MAX12005ETM+T Overview
The MAX12005ETM+T is a precision, low-power, 12-bit analog-to-digital converter (ADC) designed for industrial and instrumentation applications requiring high accuracy and robust performance. Featuring a sampling rate up to 1Msps and a low input noise of 1.5LSB, this device supports single-ended and differential input configurations, enabling flexible signal acquisition. Its low power consumption combined with a compact 28-pin TSSOP package makes it ideal for space-constrained, energy-efficient designs. The integrated reference and versatile interface options simplify system implementation, delivering reliable data conversion with minimal external components. For detailed technical data and sourcing, visit IC Manufacturer.
MAX12005ETM+T Technical Specifications
| Parameter | Specification |
|---|---|
| Resolution | 12 bits |
| Maximum Sampling Rate | 1Msps (Mega samples per second) |
| Input Voltage Range | 0V to VDD (single-ended), ??VREF (differential) |
| Power Supply Voltage | 2.7V to 5.5V |
| Power Consumption | 2.5mW at 1Msps (typical) |
| Input Type | Single-ended/differential |
| Package | 28-pin TSSOP |
| Signal-to-Noise Ratio (SNR) | 71dB (typical) |
| Integral Nonlinearity (INL) | ??1LSB (max) |
| Interface | SPI-compatible serial interface |
MAX12005ETM+T Key Features
- High-Speed 12-Bit ADC Performance: Enables rapid and precise signal conversion at up to 1Msps, facilitating real-time data processing in demanding industrial environments.
- Low Power Consumption: Operates at approximately 2.5mW, extending battery life and reducing system thermal load in portable and embedded applications.
- Flexible Input Configuration: Supports both single-ended and differential inputs, allowing compatibility with a broad range of sensor types and signal sources.
- Integrated Reference Voltage: Built-in voltage reference eliminates the need for external components, simplifying board layout and improving overall system accuracy.
- SPI-Compatible Interface: Provides seamless integration with microcontrollers and DSPs, accelerating development time and reducing communication complexity.
- Compact 28-Pin TSSOP Package: Enables high-density PCB designs, ideal for space-constrained industrial and instrumentation devices.
MAX12005ETM+T Advantages vs Typical Alternatives
This converter offers superior accuracy and speed compared to standard ADCs, while maintaining low power requirements. Its integrated reference and flexible input modes reduce external component count and system complexity. Unlike many alternatives, it delivers consistent performance over a wide supply voltage range, enhancing reliability in industrial conditions. The compact TSSOP package also supports efficient thermal management and integration in space-limited applications.
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Typical Applications
- Industrial data acquisition systems requiring fast, accurate digitization of analog signals for process monitoring and control.
- Sensor signal conditioning in portable instrumentation where low power and precision are critical.
- Embedded systems and microcontroller-based designs needing a high-speed, SPI-compatible ADC interface.
- Medical and scientific measurement equipment where compact size and reliable performance are essential.
MAX12005ETM+T Brand Info
The MAX12005ETM+T is a product from a leading semiconductor manufacturer specializing in high-performance mixed-signal ICs. This device exemplifies the brand??s commitment to delivering precision analog-to-digital conversion solutions tailored for industrial and instrumentation markets. Known for quality, reliability, and innovative integration, the brand provides comprehensive datasheets and application support to ensure successful system implementation.
FAQ
What input signal types does the MAX12005ETM+T support?
This ADC supports both single-ended and differential input configurations. Single-ended inputs measure voltage relative to ground, while differential inputs measure the voltage difference between two input pins, allowing for improved noise rejection in noisy environments.
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What is the typical power consumption at maximum sampling rate?
The device





