IP Library Granted Patent US 8,142,073
Granted Patent B2
US 8,142,073 · App. 12/649,969 · Granted Mar 27, 2012

Snap-fit sensor assembly

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Quick Facts
Patent No.
US 8,142,073
App. No.
12/649,969
Granted
Mar 27, 2012
Kind
B2
Abstract

A two-piece sensor assembly is disclosed comprising a sensor body insert having a thermoplastic sensor body molding that can be snap-fit into a thermoplastic sensor housing a spherical-type snap-fit eliminating leak paths or openings that may damage the sensor body.

Claims (23)

1. A sensor assembly comprising:

a sensor body comprising a sensing device connected to a sensor terminal;

a sensor body insert comprising said sensor body and a sensor body molding made of a first thermoplastic material that covers at least a portion of said sensor body, wherein said sensor body molding comprises a sensor body cover that contacts and covers said at least a portion of said sensor body, and an arcuate ring of greater diameter than, and extending around and radially outward of, at least a portion of said sensor body cover forming an open space radially separating said arcuate ring from said sensor body cover; and

a sensor housing made of a second thermoplastic material comprising a sensor housing cavity for receiving said sensor body insert, wherein said sensor housing cavity comprises an arcuate inner surface circumscribing said sensor housing cavity shaped to receive said arcuate ring of said sensor body molding, and a ridge circumscribing said sensor housing cavity proximate to said arcuate inner surface,

wherein during assembly of said sensor assembly, said sensor body insert is pushed axially into said sensor housing cavity causing said ridge to apply a radial force on said arcuate ring, bending said arcuate ring toward said sensor body cover and allowing said arcuate ring to pass said ridge and be seated in said arcuate inner surface forming a spherical-type snap-fit.

2. The sensor assembly of claim 1 , wherein said arcuate ring of said sensor body molding further comprises a plurality of slots that form a plurality of arms in said arcuate ring to increase the flexibility of said arcuate ring.

3. The sensor assembly of claim 1 , wherein said sensor housing cavity further comprises a step located after said arcuate inner surface to control the distance that said sensor body insert is inserted into said sensor housing cavity.

4. The sensor assembly of claim 1 , wherein said first thermoplastic material is polyamide 6/6.

5. The sensor assembly of claim 1 , wherein said second thermoplastic material is polybutylene terephthalate with glass fiber reinforcement.

6. The sensor assembly of claim 1 , wherein said sensor body molding is more flexible than said sensor housing.

7. The sensor assembly of claim 1 , wherein said sensor body molding is less flexible than said sensor housing.

8. The sensor assembly of claim 1 , wherein said sensor assembly is a temperature sensor.

9. The sensor assembly of claim 1 , wherein said sensing device is a ceramic NTC thermistor.

10. A sensor assembly comprising:

a sensor body comprising a sensing device connected to a sensor terminal;

a sensor body insert comprising said sensor body and a sensor body molding made of a first thermoplastic material that covers at least a portion of said sensor body, wherein said sensor body molding comprises a sensor body cover that contacts and covers said at least a portion of said sensor body, and an arcuate ring of greater diameter than, and extending around and radially outward of, at least a portion of said sensor body cover forming an open space radially separating said arcuate ring from said sensor body cover, wherein said arcuate ring further comprises a plurality of slots that form a plurality of arms in said arcuate ring to increase the flexibility of said arcuate ring; and

a sensor housing made of a second thermoplastic material comprising a sensor housing cavity for receiving said sensor body insert, wherein said sensor housing cavity comprises an arcuate inner surface circumscribing said sensor housing cavity shaped to receive said arcuate ring of said sensor body molding, and a ridge circumscribing said sensor housing cavity proximate to said arcuate inner surface,

wherein during assembly of said sensor assembly, said sensor body insert is pushed axially into said sensor housing cavity causing said ridge to apply a radial force on said plurality of arms of said arcuate ring, bending said arcuate ring toward said sensor body cover and allowing said arcuate ring to pass said ridge and be seated in said arcuate inner surface forming a spherical-type snap-fit.

11. The sensor assembly of claim 10 , wherein said sensor housing cavity further comprises a step located after said arcuate inner surface to control the distance that said sensor body insert is inserted into said sensor housing.

12. The sensor assembly of claim 10 , wherein said first thermoplastic material is polyamide 6/6.

13. The sensor assembly of claim 10 , wherein said second thermoplastic material is polybutylene terephthalate with glass fiber reinforcement.

14. The sensor assembly of claim 10 , wherein said sensor body molding is more flexible than said sensor housing.

15. The sensor assembly of claim 10 , wherein said sensor body molding is less flexible than said sensor housing.

Assignments (4)
CHANGE OF NAME Recorded Apr 25, 2014
From: GE THERMOMETRICS, INC.
To: AMPHENOL THERMOMETRICS, INC.
Reel/Frame 032763/0141 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 24, 2014
From: AMPHENOL CORPORATION
To: GE THERMOMETRICS, INC.
Reel/Frame 032745/0924 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 15, 2014
From: GENERAL ELECTRIC COMPANY
To: AMPHENOL CORPORATION
Reel/Frame 032679/0265 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 30, 2009
From: CLARK, JOHN THOMAS
To: GENERAL ELECTRIC COMPANY
Reel/Frame 023718/0945 →