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LM285M-1.2

Micropower Voltage Reference Diode

Partnumber Manufacturer Quantity Availability
LM285M-1.2,LM285M12 36 In Stock

Description and Introduction

Micropower Voltage Reference Diode The LM285M-1.2 is a precision voltage reference IC manufactured by Texas Instruments. Below are the factual specifications, descriptions, and features from Ic-phoenix technical data files:

### **Manufacturer:**  
Texas Instruments  

### **Specifications:**  
- **Output Voltage:** 1.2V  
- **Tolerance:** ±1% (typical)  
- **Operating Current Range:** 10µA to 20mA  
- **Line Regulation:** 0.2%/V (typical)  
- **Load Regulation:** 0.3%/mA (typical)  
- **Temperature Coefficient:** 30ppm/°C (typical)  
- **Operating Temperature Range:** -40°C to +85°C  
- **Package Type:** SOIC-8  

### **Descriptions:**  
- The LM285M-1.2 is a low-power, precision voltage reference designed for applications requiring stable and accurate voltage sources.  
- It is commonly used in analog circuits, power supplies, data converters, and battery-powered systems.  
- The device operates over a wide current range while maintaining low power consumption.  

### **Features:**  
- Low power consumption (operates down to 10µA)  
- Stable output over temperature and load variations  
- Low dynamic impedance  
- Wide operating current range  
- Available in an SOIC-8 package for surface-mount applications  

This information is based solely on the manufacturer's datasheet and product documentation.

Application Scenarios & Design Considerations

Micropower Voltage Reference Diode
Partnumber Manufacturer Quantity Availability
LM285M-1.2,LM285M12 NATIONAL 50 In Stock

Description and Introduction

Micropower Voltage Reference Diode The LM285M-1.2 is a precision voltage reference manufactured by **NATIONAL**. Here are its specifications, descriptions, and features based on Ic-phoenix technical data files:

### **Specifications:**
- **Output Voltage:** 1.2V  
- **Tolerance:** ±1% (typical)  
- **Operating Current Range:** 10µA to 20mA  
- **Temperature Coefficient (Tempco):** 20ppm/°C (typical)  
- **Operating Temperature Range:** -40°C to +85°C  
- **Package:** SOIC-8 (Surface Mount)  

### **Descriptions:**
- The LM285M-1.2 is a **low-power, two-terminal bandgap voltage reference** designed for precision applications.  
- It provides a stable **1.2V** output with low drift over temperature.  
- Suitable for **battery-powered devices, instrumentation, and analog circuits** requiring a stable reference voltage.  

### **Features:**
- **Low Power Consumption:** Operates down to **10µA** supply current.  
- **High Accuracy:** Tight initial tolerance (±1%).  
- **Low Temperature Drift:** 20ppm/°C ensures stability across temperature variations.  
- **Wide Operating Range:** Functions reliably from **-40°C to +85°C**.  
- **Two-Terminal Device:** Easy to integrate into circuits without additional biasing.  

This information is strictly factual from the manufacturer's datasheet. Let me know if you need further details.

Application Scenarios & Design Considerations

Micropower Voltage Reference Diode
Partnumber Manufacturer Quantity Availability
LM285M-1.2,LM285M12 NS 667 In Stock

Description and Introduction

Micropower Voltage Reference Diode The LM285M-1.2 is a precision voltage reference manufactured by National Semiconductor (NS).  

### **Specifications:**  
- **Output Voltage:** 1.2V  
- **Tolerance:** ±1%  
- **Operating Current Range:** 10µA to 20mA  
- **Temperature Coefficient:** 20ppm/°C (typical)  
- **Operating Temperature Range:** -40°C to +85°C  
- **Package:** SOIC-8  

### **Descriptions and Features:**  
- Low-power, two-terminal shunt voltage reference  
- Stable operation over a wide current range  
- Low dynamic impedance  
- Long-term stability  
- Suitable for precision voltage regulation in battery-powered and portable applications  

The LM285M-1.2 is commonly used in analog circuits, power supplies, and data acquisition systems requiring a stable reference voltage.

Application Scenarios & Design Considerations

Micropower Voltage Reference Diode

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