IP Library Granted Patent US 7,307,494
Granted Patent B2
US 7,307,494 · App. 11/090,709 · Granted Dec 11, 2007

Multi-branch antenna signal separating device

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Quick Facts
Patent No.
US 7,307,494
App. No.
11/090,709
Granted
Dec 11, 2007
Kind
B2
Abstract

One aspect of the invention provides a signal separating device comprising a first and a second circuit branch connected to an antenna port, the first circuit branch comprising a filter for passing signals in a first frequency band, and the second circuit branch comprising a filter for passing signals in a second frequency band. The first and second circuit branches being arranged so that a respective reactive impedance is presented to the antenna port in both said first and said second frequency bands. The device further comprises an impedance matching circuit at the antenna port arranged to substantially to cancel out the respective reactive impedances. In the preferred embodiment, each circuit branch presents a respective shunt capacitance to the antenna port when out-of-band and the matching circuit comprises a shunt inductor at the antenna port.

Claims (26)

1. A signal separating device comprising:

a first and a second circuit branch connected to an antenna port, the first circuit branch comprising a filter for passing signals in a first frequency band, and the second circuit branch comprising a filter for passing signals in a second frequency band,

wherein, in the second frequency band, the first circuit branch provides a first capacitive impedance between the antenna port and electrical ground, and

in the first frequency band, the second circuit branch provides a second capacitive impedance between the antenna port and electrical ground, and

wherein the device further comprises an impedance matching circuit provided at the antenna port and provides, in the second frequency band, a first inductive impedance between the antenna port and ground which substantially cancels out the first capacitive impedance, and provides, in the first frequency band, a second inductive impedance between the antenna port and ground which substantially cancels out the second capacitive impedance.

2. A signal separating device as claimed in claim 1 , wherein said impedance matching circuit comprises an inductor connected between the antenna port and electrical ground.

3. A signal separating device as claimed in claim 2 , wherein, when signals are received at the antenna port in said first frequency band, said inductor and the second capacitive impedance resonate together, and, when signals are received at the antenna port in said second frequency band, said inductor and the first capacitive impedance resonate together.

4. A signal separating device as claimed in claim 3 , wherein the ratio of the second capacitive impedance to the first capacitive impedance is substantially equal to a square of a ratio of said first frequency band to said second frequency band.

5. A signal separating device as claimed in claim 1 wherein said first and second circuit branches are provided between said antenna port and a second and third port respectively, and wherein a respective series capacitor is provided at each of said second and third ports.

6. A signal separating device as claimed in claim 1 , wherein at least one circuit branch includes a series capacitor at the antenna port.

7. An antenna switch module comprising:

a first transmit/receive (TX/RX) circuitry operable in a first frequency band;

a second TX/RX circuitry operable in a second frequency band;

a diplexer circuit having an antenna port connected to an antenna, a second port connected to the first TX/RX circuitry, and a third port connected to the second TX/RX circuitry, wherein the diplexer couples the first and the second TX/RX circuitry to the antenna, the diplexer circuit comprising:

a signal separating device comprising:

a first circuit branch connected between the antenna part and the first transmit/receive TX/RX circuitry;

a second circuit branch connected between the antenna port and the first transmit/receive TX/RX circuitry; and

an impedance matching circuit provided at the antenna port;

the first circuit branch comprising a first filter for passing signals in the first frequency band;

the second circuit branch comprising a second filter for passing signals in the second frequency band,

wherein, in the second frequency band, the first circuit branch provides a first capacitive impedance between the antenna port and electrical ground, and

wherein, in the first frequency band, the second circuit branch provides a second capacitive impedance between the antenna port and electrical ground, and

wherein the impedance matching circuit provides, in the second frequency band, a first inductive impedance between the antenna port and electrical ground and substantially cancels out the first capacitive impedance, and

wherein the impedance matching circuit provides, in the first frequency band, a second inductive impedance between the antenna port and ground to substantially cancels out the second capacitive impedance.

8. The antenna switch module of claim 7 , wherein a respective series capacitor is provided at each of said second and third ports.

9. The antenna switch module of claim 7 , wherein at least one of the first TX/RX circuitry and the second TX/RX circuitry includes a series capacitor at the antenna port.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2017
From: TDK CORPORATION
To: SNAPTRACK, INC.
Reel/Frame 041650/0932 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 8, 2005
From: ERB, JEAN-LUC
To: TDK CORPORATION
Reel/Frame 016314/0207 →