Hình ảnh chỉ để tham khảo
HMC372LP3ETR
+BOMIC RF AMP CDMA 700MHZ-1GHZ
-
Nhà sản xuấtCông ty Analog Devices Inc.
-
Ông. Phần #HMC372LP3ETR
-
Bảng dữ liệu HMC372LP3ETR DataSheet
-
Có sẵn6929
365 Đảm bảo chất lượng ngày
7*24 giờ dịch vụ quarantee
90-Bảo hành sau bán hàng ngày
Bảo hành sản phẩm chính xác
Thông số kỹ thuật
| thuộc tính | Giá trị |
| Supplier | Analog Devices Inc.,Rochester Electronics, LLC |
| Package | Tape & Reel (TR),Bulk |
| ProductStatus | Last Time Buy |
| Frequency | 700MHz ~ 1GHz |
| P1dB | 21dBm |
| Gain | 14.5dB |
| NoiseFigure | 1dB |
| RFType | CDMA, GSM |
| Voltage-Supply | 5V |
| Current-Supply | 100mA |
| TestFrequency | 1GHz |
| MountingType | Surface Mount |
| Package/Case | 16-VFQFN Exposed Pad, CSP |
Tổng quan
Description
Key features of the HMC372LP3ETR include:
1. Low Noise Figure: It offers a low noise figure, which enhances the signal-to-noise ratio, crucial for boosting weak signals in communication systems.
2. High Gain: The amplifier provides significant gain, improving the sensitivity of receiver systems.
3. Integrated Protection: It includes ESD protection and is housed in a leadless plastic surface-mount package for ease of integration.
4. Robust Performance: The amplifier can operate over a wide temperature range and is designed for stability and reliability.
The HMC372LP3ETR is often used in applications that demand efficient performance, minimal signal distortion, and quick integration due to its compact packaging and robust performance metrics.
Equivalent
1. Qorvo TQP3M9008 - A wideband LNA with similar frequency range and performance.
2. Analog Devices ADL5523 - Another low noise amplifier suitable for similar frequency bands.
3. Mini-Circuits PMA2-83LN+ - A low noise amplifier designed for high-performance RF applications.
These alternatives may vary slightly in specifications, so ensure compatibility with your specific application needs.
Features
1. Frequency Range: Operates from 0.3 GHz to 3.8 GHz, making it suitable for a variety of wireless communication systems.
2. Low Noise Figure: Offers a typical noise figure of 1.8 dB, ensuring minimal signal degradation and excellent receiver sensitivity.
3. High Gain: Provides a high gain of 19 dB, enhancing weak signal amplification.
4. Output Power: Delivers a P1dB output power of 17 dBm, suitable for driving subsequent stages in a signal chain.
5. Input/Output Match: Comes with 50-ohm matched input/output ports, facilitating easy integration into RF systems without the need for external matching components.
6. Small Package: Available in a compact 3x3 mm leadless QFN package, ideal for space-constrained applications.
7. Supply Voltage: Operates with a single power supply voltage, typically +3V to +5V.
These features make the HMC372LP3ETR a reliable choice for applications such as cellular/PCS/3G base stations, wireless infrastructure, and other RF communication systems.
Pinout
The key functions and features of the HMC372LP3ETR include:
- Frequency Range: It typically operates in the range of 0.3 GHz to 3.8 GHz.
- Gain: Provides a gain of around 18 dB.
- Noise Figure: Offers a low noise figure, typically around 2 dB, which enhances the sensitivity of the receivers.
- Input/Output Match: The amplifier provides good input and output matching, simplifying the design of RF systems.
- Power Supply: Operates from a single positive supply voltage, typically around 5 volts.
This device is used in a variety of applications, including cellular/PCS/3G, WiMAX, broadband infrastructure, and other RF amplifier applications.
Manufacturer
Application
1. Cellular Infrastructure: Used in base stations for improved signal reception.
2. Satellite Communications: Enhances signal quality in both uplink and downlink applications.
3. Point-to-Point Radios: Improves performance and efficiency in wireless communication systems.
4. Test Equipment: Utilized in RF and microwave testing setups for accurate signal amplification.
5. Military and Aerospace: Supports high-frequency applications requiring robust performance.
Its low noise figure and wide bandwidth make it suitable for enhancing signal clarity and strength in these fields.