HMC241AQS16E RF Mixer Balanced Double-Balanced IQ Mixer in 16-Lead QSOP Package

  • The device functions as a high-isolation RF switch, enabling efficient signal routing in complex systems.
  • It offers low insertion loss, which minimizes signal degradation and maintains signal integrity.
  • The compact LFCSP package supports board-space savings and facilitates easier integration into dense layouts.
  • Ideal for communication systems requiring fast switching to improve signal path flexibility and system performance.
  • Manufactured to meet stringent quality standards, ensuring consistent operation and long-term reliability.
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HMC241AQS16E Overview

The HMC241AQS16E is a high-performance, wideband GaAs MMIC analog multiplier designed for precision signal processing in RF and microwave applications. It operates efficiently across a broad frequency range, delivering accurate multiplication of two analog input signals with low distortion and excellent linearity. Its compact 16-lead QSOP package facilitates easy integration into complex microwave systems, making it ideal for engineers seeking reliable performance in demanding industrial and communication environments. This device balances low power consumption with high dynamic range, supporting advanced modulation and signal analysis tasks. For detailed technical data and sourcing, visit IC Manufacturer.

HMC241AQS16E Technical Specifications

Parameter Specification
Frequency Range DC to 2.0 GHz
Conversion Gain 10 dB (typical)
Input Power Range -10 dBm to +10 dBm
Third-Order Intercept Point (IP3) +25 dBm (typical)
Input Return Loss ??15 dB (typical)
Supply Voltage +5 V DC
DC Supply Current 40 mA (typical)
Package Type 16-lead QSOP
Operating Temperature Range -40??C to +85??C

HMC241AQS16E Key Features

  • Wideband Analog Multiplication: Enables precise signal multiplication from DC to 2 GHz, supporting diverse RF and microwave signal processing tasks.
  • High Third-Order Intercept Point: Provides superior linearity with an IP3 of +25 dBm, reducing signal distortion in complex modulation schemes.
  • Low Supply Current: Operates efficiently at 40 mA, optimizing power consumption for battery-powered or energy-sensitive applications.
  • Robust Package Integration: The 16-lead QSOP allows for straightforward PCB integration, ensuring reliability in compact system designs.

HMC241AQS16E Advantages vs Typical Alternatives

This analog multiplier excels compared to typical alternatives by combining a broad frequency range with high linearity and low power consumption. Its optimized GaAs MMIC technology offers enhanced sensitivity and accuracy, ensuring minimal signal distortion. The device??s compact QSOP package promotes seamless integration and reliability, making it a preferred choice for engineers demanding efficient performance in industrial and communication system designs.

Typical Applications

  • RF signal processing modules requiring accurate analog multiplication over DC to 2 GHz, such as modulators and demodulators in communication systems.
  • Frequency conversion circuits in microwave instrumentation for precise measurement and analysis.
  • Phase detector circuits in PLL and frequency synthesis applications.
  • Analog signal processing in radar and electronic warfare systems where linearity and low distortion are critical.

HMC241AQS16E Brand Info

The HMC241AQS16E is part of a specialized line of GaAs MMIC analog multipliers designed and manufactured for high-performance RF and microwave applications. This product reflects the brand??s commitment to delivering precision semiconductor solutions that address the complex demands of modern communication and industrial systems. Leveraging advanced gallium arsenide technology, the device ensures high linearity, low noise, and excellent power efficiency, supporting engineers in developing reliable and innovative signal processing modules.

FAQ

What frequency range does this analog multiplier support?

This device supports a frequency range from DC up to 2.0 GHz, making it suitable for a wide variety of RF and microwave applications where precise analog multiplication is required.

What power supply voltage is required for proper operation?

The multiplier operates at a single supply voltage of +5 V DC, which is standard for many RF integrated circuits, facilitating easy integration into existing system power rails.

How does the third-order intercept point (IP3) impact performance?

The IP3 of +25 dBm indicates excellent

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