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HMC382LP3ETR
+BOMIC RF AMP GP 1.7GHZ-2.2GHZ 16QFN
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ManufacturerAnalog Devices Inc.
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Mfr. Part #HMC382LP3ETR
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Datasheet HMC382LP3ETR DataSheet
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Package VFQFN-16
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In Stock2601
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Specifications
| Attribute | Value |
| Supplier | Analog Devices Inc. |
| Package / Case | Tape & Reel (TR),Cut Tape (CT) |
| Part Status | Last Time Buy |
| Frequency | 1.7GHz ~ 2.2GHz |
| P1d B | 16dBm |
| Gain | 17dB |
| Noise Figure | 1dB |
| RF Type | General Purpose |
| Voltage - Supply | 5V |
| Supply Current | 67mA |
| Test Frequency | 1.8GHz |
| Mounting Type | Surface Mount |
Overview
Description
Key features of the HMC382LP3ETR include a high gain of around 20 dB, low noise figure, and excellent linearity, which are critical for maintaining signal quality and reducing distortion. Its typical output power is about +18 dBm, with a bias current of approximately 75 mA. The device comes in a compact, leadless 3x3 mm QFN package, which is suitable for high-density circuit designs.
The amplifier's design includes internal matching, which simplifies the integration process and reduces the need for external components. Overall, the HMC382LP3ETR is valued for its reliability, efficiency, and ease of use in RF signal amplification.
Equivalent
1. Qorvo TQP3M9009
2. Mini-Circuits LEE-39+
3. Analog Devices ADL5523
4. RFMD/RFMW RFPA5200
5. Skyworks SKY67150-396LF
These alternatives may differ in specifications, so verifying the key parameters for your specific application is important.
Features
Pinout
Here's a brief overview of its pin count and function:
- Pin Count: The HMC382LP3ETR has 12 pins.
- Function: This device is utilized as a low noise amplifier, providing high gain and low noise figure, making it suitable for use in RF and microwave applications. It is commonly used in communication systems to enhance weak signals while maintaining a low noise level. The amplifier is designed for easy integration into RF systems and features a stable design with a wide bandwidth.
These features make the HMC382LP3ETR ideal for enhancing weak signal amplification in a variety of applications, including wireless communications, satellite systems, and other RF technologies.