidewall and an upper surface facing away from the closed end of the casing, the upper surface being generally flat and extending generally in a radial direction, and

a heater assembly received in the chamber of the casing.

Assignments (6)
RELEASE OF SECURITY INTEREST Recorded May 17, 2011
From: MORGAN STANLEY & CO. INCORPORATED
To: SENSATA TECHNOLOGIES FINANCE COMPANY, LLC; SENSATA TECHNOLOGIES, INC.; SENSATA TECHNOLOGIES MASSACHUSETTS, INC.
Reel/Frame 026293/0352 →
SECURITY AGREEMENT Recorded Aug 28, 2008
From: SENSATA TECHNOLOGIES MASSACHUSETTS, INC.
To: MORGAN STANLEY & CO. INCORPORATED
Reel/Frame 021450/0563 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 29, 2008
From: SENSATA TECHNOLOGIES, INC.
To: SENSATA TECHNOLOGIES MASSACHUSETTS, INC.
Reel/Frame 021018/0690 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 22, 2006
From: TEXAS INSTRUMENTS INCORPORATED
To: SENSATA TECHNOLOGIES, INC.
Reel/Frame 017870/0147 →
SECURITY AGREEMENT Recorded May 5, 2006
From: SENSATA TECHNOLOGIES, INC.; SENSATA TECHNOLOGIES FINANCE COMPANY, LLC
To: MORGAN STANLEY & CO. INCORPORATED
Reel/Frame 017575/0533 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 3, 2004
From: NGUON, BUNRATTHANNA
To: TEXAS INSTRUMENTS INCORPORATED
Reel/Frame 015961/0454 →