IP Library Granted Patent US 9,583,816
Granted Patent B2
US 9,583,816 · App. 14/493,328 · Granted Feb 28, 2017

Wireless transceiver

Inventors: Yung-Cheng Lin (Hsinchu, TW); Chien-Ming Peng (Hsinchu, TW)
Assignee: Wistron NeWeb Corporation
H01Q1/24H04B1/3888H04M1/23H04W4/20H04W4/22H04M1/72541
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Quick Facts
Patent No.
US 9,583,816
App. No.
14/493,328
Granted
Feb 28, 2017
Kind
B2
Abstract

A wireless transceiver includes at least one antenna, a substrate, and a mechanical part on which the at least one antenna is disposed, wherein a relative position between the at least one antenna and the substrate is changed when an external force is applied to the mechanical part.

Claims (21)

1. A wireless transceiver, comprising:

at least one antenna;

a substrate; and

a mechanical part on which the at least one antenna is disposed, wherein a relative position between the at least one antenna and the substrate is changed when an external force is applied to the mechanical part;

a housing for covering the wireless transceiver;

wherein the housing is made of flexible materials to be flexible, and when the external force is applied to the housing, the housing is deformed to apply the external force to the mechanical part via the housing.

2. The wireless transceiver of claim 1 , wherein the mechanical part is a flexible mechanical part.

3. The wireless transceiver of claim 2 , further comprising a supporting part for supporting the flexible mechanical part.

4. The wireless transceiver of claim 3 , wherein the supporting part is disposed on the substrate.

5. The wireless transceiver of claim 4 , wherein the flexible mechanical part presents a downwardly-disposed dish to cover the supporting part when the external force applied to the flexible mechanical part disappears; and the flexible mechanical part suffers the external force and a counterforce provided by the supporting part when the external force is applied to the flexible mechanical part, such that the flexible mechanical part presents an upwardly-disposed dish.

6. The wireless transceiver of claim 3 , wherein a hole is formed in the substrate, and the wireless transceiver further comprises a push rod disposed in the hole, wherein when the external force is applied to the push rod, the push rod moves in the hole along a direction of the external force, such that the push rod applies the external force to the flexible mechanical part.

7. The wireless transceiver of claim 6 , wherein when the external force applied to the push rod disappears, the flexible mechanical part presents a flat plane and covers the supporting part; when the external force is applied to the push rod, and the push rod then applies the external force to the flexible mechanical part, the flexible mechanical part suffers the external force and a counterforce provided by the supporting part, such that the flexible mechanical part deforms from the flat plane to an upwardly-disposed dish.

8. The wireless transceiver of claim 1 , wherein the mechanical part is linkage mechanical part, and the linkage mechanical part comprises:

a plurality of first links;

a plurality of second links, wherein each of the at least one antenna is respectively disposed on the plurality of second links;

a first pivot for pivoting the plurality of first links; and

a plurality of second pivots, each one of the plurality of second pivots is used for pivoting one of the plurality of first links with one of the plurality of second links.

9. The wireless transceiver of claim 8 , wherein a hole is formed in the substrate, and the wireless transceiver further comprises a push rod disposed in the hole and coupled to the first pivot, wherein when the external force is applied to the push rod, the push rod moves in the hole along a direction of the external force, such that the push rod applies the external force to the plurality of first links of the linkage mechanical part.

10. The wireless transceiver of claim 9 , wherein when the push rod applies the external force to the linkage mechanical part, the flexible mechanical part suffers an interaction between the external force and the first and second pivots, causing the first and second pivots to rotate and move, and the direction of the external force is changed from a first direction to a second direction, and the second link is pushed by the first link and moved along the second direction.

11. The wireless transceiver of claim 1 , further comprising a button device disposed on the substrate for generating a trigger signal to a wireless processing module when the external force is applied to the mechanical part to touch the button device, which triggers the wireless processing module to generate the wireless signal to the at least one antenna according to the trigger signal.

12. The wireless transceiver of claim 1 , wherein the mechanical part is a part of the housing.

Assignments (2)
CHANGE OF NAME Recorded Jul 29, 2025
From: WISTRON NEWEB CORPORATION
To: WNC CORPORATION
Reel/Frame 072255/0226 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 22, 2014
From: LIN, YUNG-CHENG; PENG, CHIEN-MING
To: WISTRON NEWEB CORPORATION
Reel/Frame 033792/0710 →
Priority Claims (1)
TW 103120174 A · Jun 11, 2014 · national
Continuity (1)
Related Publication 20150364811A1 · Dec 17, 2015