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HMC6980
+BOMIC AMP VSAT 10MHZ-20GHZ MODULE
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ManufacturerAnalog Devices Inc.
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Mfr. Part #HMC6980
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Datasheet HMC6980 DataSheet
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Package Module, SMA Connectors
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In Stock3660
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Specifications
| Attribute | Value |
| Supplier | Analog Devices Inc. |
| Package | Bulk |
| ProductStatus | Active |
| Frequency | 10MHz ~ 20GHz |
| P1dB | 28dBm |
| Gain | 11dB |
| NoiseFigure | 5dB |
| RFType | VSAT |
| Current-Supply | 345mA |
| MountingType | Connector Mount |
| Package/Case | Module, SMA Connectors |
Overview
Description
Key features of the HMC6980 include a wide frequency range, high output power, and low phase noise, which are crucial for maintaining signal integrity and reducing interference in complex RF environments. The device may also offer various modulation capabilities, allowing for flexibility in signal transmission and reception.
Another significant aspect of the HMC6980 is its integration of multiple functions, which helps reduce the overall component count in a design, leading to a more compact and efficient system. This integration often results in improved reliability and performance in demanding scenarios.
Overall, the HMC6980 is a vital component for engineers and designers aiming to develop advanced RF systems with stringent performance requirements.
Equivalent
1. Analog Devices HMC8200
2. Qorvo TGA2594
3. Mini-Circuits ZHL-42W+
4. Skyworks SKY66111-11
Ensure compatibility in terms of frequency range, gain, and power output when considering replacements. Always consult datasheets for precise matching requirements.
Features
1. Frequency Range: Typically operates within a wide frequency range, suitable for various microwave applications.
2. High Output Power: Delivers significant output power with high efficiency, making it ideal for demanding applications.
3. Gain & Linearity: Offers high gain and excellent linearity, ensuring robust performance in communication systems.
4. Efficiency: Designed for high power-added efficiency, reducing power consumption and thermal output.
5. Compact Design: Available in a compact package that facilitates easy integration into microwave systems.
6. Durability: Built to withstand challenging environmental conditions, ensuring reliability and longevity.
7. Application Versatility: Suitable for a variety of applications, including point-to-point radios, satellite communications, and radar systems.
8. Advanced Technology: Utilizes advanced semiconductor technology to achieve superior performance metrics.
The HMC6980 is an excellent choice for engineers needing a reliable and efficient power amplifier for high-frequency applications.
Pinout
Key functions and features of the HMC6980 include:
1. PLL with Integrated Voltage-Controlled Oscillator (VCO): Provides a wide frequency range.
2. Low Phase Noise: Ensures high signal integrity for RF applications.
3. Output Dividers: Allow for flexible frequency generation.
4. Reference Input: Accepts an external reference frequency for PLL operation.
5. Digital Interfaces: Allows programming and control, typically through SPI or similar interfaces.
6. Power Supply Pins: For device operation and stability.
7. Ground Pins: Ensure proper grounding for noise reduction and performance enhancements.
Each pin on the HMC6980 is designated for specific functions, such as power supply, signal input/output, control, and programming, to facilitate its role in frequency synthesis and signal management.
Manufacturer
Application
1. Wireless Infrastructure: Supports high-frequency communication systems, such as base stations and wireless backhaul.
2. Radar Systems: Utilized in both commercial and defense radar applications for signal amplification.
3. Test and Measurement Equipment: Employed in devices that require precision RF signal generation and analysis.
4. Satellites and Aerospace: Used for communication and signal amplification in satellite and aerospace technology.
5. Microwave Communications: Facilitates long-distance and high-capacity data transmission systems.
These applications leverage the HMC6980's capabilities in high-frequency amplification and signal integrity.