IP Library Granted Patent US 10,965,273
Granted Patent B2
US 10,965,273 · App. 16/312,257 · Granted Mar 30, 2021

Wideband piezoelectric filter with ladder-structure

Inventors: Wei Pang (Tianjin, CN); Yunzhuo Zheng (Tianjin, CN)
Assignee: ROFS Microsystem (Tianjin) Co., Ltd
H03H9/542H03H9/171H03H9/205H03H9/605H03H9/64
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Quick Facts
Patent No.
US 10,965,273
App. No.
16/312,257
Granted
Mar 30, 2021
Kind
B2
Abstract

A wideband piezoelectric filter with a ladder-type is provided, which is composed of a plurality of first resonators connected in series, a plurality of second resonators connected in parallel, an impedance matching device disposed near the input terminal or the output terminal of the filter, and at least one special parallel ground path led out from serial nodes. The special parallel ground path at least comprises one inductor having a larger inductance value, and a resonator having the same resonant frequency as a serial branch or a capacitor, wherein the larger inductor is connected to the resonator or capacitor in series in the parallel path. The ladder filter according to the invention can have a bandwidth which is more than twice that of the conventional ladder filter, and also has excellent out-of-band rejection characteristics.

Claims (23)

1. A filter, comprising:

a plurality of first resonators connected in series;

a plurality of second resonators, each of which is connected between ground and one end of one of the plurality of first resonators; and

a bandwidth adjusting unit connected between the ground and a node between any two of the plurality of first resonators,

wherein a parallel resonant frequency of the plurality of second resonators is lower than a series resonant frequency of the plurality of first resonators, and

the bandwidth adjusting unit comprises a third resonator and a first inductor, wherein the third resonator is connected in series with the first inductor, and the third resonator has a different resonant frequency from the parallel resonant frequency of the plurality of second resonators.

2. The filter according to claim 1 , wherein one of the plurality of first resonators is connected to an external signal port via a second inductor, and each of the plurality of second resonators is connected to the ground via a third inductor.

3. The filter according to claim 2 , wherein the second inductor and the third inductor comprise a bonding wire for connecting a chip to a package carrier, or a metal conductor for flip-chip bonding the chip onto the package carrier.

4. The filter according to claim 3 , wherein inductance values of the second inductor and the third inductor are both in a range from 0.1 nH to 2 nH.

5. The filter according to claim 1 , further comprising an impedance matching device connected between the ground and an input port or an output port of the filter.

6. The filter according to claim 5 , wherein the impedance matching device is a passive device comprising an inductor, a capacitor, or a transmission line, and each of the inductor, the capacitor and the transmission line is implemented by a bonding wire, an integrated passive device (IPD) component, or integrated or discrete devices on a package carrier.

7. The filter according to claim 1 , wherein an inductance value of the first inductor is in a range from 1 nH to 10 nH.

8. The filter according to claim 7 , wherein all resonators in the plurality of first resonators and the plurality of second resonators in the filter comprise a film bulk acoustic wave piezoelectric resonator (FBAR) having an air gap, a solidly mounted bulk acoustic wave piezoelectric resonator (SMR) having a Bragg acoustic reflector, or a surface acoustic wave piezoelectric resonator (SAWR) with an interdigital transducer (IDT) structure.

9. A filter, comprising:

a plurality of first resonators connected in series;

a plurality of second resonators, each of which is connected between ground and one end of one of the plurality of first resonators; and

a bandwidth adjusting unit connected between the ground and a node between any two of the plurality of first resonators,

wherein a parallel resonant frequency of the plurality of second resonators is lower than a series resonant frequency of the plurality of first resonators, wherein a difference between a series resonant frequency of the plurality of second resonators and the series resonant frequency of the plurality of first resonators is 30% to 80% of a pass-band width of the filter.

10. A filter, comprising:

a plurality of first resonators connected in series;

a plurality of second resonators, each of which is connected between ground and one end of one of the plurality of first resonators; and

a bandwidth adjusting unit connected between the ground and a node between any two of the plurality of first resonators,

wherein a parallel resonant frequency of the plurality of second resonators is lower than a series resonant frequency of the plurality of first resonators, wherein the third resonator has a same resonant frequency as the series resonant frequency of the plurality of first resonators.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 21, 2018
From: PANG, WEI; ZHENG, YUNZHUO
To: ROFS MICROSYSTEM (TIANJIN) CO., LTD
Reel/Frame 047838/0369 →
Continuity (1)
Related Publication 20190341910A1 · Nov 7, 2019
Cited By (3)
US 12,323,168 US 12,323,169 US 12,445,110