IP Library Granted Patent US 8,862,089
Granted Patent B2
US 8,862,089 · App. 13/655,264 · Granted Oct 14, 2014

Circuit for a front-end tunable filter of a communication and broadcast receiver and a tuning method thereof

Inventors: Han Wang (Beijing, CN); Yi Yang (Beijing, CN); Zhen Li (Beijing, CN); Pei Yang (Beijing, CN); Dianyu Chen (Beijing, CN); Haiqing Lin (Ladera Ranch, CA); Yihai Xiang (Rancho Santa Margarita, CA); Zhongzhi Liu (Beijing, CN)
Assignee: Beijing KT Micro, Ltd.
H04B1/18H03H7/0153H03H7/17H03H2210/04
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Quick Facts
Patent No.
US 8,862,089
App. No.
13/655,264
Granted
Oct 14, 2014
Kind
B2
Abstract

A circuit for a front-end tunable filter of a communication and broadcast receiver and a tuning method thereof are described herein. In one aspect, the circuit of the tunable filter may be independent of the signal reception link of the receiver. The pre-filter ( 104 ) includes a variable capacitance ( 146 ) which is adjusted by a tuning signal ( 160 ). A negative resistance element ( 144 ) and the pre-filter ( 104 ) may form an oscillator. The negative resistance element ( 144 ) is controlled by an amplitude control signal ( 162 ) outputted from an oscillation amplitude control circuit ( 142 ). The oscillation amplitude control circuit ( 142 ) stabilizes the amplitude of a radio frequency signal ( 130 ) in a preset range. An oscillation frequency control circuit ( 140 ) stabilizes the frequency of the signal ( 130 ) in a preset frequency range by a tuning signal ( 160 ). The tuning is completed until both of the amplitude and the frequency of the oscillation signal meet the preset ranges.

Claims (19)

1. A circuit for a front-end tunable filter of a communication and broadcast receiver, comprising:

a pre-filter comprising a tunable element;

a tuning calibration circuit comprising an oscillation frequency control circuit, an negative resistance element , and a tuning control switch configured to connect said pre-filter with said negative resistance element;

wherein in process of tuning said pre-filter, said receiver sets a tuning frequency, said tuning calibration circuit turns on said tuning control switch, said pre-filter and said negative resistance element form an oscillator; said oscillation frequency control circuit outputs a control signal to said tunable element according to the frequency of an oscillation signal detected and the tuning frequency to keep the frequency of the said oscillation signal in a pre-determined range.

2. The circuit according to claim 1 , wherein the tunable element is a capacitor, or an inductor, or a diode, or a resistor, or a micro-electromechanical system (MEMS), or any combination of the capacitor, the inductor, the diode, the resistor, and the MEMS.

3. The circuit according to claim 1 , wherein in the normal operation of the receiver, said tuning calibration circuit turns off said turning control switch, said pre-filter and the negative resistance element is disconnected to filter the received radio signal.

4. The circuit according to claim 1 , wherein the tuning calibration circuit further comprises an oscillation amplitude control circuit, in process of tuning said pre-filter, said oscillation amplitude control circuit outputs a control signal to said negative resistance element according to the amplitude of the oscillation signal detected to keep the amplitude of said oscillation signal within a pre-determined range.

5. The circuit according to claim 1 , wherein the oscillation frequency control circuit keeps the control signal for the tunable element constant in the normal operation of the receiver.

6. The circuit according to claim 1 , wherein the tuning calibration circuit is independent of the signal reception link of the receiver.

7. The circuit according to claim 1 , wherein the receiver is zero-IF, low-IF, high-IF, or multi-IF circuit topology.

8. The circuit according to claim 1 , wherein the tuning calibration circuit is implemented by discrete electronic components, or implemented by an integrated circuit, or implemented by the combination of discrete electronic components and an integrated circuit.

9. A tuning method by the circuit according to claim 1 , comprising:

setting a tuning frequency by said receiver;

turning on said tuning calibration circuit for operation by said receiver;

connecting said pre-filter with said negative resistance element to start controlled oscillation;

detecting the frequency of an oscillation signal , outputting a control signal to said tunable element according to the frequency of the oscillation signal detected and the tuning frequency to keep the frequency of said oscillation signal in a pre-determined range by said oscillation frequency control circuit;

disconnecting said pre-filter from said negative resistance element after tuning is complete.

10. The tuning method according to claim 9 , wherein after turning on said tuning calibration circuit for operation by said receiver and before tuning is complete, further comprising:

detecting the amplitude of said oscillation signal, outputting a control signal to said negative resistance element according to the amplitude of the oscillation signal detected to keep the amplitude of said oscillation signal with a pre-determined range by an oscillation amplitude control circuit.

Assignments (2)
CHANGE OF NAME Recorded Mar 9, 2023
From: BEIJING KT MICRO, INC.
To: KT MICRO, INC.
Reel/Frame 063025/0271 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 31, 2013
From: WANG, HAN; YANG, YI; LI, ZHEN; YANG, PEI; CHEN, DIANYU; LIN, HAIQING; XIANG, YIHAI; LIU, ZHONGZHI
To: BEIJING KT MICRO, LTD.
Reel/Frame 030985/0978 →
Priority Claims (1)
CN 2010 1 0151252 · Apr 21, 2010 · national
Continuity (2)
Continuation PCTCN2011072655 · Apr 12, 2011
Related Publication 20130040595A1 · Feb 14, 2013