HMC591LP5E Allicdata Electronics
Allicdata Part #:

1127-1810-ND

Manufacturer Part#:

HMC591LP5E

Price: $ 47.57
Product Category:

RF/IF and RFID

Manufacturer: Analog Devices Inc.
Short Description: IC PWR AMP MMIC PHEMT 2W 32QFN
More Detail: RF Amplifier IC General Purpose 6GHz ~ 9.5GHz 32-Q...
DataSheet: HMC591LP5E datasheetHMC591LP5E Datasheet/PDF
Quantity: 203
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Moisture Sensitivity Level (MSL): 1 (Unlimited)
1 +: $ 43.24320
10 +: $ 41.08100
Stock 203Can Ship Immediately
$ 47.57
Specifications
Series: --
Packaging: Cut Strip
Lead Free Status / RoHS Status: --
Part Status: Active
Moisture Sensitivity Level (MSL): --
Frequency: 6GHz ~ 9.5GHz
P1dB: 33dBm
Gain: 19dB
Noise Figure: --
RF Type: General Purpose
Voltage - Supply: 6.5 V ~ 7.5 V
Current - Supply: 1.34A
Test Frequency: --
Package / Case: 32-VFQFN Exposed Pad
Supplier Device Package: 32-QFN (5x5)
Description

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RF Amplifiers are electronic components that generate radio frequency (RF) signals from an input signal. The HMC591LP5E is a Gallium Arsenide (GaAs) RF Amplifier IC by Skyworks Solutions, Inc. This device operates from a single +3.3V supply, making it ideal for battery-operated or distributed power applications. The HMC591LP5E features a high linearity, low noise, and exceptional gain flatness over a wide frequency range.

The HMC591LP5E operates in a variety of applications, including but not limited to: wireless communication links, LANs and wireless local area networks, wideband amplifiers, cable television systems, and land mobile systems. Through its differential SiGe input stages, the device provides low noise and high linearity. Additionally, the HMC591LP5E is capable of operating up to 5GHz. This enables the device to provide excellent performance in a variety of RF applications.

The HMC591LP5E is a versatile amplifier which can be used in a variety of applications, such as land mobile, cable TV systems, and wideband amplifiers. In land mobile applications, the device provides excellent linearity and noise performance which helps to improve signal quality and reduce interference. In cable television systems, the HMC591LP5E helps to improve signal performance and reduce ingress noise. As a wideband amplifier, the device offers excellent gain flatness and low noise, which is useful for high-sensitivity applications such as medical imaging.

The HMC591LP5E features an RF input stage optimized to meet the needs of wireless communication links and LANs. Its low noise input stage provides improved signal-to-noise ratio and reduces interference. Additionally, the device features a differential SiGe transistor for low distortion. The HMC591LP5E also features an EMI filter and dual I/Os in order to minimize EMI emissions. The device has an excellent thermal, electrical, and mechanical robustness making it suitable for harsh environments.

The working principle of the HMC591LP5E is based upon the concept of negative feedback. It consists of a differential input stage, followed by an output stage with a fixed gain. The differential input stage consists of a differential amplifier, and a switching transistor. When a signal is present, the transistor is switched on, and the differential amplifier amplifies the signal. The output stage then amplifies this signal with a fixed gain. The differential amplifier also applies negative feedback to the output stage in order to improve linearity and reduce distortion.

Overall, the HMC591LP5E is an ideal device for a variety of RF applications. With its low noise, high linearity, wide frequency range, and EMI filter, this device is especially suited for use in wireless communication links, LANs and wireless local area networks, wideband amplifiers, cable television systems, and land mobile systems. Additionally, this component has excellent thermal, electrical, and mechanical robustness and is capable of operating up to 5GHz, which make it an ideal choice for high-sensitivity applications.

The specific data is subject to PDF, and the above content is for reference

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