LTC2453
PRODUCTIONUltra-Tiny, Differential, 16-Bit ∆Σ ADC With I2C Interface
- Part Models
- 8
- 1ku List Price
- Starting From $1.53
Part Details
- ±VCC Differential Input Range
- 16-Bit Resolution (Including Sign), No Missing Codes
- 2LSB Offset Error
- 4LSB Full-Scale Error
- 60 Conversions Per Second
- Single Conversion Settling Time for Multiplexed Applications
- Single-Cycle Operation with Auto Shutdown
- 800μA Supply Current
- 0.2μA Sleep Current
- Internal Oscillator—No External Components Required
- 2-Wire I2C Interface
- Ultra-Tiny 8-Pin 3mm × 2mm DFN and TSOT23 Packages
The LTC2453 is an ultra-tiny, fully differential, 16-bit, analog-to-digital converter. The LTC2453 uses a single 2.7V to 5.5V supply and communicates through an I2C interface. The ADC is available in an 8-pin, 3mm × 2mm DFN package or 8-pin, 3mm × 3mm TSOT package. It includes an integrated oscillator that does not require any external components. It uses a delta-sigma modulator as a converter core and has no latency for multiplexed applications. The LTC2453 includes a proprietary input sampling scheme that reduces the average input sampling current several orders of magnitude lower than conventional delta-sigma converters. Additionally, due to its architecture, there is negligible current leakage between the input pins.
The LTC2453 can sample at 60 conversions per second, and due to the very large oversampling ratio, has extremely relaxed antialiasing requirements. The LTC2453 includes continuous internal offset and full-scale calibration algorithms which are transparent to the user, ensuring accuracy over time and over the operating temperature range. The converter has external REF+ and REF– pins and the differential input voltage range can extend up to ±(VREF+ – VREF–).
Following a single conversion, the LTC2453 can automatically enter a sleep mode and reduce its power to less than 0.2μA. If the user reads the ADC once a second, the LTC2453 consumes an average of less than 50μW from a 2.7V supply.
Applications
- System Monitoring
- Environmental Monitoring
- Direct Temperature Measurements
- Instrumentation
- Industrial Process Control
- Data Acquisition
- Embedded ADC Upgrades
Documentation
Data Sheet 1
Reliability Data 1
User Guide 1
Design Note 1
Product Selector Card 2
ADI has always placed the highest emphasis on delivering products that meet the maximum levels of quality and reliability. We achieve this by incorporating quality and reliability checks in every scope of product and process design, and in the manufacturing process as well. "Zero defects" for shipped products is always our goal. View our quality and reliability program and certifications for more information.
Part Model | Pin/Package Drawing | Documentation | CAD Symbols, Footprints, and 3D Models |
---|---|---|---|
LTC2453CDDB#TRMPBF | 8-Lead DFN (3mm x 2mm w/ EP) | ||
LTC2453CDDB#TRPBF | 8-Lead DFN (3mm x 2mm w/ EP) | ||
LTC2453CTS8#TRMPBF | 8-Lead SOT-23 | ||
LTC2453CTS8#TRPBF | 8-Lead SOT-23 | ||
LTC2453IDDB#TRMPBF | 8-Lead DFN (3mm x 2mm w/ EP) | ||
LTC2453IDDB#TRPBF | 8-Lead DFN (3mm x 2mm w/ EP) | ||
LTC2453ITS8#TRMPBF | 8-Lead SOT-23 | ||
LTC2453ITS8#TRPBF | 8-Lead SOT-23 |
This is the most up-to-date revision of the Data Sheet.
Hardware Ecosystem
Parts | Product Life Cycle | Description |
---|---|---|
Current Sense Amplifiers 1 | ||
LTC2990 | RECOMMENDED FOR NEW DESIGNS | Quad I2C Voltage, Current and Temperature Monitor |
I²C Isolators 1 | ||
LTM2883 | PRODUCTION | SPI/Digital or I2C μModule Isolator with Adjustable ±12.5V and 5V Regulated Power |
Serial Bus Buffers, Extenders, and Accelerators 1 | ||
LTC4317 | PRODUCTION | Dual I2C/SMBus Address Translator |
Series Voltage References 1 | ||
LT6660 | PRODUCTION | Tiny Micropower Precision Series References in 2mm × 2mm DFN |
Single-Supply Monitors 1 | ||
LTC2934 | PRODUCTION | Ultra-Low Power Adjustable Supervisor with Power-Fail Output |
Tools & Simulations
Linduino 3
Linduino is Analog Devices’ Arduino compatible system for developing and distributing firmware libraries and example code for our integrated circuits. Each Linduino-supported product includes an example main program, defined in the LTSketchbook/Part Number folder and driver code, defined in the LTSketchbook/libraries folder.
Linduino code repository on GitHub and instructions on how to use the code.