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XBLW CD4093BDTR(XBLW) product image
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XBLW CD4093BDTR(XBLW)RoHS

Manufacturer
XBLWAsian Brands
MPN
CD4093BDTR(XBLW)
LCSC Part #
C41361405
Packaging
SOP-14
Customer #
Key Attributes
Quad 2-input Nand Schmitt Gate
Datasheetpdf iconXBLW CD4093BDTR(XBLW)
In-Stock: 3,190
3,190 In stock, ships now
Add to BOM List
QtyUnit PriceTotal Amount
5+$ 0.1606$ 0.1526$ 0.76
50+$ 0.1254$ 0.1192$ 5.96
150+$ 0.1103$ 0.1048$ 15.72
500+$ 0.0915$ 0.0870$ 43.50
2,500+$ 0.0831$ 0.0790$ 197.50
5,000+$ 0.0781$ 0.0742$ 371.00
Standard Packaging2500/Full Reel
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Products Specifications

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TypeDescription
CategoryIntegrated Circuits (ICs)/Logic/Gates and Inverters
ManufacturerXBLW
PackagingSOP-14
Input Logic Level - High-
Input Logic Level - Low-
Features-
Logic FamilyCD4
Operating Temperature-40℃~+125℃
Output Logic Level - High4.95V~5V;9.95V~10V;14.95V~15V
Quiescent Current(Iq)-
Voltage - Supply3V~15V
Current - Output High(IOH)6.8mA
Number of Channels4;2
Output Logic Level - Low0V~50mV
Propagation Delay100ns@5V,50pF;60ns@10V,50pF;50ns@15V,50pF
Current - Output Low(IOL)6.8mA

Additional Information

TypeDetails
Minimum5
Multiple5
Standard Packaging2500
Sales UnitPiece

Introduction

AI Translation

The CD4093 is a quad two- input NAND gate. Each input has a Schmitt trigger circuit. The gate switches at different points for positive- going and negative- going signals. The difference between the positive voltage (VT+) and the negative voltage (VT-) is defined as hysteresis voltage (VH) It operates over a recommended VDD power supply range of 3V to 15V referenced to VSS (usually ground). Unused inputs must be connected to VDD, VSS, or another input.

Features

AI Translation
  • Wide supply voltage range from 3V to 15V
  • Schmitt trigger input discrimination
  • Fully static operation
  • 5V, 10V, and 15V parametric ratings
  • Standardized symmetrical output characteristics
  • Specified from -40℃ to +125℃
  • Packaging information: DIP14/SOP14/TSSOP14

Applications

AI Translation
  • Wave and pulse shapers
  • High-noise-environment systems
  • Monostable multivibrators
  • Astable multivibrators
  • NAND logic