An RF filter for improving PIMD performance includes: a housing having at least one cavity and a dielectric resonator held in the cavity; washers shaped as circular plates and made of metal that are joined to an upper and lower portion of the dielectric resonator; and a cover joined to the housing.
An RF filter for improving PIMD performance includes: a housing having at least one cavity and a dielectric resonator held in the cavity; washers shaped as circular plates and made of metal that are joined to an upper and lower portion of the dielectric resonator; and a cover joined to the housing. A protrusion may be formed on one side of the washer to contact the cover or the housing, where the washer protrusion may increase in height along a direction moving away from the center.
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1. An RF filter for improving PIMD performance, the RF filter comprising: a housing having at least one cavity formed therein, the housing comprising a dielectric resonator held in the cavity;washers joined to an upper portion and a lower portion of the dielectric resonator, the washers shaped as ci
1. An RF filter for improving PIMD performance, the RF filter comprising: a housing having at least one cavity formed therein, the housing comprising a dielectric resonator held in the cavity;washers joined to an upper portion and a lower portion of the dielectric resonator, the washers shaped as circular plates and made of a metallic material; anda cover joined to an upper portion of the housing,the washer has a washer protrusion formed on one side thereof, the washer protrusion increasing in height along a direction moving away from the center, and the washer is configured to contact the cover or the housing. 2. The RF filter for improving PIMD performance according to claim 1, wherein at least one of the washers joined to the upper portion and the lower portion of the dielectric resonator has a screw protruding from one side thereof. 3. The RF filter for improving PIMD performance according to claim 2, wherein the screw has a male thread formed on an outer perimeter thereof, the housing or the cover has a slot or hole formed therein, the slot or hole has a female thread formed in an inner perimeter thereof corresponding to the male thread of the screw, and the screw is inserted into the slot or hole to be joined with the cover or the housing. 4. The RF filter for improving PIMD performance according to claim 1, wherein the dielectric resonator and the washer are joined by way of soldering. 5. The RF filter for improving PIMD performance according to claim 1, the RF filter further comprising a pressing member joined to the cover, wherein the cover has an insertion area formed therein, the insertion area configured to receive the pressing member inserted therethrough, the insertion area has a thin part formed therein, the thin part having a smaller thickness compared to a main body of the cover, the pressing member configured to be inserted through the insertion area to press the thin part, and the thin part is configured to contact the washer. 6. The RF filter for improving PIMD performance according to claim 5, wherein the pressing member comprises an elastic member capable of applying an elastic force. 7. The RF filter for improving PIMD performance according to claim 1, further comprising a tuning bolt joined to the cover, wherein the tuning bolt is inserted into the cavity. 8. The RF filter for improving PIMD performance according to claim 7, wherein the tuning bolt is formed from a metallic material, and the tuning bolt is configured such that an insertion depth thereof is adjustable and securable. 9. The RF filter for improving PIMD performance according to claim 1, wherein a material of the housing and the cover is metal. 10. An RF filter for improving PIMD performance, the RF filter comprising: a housing having at least one cavity formed therein, the housing comprising a metal resonator held in the cavity;a dielectric disk joined to an upper portion of the metal resonator;a washer joined to an upper portion of the dielectric disk, the washer having an annular shape and made of a metallic material; anda cover joined to an upper portion of the housing,the washer has a washer protrusion formed on one side thereof, the washer protrusion increasing in height along a direction moving away from the center, and the washer is configured to contact the cover. 11. The RF filter for improving PIMD performance according to claim 10, wherein the metal resonator and the dielectric disk are joined by way of soldering, and the dielectric disk and the washer are joined by way of soldering. 12. The RF filter for improving PIMD performance according to claim 10, the RF filter further comprising a pressing member joined to the cover, wherein the cover has an insertion area formed therein, the insertion area configured to receive the pressing member inserted therethrough, the insertion area has a thin part formed therein, the thin part having a smaller thickness compared to a main body of the cover, the pressing member configured to be inserted through the insertion area to press the thin part, and thin part is configured to contact the washer. 13. The RF filter for improving PIMD performance according to claim 10, wherein the metal resonator has a fastening hole formed in a lower surface thereof, and the metal resonator is secured to the housing by way of a fastening member inserted through the fastening hole. 14. The RF filter for improving PIMD performance according to claim 12, wherein the pressing member comprises an elastic member capable of applying an elastic force. 15. The RF filter for improving PIMD performance according to claim 10, further comprising a tuning bolt joined to the cover. 16. The RF filter for improving PIMD performance according to claim 15, wherein the tuning bolt is formed from a metallic material, and the tuning bolt is configured such that an insertion depth thereof is adjustable and securable. 17. The RF filter for improving PIMD performance according to claim 10, wherein a material of the housing and the cover is metal. 18. The RF filter for improving PIMD performance according to claim 10, wherein the metal resonator has a resonator protrusion formed on a lower surface thereof, and the metal resonator is configured to contact the housing.
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