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MAX712CSE+T
Basic Information Overview
- Category: Integrated Circuit (IC)
- Use: Battery Charger Controller
- Characteristics: High Efficiency, Low Power Consumption
- Package: 16-Pin Narrow SOIC (Small Outline Integrated Circuit)
- Essence: Regulates and Controls Battery Charging Process
- Packaging/Quantity: Tape and Reel, 2500 Units per Reel
Specifications
- Input Voltage Range: 4.5V to 25V
- Output Voltage Range: 1.25V to 28V
- Maximum Charging Current: 2A
- Operating Temperature Range: -40°C to +85°C
- Shutdown Current: 10µA (typical)
Detailed Pin Configuration
- VCC: Positive Supply Voltage
- GND: Ground
- BAT: Battery Connection
- TIMER: Timer Capacitor Connection
- CT: Timing Resistor Connection
- ISET: Current Sense Resistor Connection
- PROG: Programming Pin
- STAT: Status Indicator Output
- CE: Charge Enable Input
- TS: Thermal Shutdown Input
- SRN: Sense Resistor Negative Terminal
- SRP: Sense Resistor Positive Terminal
- VREF: Reference Voltage Output
- VFB: Feedback Voltage Input
- VSENSE: Voltage Sense Input
- VOUT: Regulated Output Voltage
Functional Features
- Constant-Current/Constant-Voltage Charging
- Automatic Temperature Compensation
- Programmable Charge Termination
- Overvoltage Protection
- Reverse Battery Protection
- LED Indication for Charging Status
- Thermal Shutdown Protection
Advantages
- High charging efficiency
- Low power consumption
- Wide input voltage range
- Flexible programming options
- Comprehensive protection features
- Compact and easy-to-use package
Disadvantages
- Limited maximum charging current (2A)
- Requires external timing and current sensing components
- Relatively high cost compared to basic charger circuits
Working Principles
The MAX712CSE+T is a battery charger controller IC that utilizes a constant-current/constant-voltage charging algorithm. It regulates the charging process by monitoring the battery voltage, current, and temperature. The IC adjusts the charging current to maintain a constant current until the battery voltage reaches a predetermined threshold. It then switches to a constant voltage mode to prevent overcharging. The MAX712CSE+T also incorporates automatic temperature compensation to optimize charging performance across different temperature ranges.
Detailed Application Field Plans
- Portable Electronic Devices: The MAX712CSE+T can be used in smartphones, tablets, and other portable devices to provide efficient and safe battery charging.
- Electric Vehicles: This IC can be employed in electric vehicle charging systems to control the charging process and ensure optimal battery performance.
- Renewable Energy Systems: The MAX712CSE+T can be integrated into solar-powered systems or wind energy storage systems to regulate the charging of batteries used for energy storage.
- Industrial Equipment: Battery-powered industrial equipment, such as handheld tools or wireless sensors, can benefit from the precise charging control provided by the MAX712CSE+T.
Detailed and Complete Alternative Models
- MAX713CPE+: Similar to MAX712CSE+T but available in a 16-pin DIP (Dual Inline Package) instead of SOIC.
- MAX8903AETI+: Offers additional features like USB On-The-Go (OTG) support and integrated power path management.
- MCP73871-2CCI/MLI: Provides similar functionality with a lower maximum charging current of 1.5A.
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Question: What is the maximum input voltage for MAX712CSE+T?
Answer: The maximum input voltage for MAX712CSE+T is 16V.
Question: Can MAX712CSE+T be used for battery charging applications?
Answer: Yes, MAX712CSE+T is suitable for battery charging applications.
Question: What is the typical output current of MAX712CSE+T?
Answer: The typical output current of MAX712CSE+T is 1A.
Question: Does MAX712CSE+T have overvoltage protection?
Answer: Yes, MAX712CSE+T features overvoltage protection.
Question: Is MAX712CSE+T suitable for automotive applications?
Answer: Yes, MAX712CSE+T is designed for automotive applications.
Question: What is the operating temperature range of MAX712CSE+T?
Answer: The operating temperature range of MAX712CSE+T is -40°C to +85°C.
Question: Can MAX712CSE+T be used in solar power systems?
Answer: Yes, MAX712CSE+T can be utilized in solar power systems.
Question: Does MAX712CSE+T support trickle charging?
Answer: Yes, MAX712CSE+T supports trickle charging for maintaining battery health.
Question: What is the typical efficiency of MAX712CSE+T?
Answer: The typical efficiency of MAX712CSE+T is 90%.
Question: Is MAX712CSE+T RoHS compliant?
Answer: Yes, MAX712CSE+T is RoHS compliant for environmental considerations.