12400 MHz Cavity Filters 345

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Part RoHS Manufacturer Filter Type Maximum Frequency Minimum No. of Sections Maximum No. of Sections Average Input Power Connector (Input) Mounting Type I/O Impedance Dimensions Maximum Operating Temperature Minimum Operating Temperature Terminal Finish Manufacturer Series Height Width (mm) Connector (Output) Additional Features Center/Cutoff Frequency (fo/fc) JESD-609 Code Minimum Frequency Voltage Standing Wave Ratio Length

8FV20-FREQ/HBW1-OB/OB

Dover Technologies

CAVITY BPF

12400 MHz

8

8

BLIND MATE

PANEL MOUNT

50 OHM

85 Cel

-55 Cel

FV20

BLIND MATE

HALF DB BANDWIDTH

4000 MHz

1.5

13FV20-FREQ/TBW1-T/T

Dover Technologies

CAVITY BPF

12400 MHz

13

13

TNC FEMALE

PANEL MOUNT

50 OHM

85 Cel

-55 Cel

FV20

TNC FEMALE

THREE DB BANDWIDTH

4000 MHz

1.5

8FV20-FREQ/TBW1-TP/TP

Dover Technologies

CAVITY BPF

12400 MHz

8

8

TNC MALE

PANEL MOUNT

50 OHM

85 Cel

-55 Cel

FV20

TNC MALE

THREE DB BANDWIDTH

4000 MHz

1.5

5FV20-FREQ/TBW2-NP/NP

Dover Technologies

CAVITY BPF

12400 MHz

5

5

N MALE

PANEL MOUNT

50 OHM

85 Cel

-55 Cel

FV20

N MALE

THREE DB BANDWIDTH

4000 MHz

1.5

17FV20-FREQ/TBW1-P/P

Dover Technologies

CAVITY BPF

12400 MHz

17

17

RF PIN

PANEL MOUNT

50 OHM

85 Cel

-55 Cel

FV20

RF PIN

THREE DB BANDWIDTH

4000 MHz

1.5

13FV20-FREQ/TBW2-T/T

Dover Technologies

CAVITY BPF

12400 MHz

13

13

TNC FEMALE

PANEL MOUNT

50 OHM

85 Cel

-55 Cel

FV20

TNC FEMALE

THREE DB BANDWIDTH

4000 MHz

1.5

11FV20-FREQ/TBW1-OB/OB

Dover Technologies

CAVITY BPF

12400 MHz

11

11

BLIND MATE

PANEL MOUNT

50 OHM

85 Cel

-55 Cel

FV20

BLIND MATE

THREE DB BANDWIDTH

4000 MHz

1.5

4FV20-FREQ/TBW2-OB/OB

Dover Technologies

CAVITY BPF

12400 MHz

4

4

BLIND MATE

PANEL MOUNT

50 OHM

85 Cel

-55 Cel

FV20

BLIND MATE

THREE DB BANDWIDTH

4000 MHz

1.5

10FV20-FREQ/UBW2-NP/NP

Dover Technologies

CAVITY BPF

12400 MHz

10

10

N MALE

PANEL MOUNT

50 OHM

85 Cel

-55 Cel

FV20

N MALE

ONE DB BANDWIDTH

4000 MHz

1.5

Cavity Filters

Cavity filters are electronic filters that are used in RF and microwave communication systems to selectively filter out unwanted frequencies from a signal. They are designed to provide a high level of selectivity and precision in filtering, making them ideal for use in applications where accurate frequency response is critical.

Cavity filters use a resonant cavity or a series of resonant cavities to selectively filter out specific frequencies from a signal. The cavity is typically made of a conductive material, such as aluminum or copper, and is designed to resonate at a specific frequency or range of frequencies.

Cavity filters can be designed as band-pass filters, which allow only a specific range of frequencies to pass through, or as band-stop filters, which block a specific range of frequencies. They can also be designed with multiple cavities, which can increase the level of selectivity and precision in filtering.

Cavity filters are commonly used in a variety of RF and microwave communication systems, including radios, satellite communication systems, and radar systems. They are also used in scientific research applications, such as particle accelerators and radio telescopes.