Tunable band-pass filter
US-9786974-B2 · Oct 10, 2017 · US
US9472835B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9472835-B2 |
| Application number | US-201414513659-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 14, 2014 |
| Priority date | May 16, 2012 |
| Publication date | Oct 18, 2016 |
| Grant date | Oct 18, 2016 |
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A filtering apparatus includes a passband of a first-level unit which is formed by at least three coaxial filters covers a passband of a second-level unit which is formed by at least three dielectric filters, and a bandwidth of the first-level unit is twice the bandwidth of the second-level unit, so that when the coaxial filters are coupled to the dielectric filters, insertion loss of the coaxial filters is reduced, thereby reducing overall insertion loss of the filtering apparatus. By making a transmission zero of the first-level unit be located at a second harmonic frequency point of the second-level unit, the filtering apparatus can have high suppression on a second harmonic, thereby obtaining relatively desirable far-end suppression performance.
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What is claimed is: 1. A filtering apparatus, comprising: a first-level unit; and a second-level unit, wherein the first-level unit is formed by at least three coaxial filters, the at least three coaxial filters are arranged in sequence, each coaxial filter is coupled to an adjacent one of the at least three coaxial filters in a first arrangement direction, and two nonadjacent coaxial filters in the first arrangement direction in the at least three coaxial filters are inductively coupled to generate a transmission zero at a high frequency end of a passband of the first-level unit, wherein the second-level unit is formed by at least three dielectric filters, the at least three dielectric filters are arranged in sequence, and each dielectric filter is coupled to an adjacent one of the at least three dielectric filters in a second arrangement direction, wherein a last coaxial filter of the at least three coaxial filters in the first-level unit is coupled to a first dielectric filter of the at least three dielectric filters in the second-level unit, wherein the passband of the first-level unit covers a passband of the second-level unit, and a bandwidth of the first-level unit is twice the bandwidth of the second-level unit, and wherein the transmission zero of the first-level unit is located at a second harmonic frequency point of the second-level unit. 2. The filtering apparatus according to claim 1 , wherein the last coaxial filter in the first-level unit is coupled to the first dielectric filter in the second-level unit by using a coupling loop. 3. The filtering apparatus according to claim 2 , wherein the coupling loop is a silver-plated metal piece. 4. The filtering apparatus according to claim 1 , wherein said each coaxial filter is coupled to the adjacent one of the at least three coaxial filters in the arrangement direction by using a coupling window. 5. The filtering apparatus according to claim 1 , wherein said each dielectric filter is coupled to the adjacent one of the at least three dielectric filters in the second arrangement direction by using a coupling window. 6. The filtering apparatus according to claim 1 , wherein the two nonadjacent coaxial filters in the first arrangement direction are configured to generate the transmission zero in the high frequency end of the passband of the first-level unit are coupled by using a coupling window. 7. The filtering apparatus according to claim 1 , wherein any one of the at least three dielectric filters comprises a first metal cavity, a dielectric resonator fastened at the bottom of the first metal cavity, and a dielectric tuner fastened at the top of the first metal cavity, wherein the dielectric tuner is opposite to the dielectric resonator, and when the dielectric tuner moves toward the bottom or the top of the first metal cavity, the distance from the dielectric resonator is decreased or increased to adjust a resonance frequency of the dielectric resonator, and a coupling window is formed on a side wall of the first metal cavity. 8. The filtering apparatus according to claim 1 , wherein any one of the at least three coaxial filters comprises a second metal cavity, a conductor that is fastened at the bottom of the second metal cavity and coaxial with the second metal cavity, and a tuning screw fastened at the top of the second metal cavity, wherein the tuning screw is opposite to the conductor, and when the tuning screw moves toward the bottom or the top of the second metal cavity, the distance from the conductor is decreased or increased to adjust a reflection delay of the coaxial filter, and a coupling window is formed on a side wall of the second metal cavity. 9. The filtering apparatus according to claim 1 , further comprising a third-level unit, wherein the third-level unit is formed by coaxial filters and is coupled to a dielectric filter that is arranged last in the second-level unit. 10. The filtering apparatus according to claim 9 , wherein the third-level unit comprises waffle-iron low-pass filters.
Comb or interdigital filters; Cascaded coaxial cavities (H01P1/203 takes precedence) · CPC title
Coaxial filters (cascaded coaxial cavities H01P1/205) · CPC title
using comb or interdigital filters; using cascaded coaxial cavities (H01P1/2131, H01P1/2135 take precedence) · CPC title
with dielectric resonators · CPC title
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