LCSC Electronics logoLCSC Electronics svg logo
Sign In
USD
TI ADC0820CCWM/NOPB product image
  • ADC0820CCWM/NOPB thumbnail 1
  • ADC0820CCWM/NOPB thumbnail 2
  • ADC0820CCWM/NOPB thumbnail 3
  • Pinout
  • Footprint
Images for reference only

TI ADC0820CCWM/NOPB

Manufacturer
MPN
ADC0820CCWM/NOPB
LCSC Part #
C206209
Packaging
SOIC-20-300mil
Customer #
Key Attributes
4.5V~8V SOIC-20-300mil Analog to Digital Converters (ADC) RoHS
DatasheetTI ADC0820CCWM/NOPB
RoHS Compliance1 documents available
Every Order Guarantee
100% Authentic · 30-Day Return or Replacement
Out of Stock
Notify Me
Minimum: 1Multiple: 1Sales Unit: Piece
Add to BOM List
QtyUnit Price(Reference Only)Total Amount
1+$ 5.9902$ 5.99
10+$ 5.8258$ 58.26
30+$ 5.7161$ 171.48
100+$ 5.6064$ 560.64
Standard Packaging36/Full Tube
Better price for more quantity?
$

Products Specifications

All
TypeDescription
CategoryIntegrated Circuits (ICs)/Data Acquisition/Analog to Digital Converters (ADC)
ManufacturerTI
PackagingSOIC-20-300mil
Operating Temperature0℃~+70℃
Interface-
Quiescent Current (Iq)-
Voltage - Supply4.5V~8V
Number of Channels1
Integral non - linearity-
Voltage ReferenceExternal
Clock/OscillatorBuilt-in
Clock Frequency-
FeaturesInput buffer
Resolution(Bits)8;-
S/N Ratio-
DNL (LSB)-
ADC architectureFlash
Programmable Gain-

Introduction

AI Translation

By employing half-flash conversion technology, the 8-bit ADC0820-N CMOS A/D converter delivers a conversion time of 1.5 µs with only 75 mW power consumption. The half-flash conversion technique consists of 32 comparators, a most-significant 4-bit ADC, and a least-significant 4-bit ADC.

The ADC0820-N input is tracked and held by an input sampling circuit, eliminating the need for an external sample-and-hold circuit for signals with slew rates below 100 mV/µs.

To simplify microprocessor interfacing, the ADC0820-N is designed to operate as a memory location or I/O port without external interface logic.

Applications

AI Translation
  • Microprocessor interface
  • Standalone operation
  • Signal sample and hold
  • Analog signal conversion
  • Digital interface modes (RD mode and WR-RD mode)
  • Data output (TRI-STATE data output)
  • Overflow output (for cascading multiple devices to increase resolution)