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Monolithic Integrated CNC Phase Shifter O339
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Monolithic Integrated CNC Phase Shifter O310

The O310 is a GaAs 6-bit digital phase shifter chip. The operating frequency is 2.1~3.2GHz, the insertion loss is less than 12.5dB, and the basic shift phase is -5.625°, -11.25°, -22.5°, -45°, -90°, -180°, and the total phase shift amount is -354.375°. The chip uses 0/-5V logic control, no external power supply bias, no power consumption. With excellent phase shift accuracy and port standing wave characteristics over the entire operating frequency range, it is ideally suited for microwave hybrid integrated circuits and multi-chip modules as well as low-power systems.The chip uses on-chip via metallization process to ensure a good grounding, no additional grounding measures, easy to use. The backside of the chip is metallized and suitable for eutectic sintering or conductive adhesive bonding processes.
Monolithic Integrated CNC Phase Shifter O339
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Monolithic Integrated CNC Phase Shifter O311

The O311 is a GaAs 6-bit digital phase shifter chip. The operating frequency is 2.5~3.7GHz, the insertion loss is less than 12.5dB, and the basic shift phase is -5.625°, -11.25°, -22.5°, -45°, -90°, -180°, and the total phase shift amount is -354.375°. The chip uses 0/-5V logic control, no external power supply bias, no power consumption. With excellent phase shift accuracy and port standing wave characteristics over the entire operating frequency range, it is ideally suited for microwave hybrid integrated circuits and multi-chip modules as well as low-power systems. The chip uses on-chip via metallization process to ensure a good grounding, no additional grounding measures, easy to use. The backside of the chip is metallized and suitable for eutectic sintering or conductive adhesive bonding processes.
Monolithic Integrated CNC Phase Shifter O339
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Monolithic Integrated CNC Phase Shifter O326

The O326 is a GaAs 6-bit digital phase shifter chip. Operating frequency 1.6 ~ 3.2GHz, insertion loss is less than 10.5dB, the basic shift phase -5.625 °, -11.25 °, -22.5 °, -45 °, -90 °, -180 °, the total phase-shift amount -354.375 °. The chip uses 0/-5V logic control, no external power supply bias, no power consumption. With excellent phase shift accuracy and port standing wave characteristics over the entire operating frequency range, it is ideally suited for microwave hybrid integrated circuits and multi-chip modules as well as low-power systems. The chip uses on-chip via metallization process to ensure a good grounding, no additional grounding measures, easy to use. The backside of the chip is metallized and suitable for eutectic sintering or conductive adhesive bonding processes.
Monolithic Integrated CNC Phase Shifter O339
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Monolithic Integrated CNC Phase Shifter O326D

The O326D is a GaAs 6-bit digital phase shifter chip. Operating frequency 1.6 ~ 3.2GHz, insertion loss less than 10.5dB, the basic phase shift -5.625 °, -11.25 °, -22. ° 5, -4 ° 5, -9 ° 0, -18 ° 0, the total phase shift The amount is -354.37° 5 cores. The on-chip integrated driver, which uses simpler phase shift characteristics and port standing wave characteristics within the operating frequency range, is ideally suited for microwave hybrid integrated circuits and multi-chip modules as well as low-power systems. The chip uses on-chip via metallization process to ensure a good grounding, no additional grounding measures, easy to use. The backside of the chip is metallized and suitable for eutectic sintering or conductive adhesive bonding processes.
Monolithic Integrated CNC Phase Shifter O339
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Monolithic Integrated CNC Phase Shifter O327

The O327 is a GaAs 6-bit digital phase shifter chip. The operating frequency is 0.8-2GHz, the insertion loss is less than 12dB, the basic phase shift is -5.625°, -11.25°, -22.5°, - 45°, -90°, -180°, and the total phase shift amount is - 354.375°. The chip uses 0/-5V logic control, no external power supply bias, no power consumption. With excellent phase shift accuracy and port standing wave characteristics over the entire operating frequency range, it is ideally suited for microwave hybrid integrated circuits and multi-chip modules as well as low-power systems. The chip uses on-chip via metallization process to ensure a good grounding, no additional grounding measures, easy to use. The backside of the chip is metallized and suitable for eutectic sintering or conductive adhesive bonding processes.
Monolithic Integrated CNC Phase Shifter O339
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Monolithic Integrated CNC Phase Shifter O327D

The O327D is a GaAs 6-bit digital phase shifter chip. The operating frequency is 0.8-2GHz, the insertion loss is less than 12dB, the basic phase shift is -5.625°, -11.25°, - 22.5°, -45°, -90°, -180°, and the total phase shift amount is - 354.375°. The chip uses 0/-5V logic control, no external power supply bias, no power consumption. With excellent phase shift accuracy and port standing wave characteristics over the entire operating frequency range, it is ideally suited for microwave hybrid integrated circuits and multi-chip modules as well as low-power systems. The chip uses on-chip via metallization process to ensure a good grounding, no additional grounding measures, easy to use. The backside of the chip is metallized and suitable for eutectic sintering or conductive adhesive bonding processes.
Monolithic Integrated CNC Phase Shifter O339
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Monolithic Integrated CNC Phase Shifter O337

The O337 is a GaAs 6-bit digital phase shifter chip. Operating frequency 14~18GHz, insertion loss less than 8.8dB, basic phase shift -5.625°, -11.25°, -22.°5, -4°5, -9°0, -18°0, total phase shift -354.37°5. The chip uses 0/-5V logic control, no external power supply bias, no power loss. With excellent phase shift accuracy and port standing wave characteristics in the operating frequency range, it is ideally suited for microwave hybrid integrated circuits and multi-chip modules as well as low-power systems. The chip uses on-chip via metallization process to ensure a good grounding, no additional grounding measures, easy to use. The backside of the chip is metallized and suitable for eutectic sintering or conductive adhesive bonding processes.