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LMC6064IMX from NSC,National Semiconductor

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LMC6064IMX

Manufacturer: NSC

Precision CMOS Quad Micropower Operational Amplifier

Partnumber Manufacturer Quantity Availability
LMC6064IMX NSC 5200 In Stock

Description and Introduction

Precision CMOS Quad Micropower Operational Amplifier The LMC6064IMX is a quad operational amplifier (op-amp) manufactured by National Semiconductor (NSC). Below are the factual specifications, descriptions, and features from Ic-phoenix technical data files:

### **Specifications:**
- **Manufacturer:** National Semiconductor (NSC)  
- **Type:** Precision CMOS Quad Operational Amplifier  
- **Supply Voltage Range:** ±1.5V to ±8V (3V to 16V single supply)  
- **Input Offset Voltage:** 150 µV (typical)  
- **Input Bias Current:** 4 fA (typical)  
- **Gain Bandwidth Product:** 140 kHz (typical)  
- **Slew Rate:** 0.04 V/µs (typical)  
- **Operating Temperature Range:** -40°C to +85°C  
- **Package:** SOIC-14  
- **Rail-to-Rail Output:** Yes  
- **Low Power Consumption:** 20 µA per amplifier (typical)  

### **Descriptions:**
- The LMC6064IMX is a quad version of the LMC6062, designed for precision applications requiring low power and high input impedance.  
- It is fabricated using National Semiconductor's advanced CMOS technology, ensuring low input bias current and high accuracy.  
- Suitable for battery-powered devices, sensor interfaces, and precision signal conditioning due to its low power consumption and rail-to-rail output swing.  

### **Features:**
- **Ultra-Low Input Bias Current:** Ideal for high-impedance sensor applications.  
- **Rail-to-Rail Output Swing:** Maximizes dynamic range in low-voltage applications.  
- **Low Offset Voltage:** Enhances DC accuracy.  
- **Wide Supply Voltage Range:** Operates from 3V to 16V single supply (±1.5V to ±8V dual supply).  
- **High Open-Loop Gain:** Ensures precision amplification.  
- **ESD Protection:** Protects against electrostatic discharge.  

This information is strictly based on the manufacturer's datasheet and technical documentation.

Application Scenarios & Design Considerations

Precision CMOS Quad Micropower Operational Amplifier

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