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ADI HMC1010LP4ETR product image
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ADI HMC1010LP4ETRRoHS

Manufacturer
MPN
HMC1010LP4ETR
LCSC Part #
C662188
Packaging
QFN-24-EP(4x4)
Customer #
Key Attributes
RMS Power Detector DC - 3.9GHz
Datasheetpdf iconADI HMC1010LP4ETR

Products Specifications

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TypeDescription
CategoryRF and Wireless/RF Detectors
ManufacturerADI
PackagingQFN-24-EP(4x4)
Accuracy±1dB
Input Range-50dBm~10dBm

Additional Information

TypeDetails
Minimum1
Multiple1
Standard Packaging500
Sales UnitPiece

Introduction

AI Translation

The HMC1010LP4E Power Detector is designed for RF power measurement, and control applications for frequencies up to 3.9 GHz. The detector provides an accurate RMS representation of any RF/IF input signal. The output is a temperature compensated monotonic, representation of real signal power, measured with an input sensing range of 60 dB. The HMC1010LP4E is ideally suited to those wide bandwidth, wide dynamic range applications, requiring repeatable measurement of real signal power, especially where RF/IF wave shape and/or crest factor change with time. The integration bandwidth of the HMC1010LP4E is digitally programmable with the use of input pins SCI1 - 4 with a range of more than 4 decades. This allows the user to dynamically set the operation bandwidth providing the capability of handling different types of modulations on the same platform. The HMC1010LP4E features an internal OP - AMP at output stage, which provides for slope & intercept adjustments and enables controller application.

Features

AI Translation
  • ±1 dB Detection Accuracy to 3.9 GHz
  • Input Dynamic Range: -50 dBm to +10 dBm
  • RF Signal Wave shape & Crest Factor Independent
  • Digitally Programmable Integration Bandwidth
  • +5V Operation from -40°C to +85°C
  • Excellent Temperature Stability
  • Power - Down Mode
  • 24 Lead 4x4mm SMT Package: 16mm²

Applications

AI Translation
  • Log -> Root - Mean - Square (RMS) Conversion
  • Received Signal Strength Indication (RSSI)
  • Transmitter Signal Strength Indication (TSSI)
  • RF Power Amplifier Efficiency Control
  • Receiver Automatic Gain Control
  • Transmitter Power Control
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