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MCP3304-BI/P Datasheet

Part Manufacturer Description PDF Type
MCP3304-BI/P Microchip Technology Data Acquisition - Analog to Digital Converters (ADC), Integrated Circuits (ICs), IC ADC 13BIT 2.7V 4CH SPI 16DIP Original
MCP3304BI/P Microchip Technology 13-Bit Differential Input, Low Power A/D Converter with SPI Serial Interface Original
MCP3304-BI/P Microchip Technology 13 Bit Differential Input, Low Power A/D Converter with SPI Serial Interface Original

MCP3304-BI/P

Catalog Datasheet MFG & Type PDF Document Tags

MCP3302

Abstract: 0725n ) MCP3302-BI/SN ±1 LSB INL SOIC c) MCP3302-CI/ST±2 LSB INL TSSOP a) MCP3304-BI/P ±1 LSB INL , LSB 1 100% 2 VREF 3 VIN = 0.1V 4.9V @ 1 kHz 4 VDD =5VP-P ± 500 mV @ 1 kHz 3-3 5 6 , 1 100% 2 VREF 3 VIN = 0.1V 4.9V @ 1 kHz 4 VDD =5VP-P ± 500 mV @ 1 kHz 3-3 5 6 VREF = 400 , 5.0V 1 100% 2 VREF 3 VIN = 0.1V 4.9V @ 1 kHz 4 VDD =5VP-P ± 500 mV @ 1 kHz 3-3 , 3.0 1/2 MCP602 1 k + MCP330X 1.4V 3k DOUT - 20 k 5VP-P 2.63V 1 k
Microchip Technology
Original
MCP3302 MCP3304 0725n 33-02c 00014095 14L-PDIP MCP3302/04 MCP33022 MCP33044 MCP3302/04-B
Abstract: to +85°C 14 and 16-pin PDIP, SOIC, and TSSOP packages Mixed Signal PICtailâ"¢ Demo Board (P/N , pF 0.1 µF 0.1 µF 5VP-P Test Point VDD = 5V VREFVDD MCP330X IN(-) VSS 5VP-P Load Circuit for TR, TF, TDO. FIGURE 1-2: VCM = 2.5V Test Point MCP330X VDD VDD/2 , Voltage Waveforms for TDIS 5VP-P VIH CS IN(+) IN(-) DOUT Waveform 1* VREF VDD MCP330X , DUT 5VP-P 1 k FIGURE 1-4: Power Supply Sensitivity Test Circuit (PSRR). DS21697F-page 6 Microchip Technology
Original
MCP3302/04-C DS21697F-

MCP3302

Abstract: MCP330X that relate converter performance to VREF level. VIN = 0.1V to 4.9V @ 1 kHz. VDD =5VP-P ±500 mV @ 1 , characterization graphs that relate converter performance to VREF level. VIN = 0.1V to 4.9V @ 1 kHz. VDD =5VP-P , 0.1 µF 0.1 µF 5VP-P Test Point VREFVDD MCP330X IN(-) 5VP-P FIGURE 1-2: VDD = 5V , TDIS 5VP-P VIH CS IN(+) IN(-) DOUT Waveform 1* 90% TDIS VREF VDD MCP330X VSS , 1 k + 20 k 2.63V - 5V ±500 mVP-P 1 k To VDD on DUT 5VP-P 1 k FIGURE 1-4
Microchip Technology
Original
DS21697E-

TLO 64 Op Amp

Abstract: 14L-PDIP characterization graphs that relate converter performance to VREF level. VIN = 0.1V to 4.9V @ 1 kHz. VDD =5VP-P , characterization graphs that relate converter performance to VREF level. VIN = 0.1V to 4.9V @ 1 kHz. VDD =5VP-P , converter performance to VREF level. VIN = 0.1V to 4.9V @ 1 kHz. VDD =5VP-P ±500 mV @ 1 kHz, see test , . Test Point 5VP-P 0.1 µF 0.1 µF 5VP-P CL = 100 pF VDD = 5V VREF VDD MCP330X VSS , VDD = 5V 1µF 0.1µF Voltage Waveforms for TDIS 0.1µF VIH CS 5VP-P DOUT Waveform
Microchip Technology
Original
TLO 64 Op Amp DS21697D-

mcp3304

Abstract: PICtailTM Demo Board (P/N: MXSIGDM) compatible General Description The MCP3302/04 13-bit A/D converter , 5VP-P IN(+) CL = 100 pF 5VP-P IN(-) 1 µF 0.1 µF VDD = 5V 0.1 µF MCP330X VREFVDD VSS FIGURE , Waveform 1* TDIS DOUT Waveform 2 10% VIH 90% 5VP-P IN(+) IN(-) MCP330X VREF VDD VSS VCM = 2.5V , 5V ±500 mVP-P 5VP-P 1 k FIGURE 1-4: Power Supply Sensitivity Test Circuit (PSRR). , ) XXXXXXXXXXXXXX XXXXXXXXXXXXXX YYWWNNN Example: MCP3302-B I/P^^ e3 1112256 14-Lead SOIC (150 mil) Example
Microchip Technology
Original

MCP1525

Abstract: 3302C characterization graphs that relate converter performance to VREF level. VIN = 0.1V to 4.9V @ 1 kHz. VDD =5VP-P , that relate converter performance to VREF level. VIN = 0.1V to 4.9V @ 1 kHz. VDD =5VP-P ±500 mV @ 1 , to 4.9V @ 1 kHz. VDD =5VP-P ±500 mV @ 1 kHz, see test circuit Figure 3-3. Maximum clock frequency , 20 k Test Point 5VP-P 2.63V 1 k CL = 100 pF Load Circuit for TR, TF, TDO. FIGURE , Waveform 2 TEN Waveform IN(+) IN(-) 5VP-P 0.1 µF 0.1 µF 5VP-P TDIS Waveform 1 VSS
Microchip Technology
Original
MCP1525 3302C 11F-3 DK-2750 D-81739 DS21697B-

MCP3302

Abstract: 14L-PDIP characterization graphs that relate converter performance to VREF level. VIN = 0.1V to 4.9V @ 1 kHz. VDD =5VP-P , that relate converter performance to VREF level. VIN = 0.1V to 4.9V @ 1 kHz. VDD =5VP-P ±500 mV @ 1 , to 4.9V @ 1 kHz. VDD =5VP-P ±500 mV @ 1 kHz, see test circuit Figure 3-3. Maximum clock frequency , Test Point 5VP-P 2.63V 1 k CL = 100 pF Load Circuit for TR, TF, TDO. FIGURE 3-1 , TEN Waveform IN(+) IN(-) 5VP-P 0.1 µF 0.1 µF 5VP-P TDIS Waveform 1 VSS VDD = 5V
Microchip Technology
Original

16L-SOIC

Abstract: 14L-PDIP to 4.9V @ 1 kHz. VDD =5VP-P ±500 mV @ 1 kHz, see test circuit Figure 3-3. Maximum clock frequency , that relate converter performance to VREF level. VIN = 0.1V to 4.9V @ 1 kHz. VDD =5VP-P ±500 mV @ 1 , @ 1 kHz. VDD =5VP-P ±500 mV @ 1 kHz, see test circuit Figure 3-3. Maximum clock frequency , 5VP-P 2.63V 1 k CL = 100 pF FIGURE 3-1: Load Circuit for TR, TF, TDO. FIGURE 3-3 , IN(+) IN(-) 5VP-P 0.1 µF 0.1 µF 5VP-P TDIS Waveform 1 VSS VDD = 5V VREF VDD
Microchip Technology
Original
16L-SOIC DS21697C-

Arduino Mega2560

Abstract: 13001 S 6D TRANSISTOR -BIT INSTRUCTIONS Program Memory Mfg. Part No. PIC12F508-E/P PIC12F508-E/SN PIC12F508-I/MC PIC12F508-I/MS PIC12F508-I/P PIC12F508-I/SN PIC12F510-I/MC PIC12F510-I/MS PIC12F510-I/P PIC12F510-I/SN PIC12F509-E/P PIC12F509-E/SN PIC12F509-I/MC PIC12F509-I/MS PIC12F509-I/P PIC12F509-I/SN PIC12F510-E/P PIC12F510-E/SN PIC12F519-I/MS PIC12F519-I/P PIC12F519-I/SN PIC12F609-I/P PIC12F609-I/SN PIC12F609-I/MS PIC12F615-I/MF PIC12F615-E/SN PIC12F615-I/P PIC12F615-I/SN PIC12F629-E/SN PIC12F629-I/P PIC12F629-I/SN PIC12F629T-E/SN
Element14 Catalog
Original
Arduino Mega2560 13001 S 6D TRANSISTOR arduino uno rev 3 agilent optical encoder 9988 MZ 13001 TRANSISTOR arduino mega 2650 CY8C38 CY8C29 A000046 A000047 A000005 A000010