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MAX4126ESA-T from MAXIM,MAXIM - Dallas Semiconductor

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MAX4126ESA-T

Manufacturer: MAXIM

Single/Dual/Quad, Wide-Bandwidth, Low-Power, Single-Supply Rail-to-Rail I/O Op Amps

Partnumber Manufacturer Quantity Availability
MAX4126ESA-T,MAX4126ESAT MAXIM 2000 In Stock

Description and Introduction

Single/Dual/Quad, Wide-Bandwidth, Low-Power, Single-Supply Rail-to-Rail I/O Op Amps The MAX4126ESA-T is a low-power, single-supply operational amplifier (op-amp) manufactured by Maxim Integrated. Below are its key specifications, descriptions, and features:

### **Specifications:**
- **Supply Voltage Range:** +2.7V to +6V (single supply)  
- **Input Offset Voltage:** 0.5mV (max)  
- **Input Bias Current:** 1nA (max)  
- **Gain Bandwidth Product (GBW):** 1MHz  
- **Slew Rate:** 0.5V/µs  
- **Quiescent Current:** 50µA (per amplifier)  
- **Operating Temperature Range:** -40°C to +85°C  
- **Package:** 8-pin SOIC (Small Outline Integrated Circuit)  
- **Output Current:** ±20mA (short-circuit protected)  
- **Common-Mode Rejection Ratio (CMRR):** 90dB  
- **Power Supply Rejection Ratio (PSRR):** 90dB  

### **Descriptions:**
- The MAX4126ESA-T is a precision, low-power op-amp designed for battery-powered and portable applications.  
- It operates on a single supply voltage as low as 2.7V, making it suitable for low-voltage systems.  
- Features rail-to-rail output swing for maximum dynamic range.  
- Optimized for low power consumption while maintaining high accuracy.  

### **Features:**
- **Low Power Consumption:** 50µA per amplifier (typical).  
- **Rail-to-Rail Output:** Ensures wide dynamic range.  
- **Single-Supply Operation:** Works from +2.7V to +6V.  
- **High Precision:** Low offset voltage and bias current.  
- **Short-Circuit Protection:** Output current limited to ±20mA.  
- **Wide Temperature Range:** Operates from -40°C to +85°C.  
- **Small Footprint:** 8-pin SOIC package for space-constrained designs.  

This op-amp is commonly used in sensor interfaces, battery-powered devices, and portable instrumentation due to its low power and high precision.

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