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HMC553ALC3B
+BOMIC MMIC MIXER DBL-BAL 12SMD
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Nhà sản xuấtCông ty Analog Devices Inc.
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Ông. Phần #HMC553ALC3B
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Bảng dữ liệu HMC553ALC3B DataSheet
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Gói CLCC-12
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Thông số kỹ thuật
| thuộc tính | Giá trị |
| Package / Case | Strip |
| Part Status | Active |
| Frequency | 7GHz ~ 14GHz |
| Number of Mixers | 1 |
| Noise Figure | 8dB |
| Mounting Type | Surface Mount |
Tổng quan
Description
Key features include low conversion loss and high isolation between ports, enhancing performance in complex RF environments. The sub-harmonically pumped architecture reduces LO frequency requirements, which simplifies the design of local oscillator systems. The device is generally used in applications such as point-to-point radios, VSAT, and radar systems, where efficiency and compactness are crucial.
Overall, the HMC553ALC3B is valued for its reliability, small footprint, and ability to facilitate high-frequency, high-performance signal processing in advanced communication systems.
Equivalent
1. Mini-Circuits ADE-1+ - A popular RF mixer with similar functionality.
2. Analog Devices LT5526 - A high-performance mixer.
3. Marki Microwave M1R-0420LC - Another mixer with comparable performance.
When selecting an equivalent, ensure the specifications such as frequency range, conversion loss, and noise figure match your application needs.
Features
Pinout
The HMC553ALC3B has a total of 12 pins. Its primary functions include RF frequency mixing and signal conversion. Key pins for the device include:
- RF Input (Pin 2): Receives the radio frequency signal.
- LO Input (Pin 5): Accepts the local oscillator signal, which is sub-harmonically pumped.
- IF Output (Pin 8): Outputs the intermediate frequency signal, which is the result of mixing the RF input and LO signals.
Remaining pins are typically used for grounding (GND) and ensuring the stability and performance of the mixer. The device is designed to offer excellent isolation, low conversion loss, and high linearity, making it suitable for various communications applications.
Manufacturer
Application
1. Satellite Communications: For frequency conversion in uplink and downlink systems.
2. Point-to-Point Radios: Used in wireless backhaul networks for efficient data transmission.
3. Test Equipment: Employed in RF testing setups for signal analysis and generation.
4. Radar Systems: Utilized in frequency conversion for radar signal processing.
5. Military and Aerospace: Suitable for secure and reliable communication systems.
Its wide frequency range, high isolation, and low conversion loss make it versatile for various high-frequency applications.