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MAX8662ETM+T from MAXIM,MAXIM - Dallas Semiconductor

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MAX8662ETM+T

Manufacturer: MAXIM

Power-Management ICs for Single-Cell, Li+ Battery-Operated Devices

Partnumber Manufacturer Quantity Availability
MAX8662ETM+T MAXIM 5000 In Stock

Description and Introduction

Power-Management ICs for Single-Cell, Li+ Battery-Operated Devices The MAX8662ETM+T is a power management IC (PMIC) manufactured by Maxim Integrated (now part of Analog Devices). Below are its key specifications, descriptions, and features based on factual information from Ic-phoenix technical data files:

### **Specifications:**  
- **Manufacturer:** Maxim Integrated  
- **Part Number:** MAX8662ETM+T  
- **Package:** 48-TQFN (7x7)  
- **Operating Temperature Range:** -40°C to +85°C  
- **Input Voltage Range:** 2.7V to 5.5V  
- **Output Voltage Range:** Adjustable (depends on configuration)  
- **Number of Outputs:** Multiple (varies by configuration)  
- **Switching Frequency:** Up to 2MHz  

### **Descriptions:**  
The MAX8662ETM+T is a highly integrated power management IC designed for portable and battery-powered applications. It combines multiple power regulators, including step-down (buck) converters and low-dropout (LDO) regulators, to provide efficient power delivery for system components such as processors, memory, and peripherals.  

### **Features:**  
- **Integrated Power Management:** Combines buck converters and LDOs in a single chip.  
- **High Efficiency:** Utilizes synchronous rectification for improved power conversion.  
- **Adjustable Outputs:** Allows flexibility in setting output voltages.  
- **Low Quiescent Current:** Optimized for battery-powered applications.  
- **Thermal and Overcurrent Protection:** Built-in safeguards for reliability.  
- **Small Footprint:** 48-pin TQFN package for space-constrained designs.  

This information is based solely on the manufacturer's datasheet and technical documentation. For detailed application-specific guidance, refer to the official datasheet from Maxim Integrated (Analog Devices).

Application Scenarios & Design Considerations

Power-Management ICs for Single-Cell, Li+ Battery-Operated Devices

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