MX34036PF2 Overview
The MX34036PF2 is a high-performance, precision analog-to-digital converter (ADC) designed to meet the demanding requirements of industrial and instrumentation applications. This device offers a robust 16-bit resolution with an excellent signal-to-noise ratio, ensuring accurate data capture in noisy environments. Its low power consumption combined with a compact package makes it ideal for integration into space-constrained systems. The MX34036PF2 supports a wide input voltage range and features a fast sampling rate, delivering reliable, high-speed digital conversion for real-time processing. For detailed specifications and purchasing options, visit the IC Manufacturer.
MX34036PF2 Technical Specifications
| Parameter | Specification |
|---|---|
| Resolution | 16 bits |
| Sampling Rate | 500 kSPS (kilo-samples per second) |
| Input Voltage Range | ??10 V differential input |
| Power Supply | +5 V single supply |
| Signal-to-Noise Ratio (SNR) | 90 dB typical |
| Total Harmonic Distortion (THD) | -95 dB |
| Interface | SPI-compatible serial interface |
| Package Type | 48-pin LQFP |
| Power Consumption | 60 mW typical |
MX34036PF2 Key Features
- High-resolution 16-bit ADC: Enables precise analog signal conversion for accurate measurement and control systems.
- Fast 500 kSPS sampling rate: Supports real-time data acquisition for dynamic sensing and monitoring applications.
- Wide ??10 V input range: Accommodates a variety of sensor outputs without external signal conditioning, simplifying system design.
- Low power consumption: Minimizes thermal impact and extends operational life in battery-powered or energy-sensitive devices.
- SPI-compatible interface: Facilitates easy integration with microcontrollers and DSPs, enhancing system flexibility.
- Robust LQFP package: Provides reliable mounting and thermal management suited for industrial environments.
- Excellent noise and distortion performance: Ensures clean signal conversion critical for high-fidelity measurement tasks.
MX34036PF2 Advantages vs Typical Alternatives
The device stands out by combining a high 16-bit resolution with a fast 500 kSPS sampling rate, surpassing many conventional ADCs that trade speed for accuracy. Its wide input voltage range reduces the need for external signal conditioning components, enhancing integration efficiency. Furthermore, the low power consumption and robust package improve reliability and reduce thermal stress, making it advantageous for industrial and instrumentation use cases demanding both precision and durability.
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Typical Applications
- Precision industrial instrumentation requiring high-resolution data acquisition, such as process control and sensor signal conditioning in harsh environments.
- Medical equipment where accurate analog signal digitization is critical for diagnostics and monitoring systems.
- Data acquisition systems in laboratory and test equipment demanding fast and precise analog-to-digital conversion.
- Embedded systems in automation and control applications benefiting from low power consumption and compact packaging.
MX34036PF2 Brand Info
The MX34036PF2 is a flagship ADC product from a leading semiconductor manufacturer specializing in analog and mixed-signal ICs. Designed to deliver high accuracy and speed in a compact form, this product aligns with the brand??s commitment to quality, reliability, and innovation for industrial and instrumentation markets. It reflects the manufacturer’s expertise in providing solutions that address complex measurement challenges while maintaining ease of integration and operational efficiency.
FAQ
What is the maximum sampling rate supported by the MX34036PF2?
The MX34036PF2 supports a maximum sampling rate of 500 kilo-samples per second (kSPS), enabling high-speed analog-to-digital conversion for applications requiring rapid data acquisition and real-time processing.
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What type of input voltage range does this ADC support?
This device supports a wide differential input voltage range of ??10 volts, allowing it to interface directly with a variety of sensor outputs without the need for additional signal conditioning circuits.
How does the power consumption of this ADC affect system design?
With a typical power consumption




