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HMC435AMS8GETR
+BOMIC RF SWITCH SPDT 4GHZ 8MSOP
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メーカーテキサス・インスツルメンツ
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メーカー品番 #HMC435AMS8GETR
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データシート HMC435AMS8GETR DataSheet
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パッケージ MSOP-8
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在庫状況4041
365 日間品質保証
7*24 日間の品質保証
90-時間単位のサービス保証
1日間のアフターサービス保証
仕様
| 属性 | 値 |
| Package / Case | Tape & Reel (TR),Cut Tape (CT) |
| Part Status | Active |
| RF Type | General Purpose |
| Circuit | SPDT |
| Frequency Range | 0Hz ~ 4GHz |
| Isolation | 48dB |
| Insertion Loss | 0.8dB |
| Test Frequency | 2.5GHz |
| P1d B | 30dBm |
| IIP3 | 53dBm |
| Impedance | 50Ohm |
| Voltage - Supply | 5V |
| Operating Temperature | -40°C ~ 85°C |
概要
Description
Key features of the HMC435AMS8GETR include its conversion gain, high isolation, and low power consumption, all housed in an 8-lead MSOP package. It offers a wide input frequency range, allowing for versatile use across various systems. Its high level of integration reduces the need for external components, simplifying design and minimizing board space. The device is designed for high performance and reliability, making it a preferred choice for engineers seeking efficient high-frequency signal processing solutions.
Equivalent
1. Analog Devices ADL5391
2. Peregrine Semiconductor PE44820
3. Mini-Circuits JSPHS-2485
These alternatives can vary in specifications such as frequency range, phase shift range, and power handling, so it's important to confirm compatibility with your specific application requirements.
Features
Pinout
1. Pin 1 (Vcc): Power supply for the device.
2. Pin 2 (RFin): RF input, where the signal to be divided is fed into the IC.
3. Pin 3 (GND): Ground connection.
4. Pin 4 (N/C): No connection, often left unconnected.
5. Pin 5 (N/C): No connection, often left unconnected.
6. Pin 6 (OUT/Q): Complementary divide-by output.
7. Pin 7 (Q): Divide-by output.
8. Pin 8 (Vcc): Another power supply input for the device.
This device plays a critical role in frequency synthesis, clock generation, and phase-locked loops by providing stable and reliable frequency division.
Manufacturer
Application
1. Phased Array Antennas: Utilized to adjust the phase of RF signals for beam steering.
2. Frequency Modulation Systems: Employed in systems where precise phase modulation is essential.
3. Radar Systems: Aids in improving target detection and resolution by controlling signal phase.
4. Communications: Helps in optimizing signal integrity and reducing interference.
5. Test and Measurement Equipment: Used for accurate phase control in RF testing setups.
These applications benefit from the device's ability to provide continuous phase adjustment with low phase error.