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ADI HMC910LC4BTR-R5 product image
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ADI HMC910LC4BTR-R5RoHS

Manufacturer
MPN
HMC910LC4BTR-R5
LCSC Part #
C662794
Packaging
CSMT-24(4x4)
Customer #
Key Attributes
3V~3.6V 0ps~70ps CSMT-24(4x4) Delay Lines RoHS
Datasheetpdf iconADI HMC910LC4BTR-R5

Products Specifications

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TypeDescription
CategoryPassives/Inductors, Coils, Chokes/Delay Lines
ManufacturerADI
PackagingCSMT-24(4x4)
Voltage - Supply3V~3.6V
Operating Temperature-40℃~+70℃
Available Total Delays0ps~70ps

Additional Information

TypeDetails
Minimum1
Multiple1
Standard Packaging500
Sales UnitPiece

Introduction

AI Translation

The HMC910LC4B is a broadband time delay with 0 to 70 ps continuously adjustable delay range. The delay control is linearly monotonic with respect to the control voltage, VDC and the control input has a modulation bandwidth of 10 MHz. The device provides a differential output voltage with constant amplitude for single-ended or differential input voltages above the input sensitivity level, while the output voltage swing may be adjusted using the VAC control pin. The HMC910LC4B features internal temperature compensation and bias circuitry to minimize delay variations with temperature. The device also features an enable pin, ENB. All RF input and outputs of the HMC910LC4B are internally terminated with 50 Ohms to Vcc, and may either be AC or DC coupled. Output pins can be connected directly to a 50 Ohm to Vcc terminated system, while DC blocking capacitors must be used if the terminated system input is 50 Ohms to a DC voltage other than Vcc.

Features

AI Translation
  • Very Wide Bandwidth: DC - 24 GHz
  • Continuous Adjustable Delay Range: 70 ps
  • Single-Ended or Differential Operation
  • Adjustable Differential Output Voltage Swing: 170 - 760 mVp-p @ 24 GHz
  • Delay Control Modulation Bandwidth: 10 MHz
  • Single Supply: +3.3V
  • 24 Lead Ceramic 4x4mm SMT Package: 16mm²

Applications

AI Translation
  • Synchronization of clock and data
  • Transponder design
  • Serial Data Transmission up to 32 Gbps
  • Broadband Test & Measurement
  • RF ATE Applications
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