HMC270AMS8GE Overview
The HMC270AMS8GE is a high-performance GaAs MMIC frequency mixer designed for RF and microwave applications within the 2 to 20 GHz frequency range. Featuring an integrated local oscillator (LO) amplifier and a double-balanced mixer topology, this device delivers excellent conversion gain and low noise figure, making it ideal for sensitive receiver front-end designs. Compact in an 8-lead MSOP package, it supports easy integration into complex systems, offering reliable operation with a wide dynamic range. Its precision and robustness cater to demanding industrial, defense, and communication markets. For detailed sourcing and technical support, visit IC Manufacturer.
HMC270AMS8GE Technical Specifications
| Parameter | Specification |
|---|---|
| Frequency Range (RF) | 2 GHz to 20 GHz |
| Conversion Gain | 10 dB (typical) |
| Noise Figure | 7 dB (typical) |
| Input IP3 (IIP3) | +15 dBm (typical) |
| LO Drive Level | +7 dBm (nominal) |
| Supply Voltage | +5 V DC |
| Current Consumption | 40 mA (typical) |
| Package Type | 8-lead MSOP |
| Operating Temperature Range | -40??C to +85??C |
HMC270AMS8GE Key Features
- Wide frequency coverage: Supports 2 to 20 GHz operation, enabling versatile use across multiple RF bands for communication and radar systems.
- Integrated LO amplifier: Simplifies system design by reducing external component count and ensuring optimal LO drive levels for consistent mixer performance.
- Double-balanced mixer topology: Provides excellent port-to-port isolation, reducing spurious signals and improving overall signal integrity.
- Low noise figure: Enhances receiver sensitivity, critical for detecting weak signals in high-performance RF front ends.
- Compact 8-lead MSOP package: Facilitates easy PCB layout and high-density integration in constrained spaces.
- Wide operating temperature range: Ensures reliable performance in harsh environmental and industrial conditions.
- Low current consumption: Supports power-efficient designs, extending system battery life or reducing thermal management needs.
HMC270AMS8GE Advantages vs Typical Alternatives
Compared to typical mixers, this device offers a unique combination of integrated LO amplification and wide frequency range, resulting in higher conversion gain and improved sensitivity. Its low noise figure and excellent linearity enable more accurate signal processing with reduced distortion. The compact MSOP package allows for easier integration in dense circuit boards, while the robust operating temperature range enhances reliability in industrial and defense applications. These advantages make it a preferred choice over conventional discrete mixer solutions.
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Typical Applications
- Wireless communication systems requiring wideband frequency conversion and high sensitivity, such as base stations and point-to-point radios.
- Radar and electronic warfare systems demanding low noise and high linearity for improved target detection and signal clarity.
- Test and measurement equipment needing stable mixer performance across a broad frequency spectrum for accurate signal analysis.
- Satellite and aerospace communication links where compact size and temperature resilience are critical for system reliability.
HMC270AMS8GE Brand Info
The HMC270AMS8GE is a product from a leading manufacturer specializing in high-frequency MMIC solutions. Known for precision and reliability, this series of mixers integrates advanced GaAs technology to meet stringent performance demands in industrial, defense, and communication sectors. This model exemplifies the brand??s commitment to delivering compact, efficient, and high-performance frequency conversion components, backed by comprehensive technical support and quality assurance.
FAQ
What is the typical local oscillator (LO) input power required for optimal operation?
The device typically requires an LO drive level of +7 dBm to ensure proper switching of the mixer diodes and achieve the specified conversion gain and linearity. This integrated LO amplifier simplifies meeting this requirement without additional external amplification.
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Can the mixer operate reliably over extended temperature ranges?
Yes, it supports an operating temperature range from -40??C to +85??C, making it suitable




