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HMC-ALH102
+Lista de MateriaisIC RF AMP GP 2GHZ-20GHZ DIE
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FabricanteAnalog Devices Inc.
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Peça do Fabricante #HMC-ALH102
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Ficha Técnica HMC-ALH102 DataSheet
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Pacote Die
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Especificações
| Atributo | Valor |
| Supplier | Analog Devices Inc. |
| Package / Case | Tray |
| Part Status | Active |
| Frequency | 2GHz ~ 20GHz |
| P1d B | 10dBm |
| Gain | 10dB |
| Noise Figure | 2.5dB |
| RF Type | General Purpose |
| Voltage - Supply | 2V |
| Supply Current | 55mA |
| Test Frequency | 2GHz ~ 20GHz |
| Mounting Type | Surface Mount |
Visão Geral
Description
Equivalent
Features
1. Frequency Range: Operates efficiently between 0.7 GHz and 1.0 GHz.
2. Gain: Offers a high gain of approximately 18 dB, enhancing signal strength.
3. Low Noise Figure: Features a low noise figure of around 0.5 dB, making it suitable for sensitive receiver applications.
4. Input/Output Return Loss: Provides good input and output return loss, typically around 15 dB, ensuring better impedance matching.
5. Supply Voltage: Operates on a supply voltage of +5V.
6. Power Consumption: Consumes relatively low power, making it energy-efficient.
7. Package: Comes in a compact, surface-mount package, facilitating easy integration into various systems.
8. Applications: Ideal for use in cellular base stations, satellite communications, and other RF applications requiring low noise and high gain.
These features make the HMC-ALH102 suitable for enhancing receiver sensitivity and performance in demanding RF environments.
Pinout
In terms of pin count, since it is a chip, it does not have traditional pins like a packaged component. Instead, it features bond pads for connections. The amplifier requires typical connections for RF input, RF output, ground, and DC power.
The primary function of the HMC-ALH102 is to provide low-noise amplification in microwave and millimeter-wave frequency bands. It is used in applications such as test instrumentation, military radar, EW systems, and communication systems where high gain and low noise figure are crucial.
Manufacturer
Application
1. Telecommunications: Used in wireless infrastructure for signal processing and frequency translation.
2. Radar Systems: Supports broadband radar applications by facilitating efficient frequency mixing.
3. Instrumentation: Integrated into test and measurement equipment for signal analysis across broad frequencies.
4. Military and Aerospace: Suitable for electronic warfare and communication systems due to its robust performance.
5. Satellite Communications: Aids in frequency conversion necessary for satellite transceivers.
Its broad frequency range and high linearity make it ideal for these demanding applications.