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HMC564
IC RF AMP GP 7GHZ-13.5GHZ DIE
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規格
| Package | Tray |
| ProductStatus | Active |
| Frequency | 7GHz ~ 13.5GHz |
| P1dB | 12dBm |
| Gain | 17dB |
| NoiseFigure | 1.8dB |
| RFType | General Purpose |
| Voltage-Supply | 3V |
| Current-Supply | 51mA |
| TestFrequency | 7GHz ~ 13.5GHz |
| MountingType | Surface Mount |
| Package/Case | Die |
概述
Description
The HMC564 is a broadband GaAs MMIC (Monolithic Microwave Integrated Circuit) Voltage-Controlled Oscillator (VCO) designed for RF and microwave applications. Operating within the frequency range of 5.0 to 10.0 GHz, it provides a stable and low-phase-noise signal, making it suitable for communication systems, radar, and test equipment. The VCO features a single positive supply voltage, with the frequency controlled via an external voltage input. It is known for its compact size and ability to integrate seamlessly into circuit designs, offering high output power and low harmonic distortion. The HMC564 is often utilized where size, performance, and reliability are crucial, supporting various RF design requirements with its robust and efficient architecture.
Features
The HMC564 is a GaAs MMIC (Monolithic Microwave Integrated Circuit) frequency divider designed for applications in RF and microwave systems. Some key features of the HMC564 include:
1. Frequency Range: It operates over a wide input frequency range, typically from 4 GHz to 20 GHz.
2. Divide Ratio: The device offers a fixed divide ratio of 4.
3. Output Signal: It provides differential outputs, which helps in improving signal integrity and minimizing electromagnetic interference.
4. Input Sensitivity: The HMC564 typically requires low input power to operate effectively, often starting from -10 dBm.
5. Output Power: It provides a consistent output power level, which is typically around -4 dBm for each output.
6. Phase Noise: The device is designed to exhibit low phase noise, making it suitable for high-performance communication systems.
7. Supply Voltage: The HMC564 operates on a single positive supply voltage, usually around 3V to 5V.
8. Package: It is available in a compact, leadless surface-mount package, which simplifies integration into various designs.
These features make the HMC564 suitable for use in frequency synthesis, PLLs (Phase-Locked Loops), and other RF/microwave applications.
1. Frequency Range: It operates over a wide input frequency range, typically from 4 GHz to 20 GHz.
2. Divide Ratio: The device offers a fixed divide ratio of 4.
3. Output Signal: It provides differential outputs, which helps in improving signal integrity and minimizing electromagnetic interference.
4. Input Sensitivity: The HMC564 typically requires low input power to operate effectively, often starting from -10 dBm.
5. Output Power: It provides a consistent output power level, which is typically around -4 dBm for each output.
6. Phase Noise: The device is designed to exhibit low phase noise, making it suitable for high-performance communication systems.
7. Supply Voltage: The HMC564 operates on a single positive supply voltage, usually around 3V to 5V.
8. Package: It is available in a compact, leadless surface-mount package, which simplifies integration into various designs.
These features make the HMC564 suitable for use in frequency synthesis, PLLs (Phase-Locked Loops), and other RF/microwave applications.
Package
The HMC564 is housed in a RoHS-compliant, leadless 3x3 mm QFN (Quad Flat No-leads) package.
Pinout
The HMC564 is a GaAs MMIC SPDT (Single Pole Double Throw) switch designed for use in radio frequency (RF) and microwave applications. It typically comes in a small SOT-26 package. The HMC564 has 6 pins and their functions are as follows:
1. RF1: RF input/output port 1.
2. GND: Ground pin.
3. RFC: Common RF input/output port.
4. Vctl: Control voltage input to select the switch path.
5. GND: Ground pin.
6. RF2: RF input/output port 2.
The switch operates within a frequency range from DC to 20 GHz, offering low insertion loss, high isolation, and fast switching speed, making it suitable for various RF applications, such as test equipment, communication systems, and signal routing. Control is usually achieved by applying a DC voltage to the Vctl pin to toggle between RF1 and RF2 paths.
1. RF1: RF input/output port 1.
2. GND: Ground pin.
3. RFC: Common RF input/output port.
4. Vctl: Control voltage input to select the switch path.
5. GND: Ground pin.
6. RF2: RF input/output port 2.
The switch operates within a frequency range from DC to 20 GHz, offering low insertion loss, high isolation, and fast switching speed, making it suitable for various RF applications, such as test equipment, communication systems, and signal routing. Control is usually achieved by applying a DC voltage to the Vctl pin to toggle between RF1 and RF2 paths.
Manufacturer
The HMC564 is manufactured by Analog Devices, Inc. Analog Devices is a semiconductor company that specializes in designing and manufacturing a wide range of analog, mixed-signal, and digital signal processing (DSP) integrated circuits. The company serves various industries including communications, automotive, industrial, healthcare, and consumer electronics. They are known for their high-performance signal processing technologies and solutions.
Application
The HMC564 is a versatile MMIC (Monolithic Microwave Integrated Circuit) low-noise amplifier commonly used in RF and microwave applications. Its primary applications include wireless infrastructure, test equipment, and military and aerospace communications. It is particularly suitable for use in receivers, radar systems, and broadband communication systems due to its high linearity, low noise figure, and wide frequency range. The HMC564's performance characteristics make it ideal for improving signal quality and strength in various high-frequency applications.
Equivalent
The HMC564 is a wideband MMIC voltage-controlled oscillator (VCO). Equivalent products with similar functions include Analog Devices' ADF4351, Mini-Circuits' ZX95 series, and Synergy Microwave's VCOs like the RO series. Always verify specifications like frequency range, phase noise, and power output to ensure compatibility with your application.
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