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HMC481MP86
+БОМIC RF AMP GP 0HZ-5GHZ
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ПроизводительКомпания Analog Devices Inc.
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Мфр. Часть #HMC481MP86
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Лист данных HMC481MP86 DataSheet
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Пакет SOT-86
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В наличии9881
365 Дни гарантии качества
7*24 часы обслуживания каранти
90-гарантия послепродажного дня
Гарантия подлинного продукта
Спецификации
| Атрибут | Ценность |
| Supplier | Analog Devices Inc. |
| Package | Strip |
| ProductStatus | Obsolete |
| Frequency | 0Hz ~ 5GHz |
| P1dB | 20dBm |
| Gain | 20dB |
| NoiseFigure | 3.5dB ~ 4.5dB |
| RFType | General Purpose |
| Voltage-Supply | 6V ~ 12V |
| Current-Supply | 74mA |
| MountingType | Surface Mount |
| Package/Case | SOT-86 |
Обзор
Description
Key features of the HMC481MP86 include:
1. Attenuation Range: It offers a broad attenuation range, allowing for precise control of signal amplitude.
2. Control Voltage: Attenuation is controlled via an analog voltage, providing flexibility in various applications.
3. Integration: As a monolithic design, it integrates multiple functions onto a single chip, reducing the need for additional components.
4. Performance: It offers low insertion loss and high power handling capabilities, making it suitable for both commercial and military applications.
5. Package: The component is housed in a compact leadless QFN package, facilitating ease of integration into modern RF systems.
Applications for the HMC481MP86 include telecommunications infrastructure, test equipment, and radar systems, where precise signal control is crucial.
Equivalent
1. Analog Devices HMC1119: Offers similar functionality in terms of voltage-variable attenuation.
2. MACOM MAAVSS0008: Another GaAs MMIC voltage-variable attenuator suitable for RF applications.
3. Qorvo TQP4M9060: Provides comparable attenuation control for RF and microwave frequencies.
Always verify specifications for compatibility with your specific application requirements.
Features
1. Frequency Range: It operates from DC to 6 GHz, making it suitable for broadband applications.
2. Gain: Offers a typical gain of 17 dB, enhancing signal strength over a wide bandwidth.
3. Output Power: Delivers a typical output power of +27 dBm at 1 dB compression, which is beneficial for driving high-power devices.
4. Linear Performance: Provides excellent linearity with a typical OIP3 (Output Third Order Intercept Point) of +40 dBm, crucial for high-fidelity signal amplification.
5. Supply Voltage: Operates with a single positive supply voltage, typically around 5V, simplifying power supply requirements.
6. Package: Available in a compact and leadless 8-lead 6x6 mm SMT (Surface Mount Technology) package, facilitating easy integration into RF circuits.
7. Applications: Suitable for point-to-point radios, military, and test equipment, and other RF systems requiring reliable amplification across a broad frequency spectrum.
These features make the HMC481MP86 a robust choice for demanding RF applications.
Pinout
The specific functions of the pins generally include:
1. RF Input: Where the RF signal is fed into the device.
2. RF Output: The attenuated RF signal comes out from this pin.
3. Control Voltage: Used to adjust the level of attenuation.
4. Ground (GND): Provides a reference point for circuits and helps in shielding and stability.
5. Power Supply (Vdd): Supplies the necessary power to the device.
6. Optional/Secondary Control: Sometimes used for additional control or configuration purposes.
The precise pin configuration and additional functions can vary, so it's vital to consult the manufacturer's datasheet for detailed specifications and pin assignments.
Manufacturer
Application
1. Telecommunications: Adjusting signal levels in cellular base stations.
2. Wireless Infrastructure: Managing signal strength in wireless communication systems.
3. Radar Systems: Controlling signal amplitudes for better radar performance.
4. Test and Measurement Equipment: Providing precise attenuation for testing RF components.
5. Military and Aerospace: Offering reliable performance in harsh environments for communication and navigation systems.
These applications benefit from the attenuator's broad frequency range, high linearity, and precise control over signal levels.