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LTC1286 Datasheet

LTC1286 Datasheet

Micropower Sampling 12-Bit A/D Converters In S0-8 Packages
Part No.: LTC1286
Page: 24 Pages
Size: 273 KB
Manufacturer: Linear Technology
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Views: 4
Update Time: 2024-05-05 16:13:11
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LTC1286 Datasheet Applicable Part

Part No. Packing SPQ Marking MSL Pins Temp Range Package Description Buy
LTC1286CN8#PBF Tube 50   1 8 0°C ~70°C 8-Lead PDIP  
LTC1286IN8#PBF Tube 50   1 8 -40°C ~85°C 8-Lead PDIP  
LTC1286CS8#PBF Tube 100 1286 1 8 0°C ~70°C 8-Lead SOIC  
LTC1286CS8#TRPBF Reel 2500 1286 1 8 0°C ~70°C 8-Lead SOIC  
LTC1286CS8#TRMPBF Reel 500 1286 1 8 0°C ~70°C 8-Lead SOIC  
LTC1286IS8#PBF Tube 100 1286I 1 8 -40°C ~85°C 8-Lead SOIC  
LTC1286IS8#TRPBF Reel 2500 1286I 1 8 -40°C ~85°C 8-Lead SOIC  
LTC1286IS8#TRMPBF Reel 500 1286I 1 8 -40°C ~85°C 8-Lead SOIC  
SPQ:Standard Pack Quantity;MSL:Moisture Sensitivity Level

LTC1286 Datasheet(PDF)

LTC1286 Datasheet(Picture)

LTC1286 Features

  • 12-Bit Resolution
  • 8-Pin SOIC Plastic Package
  • Low Cost
  • Low Supply Current: 250µA Typ.
  • Auto Shutdown to 1nA Typ.
  • Guaranteed ±3/4LSB Max DNL
  • Single Supply 5V to 9V Operation
  • On-Chip Sample-and-Hold
  • 60µs Conversion Time
  • Sampling Rates:
    • 12.5 ksps (LTC1286)
  • I/O Compatible with SPI, Microwire, etc.
  • Differential Inputs (LTC1286)
  • 3V Versions Available: LTC1285/LTC1288

LTC1286 Applications

  • Battery-Operated Systems
  • Remote Data Acquisition
  • Battery Monitoring
  • Handheld Terminal Interface
  • Temperature Measurement
  • Isolated Data Acquisition

LTC1286 Description

The LTC1286 are micropower, 12-bit, successive approximation sampling A/D converters. They typically draw only 250µA of supply current when converting and automatically power down to a typical supply current of 1nA whenever they are not performing conversions. They are packaged in 8-pin SO packages and operate on 5V to 9V supplies. These 12-bit, switched-capacitor, successive approximation ADCs include sample-and-holds. The LTC1286 has a single differential analog input.

On-chip serial ports allow efficient data transfer to a wide range of microprocessors and microcontrollers over three wires. This, coupled with micropower consumption, makes remote location possible and facilitates transmitting data through isolation barriers.

These circuits can be used in ratiometric applications or with an external reference. The high impedance analog inputs and the ability to operate with reduced spans (to 1.5V full scale) allow direct connection to sensors and transducers in many applications, eliminating the need for gain stages.

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