Overview
The MAX9311ECJ is a high-performance comparator designed for precision applications. This device features a fast response time and low offset voltage, making it ideal for applications requiring high sensitivity and accuracy. As a product from a reputable IC Manufacturer, it stands out in the competitive landscape of analog components.
MAX9311ECJ Key Features
- Fast response time of up to 20 ns, ensuring quick signal processing for time-sensitive applications.
- Low input offset voltage, which enhances accuracy and minimizes error in analog signal comparisons.
- Wide power supply voltage range, allowing integration into various systems while maintaining reliability.
- Low power consumption, making this device suitable for battery-powered applications.
MAX9311ECJ Technical Specifications
| Parameter | Value | 
|---|---|
| Supply Voltage Range | 2.0V to 36V | 
| Input Offset Voltage | ??2 mV | 
| Response Time | 20 ns | 
| Power Supply Current | 1.5 mA | 
| Input Common Mode Voltage Range | 0V to Vcc – 2V | 
| Output Voltage Swing | 0V to Vcc – 1.5V | 
| Temperature Range | -40??C to +125??C | 
| Package Type | SOIC-8 | 
MAX9311ECJ Advantages vs Typical Alternatives
The MAX9311ECJ offers superior performance with its low input offset voltage and fast response time, which are critical for applications where precision is paramount. Compared to typical alternatives, this device provides enhanced reliability and efficiency, making it an excellent choice for engineers seeking optimal solutions in demanding environments.
🔥 Best-Selling Products
 - Texas Instruments BQ24075 Linear Battery Charger IC – 5mm x 4mm QFN Package
 - Texas Instruments INA219 Current Sensor Module – SOIC Package, Precision Monitoring
 - Texas Instruments LM4041 Precision Voltage Reference – SOT-23 Package
 - Texas Instruments OPA2134 Audio Op Amp – Dual, High-Performance, SOIC-8 Package
Typical Applications
- Signal conditioning in sensor applications, where precise voltage comparisons are essential for accurate readings.
- Data acquisition systems that require fast and reliable analog signal processing for real-time analysis.
- Automotive electronics, where robust performance is necessary under varying temperature conditions.
- Industrial automation systems that benefit from low power consumption while maintaining high operational efficiency.
MAX9311ECJ Brand Info
The MAX9311ECJ is a product of Maxim Integrated, a renowned company specializing in analog and mixed-signal integrated circuits. Maxim Integrated is known for delivering innovative solutions that enhance performance and efficiency across a wide range of applications.
FAQ
What are the typical applications for the MAX9311ECJ?
This device is commonly used in sensor signal conditioning, data acquisition systems, automotive electronics, and industrial automation applications, where precision and reliability are critical for performance.
🌟 Featured Products
 - “Buy MAX9312ECJ+ Precision Voltage Comparator in DIP Package for Reliable Performance”
 - QCC-711-1-MQFN48C-TR-03-1 Bluetooth Audio SoC with MQFN48C Package 
 - 0339-671-TLM-E Model – High-Performance TLM-E Package for Enhanced Functionality
 - 1-1415898-4 Connector Housing, Electrical Wire-to-Board, Receptacle, Packaged
How does the MAX9311ECJ compare to similar products?
The MAX9311ECJ typically offers lower input offset voltage and faster response times than similar products, making it preferable for applications requiring high sensitivity and accuracy.
What is the maximum supply voltage for the MAX9311ECJ?
The maximum supply voltage for this device is 36V, allowing it to be used in a wide range of applications without the risk of damage due to overvoltage conditions.
📩 Contact Us
Can the MAX9311ECJ operate in extreme temperatures?
Yes, the device can operate within a temperature range of -40??C to +125??C, making it suitable for demanding environments such as automotive and industrial applications.
What package type does the MAX9311ECJ come in?
The MAX9311ECJ is available in an SOIC-8 package, which is compact and suitable for various space-constrained applications while ensuring effective thermal management.




