Manufacturer Part Number
MAX9201EUE+T
Manufacturer
Analog Devices
Introduction
The MAX9201EUE+T is a general-purpose linear comparator from Analog Devices, designed for optimal performance in various applications where rapid signal comparison is required.
Product Features and Performance
General-purpose comparator with 4 elements
TTL output type for easy interfacing
Dual voltage supply capabilities (4.75V to 10.5V, ±2.375V to ±5.75V)
Input offset voltage maximum of 4mV at ±5V
Input bias current maximum of 5µA at ±5V
Low quiescent current (7mA, 5mA, 3mA options)
High common-mode rejection ratio and power supply rejection ratio of 86.02dB
Operating temperature range of -40°C to 85°C
Product Advantages
Multiple elements for complex signal handling
High precision with low input offset and bias current
Very good noise immunity due to high CMRR and PSRR
Robust temperature performance for a wide range of environments
Key Technical Parameters
Type: General Purpose
Output Type: TTL
Voltage Supply, Single/Dual: 4.75V ~ 10.5V, ±2.375V ~ 5.75V
Voltage Input Offset (Max): 4mV @ ±5V
Current Input Bias (Max): 5µA @ ±5V
Quiescent Current (Max): 7mA, 5mA, 3mA
CMRR, PSRR (Typ): 86.02dB
Operating Temperature: -40°C ~ 85°C
Quality and Safety Features
Rigorous testing to ensure high reliability and functionality under diverse conditions
Compliant with industry standards for quality and safety
Compatibility
Compatible with TTL output systems and a wide range of dual power supplies
Application Areas
Signal processing
Data systems
Sensing applications
Timers and delays in electronic circuits
Product Lifecycle
Product status: Active
High availability with ongoing manufacturer support
No mention of discontinuation, ensuring long-term usability
Several Key Reasons to Choose This Product
Highly precise voltage comparison capability
Low power consumption making it ideal for portable devices
Exceptional noise rejection enhances system reliability
Supports a broad operating temperature range suitable for industrial applications
Availability of multiple quiescent current options provides flexibility in power management