
Analog Devices Inc.
HMC313
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HMC313 Description
HMC313 Description
The HMC313 from Analog Devices Inc. is a high-performance surface-mount RF amplifier designed for WLAN applications, operating across a broad frequency range of 0Hz to 6GHz. This compact SOT23-6 packaged IC delivers a robust 17dB gain with a 14dBm output power at 1dB compression (P1dB), making it ideal for low-noise, high-linearity signal amplification. With a noise figure of 6.5dB and a 5V supply voltage at 50mA current consumption, the HMC313 balances efficiency and performance, suitable for demanding RF systems. Compliant with ROHS3 and REACH Unaffected standards, it ensures environmental and regulatory compatibility.
HMC313 Features
- Frequency Range: 0Hz to 6GHz, covering critical WLAN and broadband RF bands.
- High Gain & Linearity: 17dB gain and 14dBm P1dB for superior signal integrity.
- Low Noise Figure: 6.5dB ensures minimal signal degradation in sensitive applications.
- Low Power Consumption: 50mA at 5V, optimizing energy efficiency.
- Compact & Robust: SOT23-6 package with MSL1 (unlimited) moisture sensitivity, ideal for automated assembly.
- Compliance: ROHS3, REACH Unaffected, and ECCN EAR99 for global deployment.
HMC313 Applications
The HMC313 excels in WLAN infrastructure, wireless communication systems, and broadband RF front-ends. Its wide bandwidth and high linearity make it perfect for:
- Wi-Fi 5/6/6E access points and routers.
- Small-cell base stations requiring low-noise amplification.
- Test & measurement equipment for signal conditioning.
- IoT and M2M communication modules demanding reliable RF performance.
Conclusion of HMC313
The HMC313 stands out as a versatile, high-gain RF amplifier with exceptional linearity and low noise, tailored for modern wireless systems. Its compact form factor, compliance, and broad frequency coverage make it a preferred choice for designers seeking reliability in WLAN and broadband applications. Analog Devices' engineering ensures consistent performance, positioning the HMC313 as a competitive solution in the RF amplifier market.



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