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MAX745
开关模式锂离子电池充电器

精度高达±0.75%的Li+电池充电器,提供4A充电电流时不会出现发热现象


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数据资料
完整的数据资料 (PDF, 144kB)
英文 Download this datasheet in PDF format下载

概述
The MAX745 provides all functions necessary for charging lithium-ion (Li+) battery packs. It provides a regulated charging current of up to 4A without getting hot, and a regulated voltage with only ±0.75% total error at the battery terminals. It uses low-cost, 1% resistors to set the output voltage, and a low-cost N-channel MOSFET as the power switch.

The MAX745 regulates the voltage set point and charging current using two loops that work together to transition smoothly between voltage and current regulation. The per-cell battery voltage regulation limit is set between 4V and 4.4V using standard 1% resistors, and then the number of cells is set from 1 to 4 by pin-strapping. Total output voltage error is less than ±0.75%.

For a similar device with an SMBus™ microcontroller interface and the ability to charge NiCd and NiMH cells, refer to the MAX1647 and MAX1648. For a low-cost Li+ charger using a linear-regulator control scheme, refer to the MAX846A.

关键特性   应用/使用
  • Charges 1 to 4 Li+ Battery Cells
  • ±0.75% Voltage-Regulation Accuracy Using 1% Resistors
  • Provides up to 4A without Excessive Heating
  • 90% Efficient
  • Uses Low-Cost Set Resistors and N-Channel Switch
  • Up to 24V Input
  • Up to 18V Maximum Battery Voltage
  • 300kHz Pulse-Width Modulated (PWM) Operation Low-Noise, Small Components
  • Stand-Alone Operation—No Microcontroller Needed

 
  • 蜂窝电话
  • 台式摇篮架充电器
  • 手持式仪表(PDA、掌上电脑)
  • Li+电池组
  • 笔记本电脑

    Key Specifications:   Battery Chargers
    Part Number Cell Chemistry Number of Lithium-Ion cells Protected VIN (max) (V) Charging VIN (max) (V) Charge Rate Set by Max. Charge Current (A) Max. Charge Current (A) Charge Termination Charge Regulation Features EV-Kit Package Operating Temp. Range (°C) Price**
    MAX745  Li-Ion
    Li-Polymer
    1
    2
    3
    4
    24 24 Resistor 4 4 Current Limit
    Max. Voltage
    Switchmode
    Stand Alone
    Thermistor Input
    Yes SSOP/20 -40 to +85 $4.50 @ 1k
    See All Battery Chargers (60)
    Notes:
    **This pricing is BUDGETARY, for comparing similar parts. Prices are in U.S. dollars and subject to change. Quantity pricing may vary substantially and international prices may differ due to local duties, taxes, fees, and exchange rates. For volume-specific prices and delivery, please see the price and availability page or contact an authorized distributor.

    图表
    MAX745:典型工作电路
    典型工作电路

    应用笔记
  • App Note 680: How to Design Battery Charger Applications that Require External Microcontrollers and Related System-Level Issues - MAX745 (English only)
  • App Note 721: Portable Devices Need High-Performance Battery Chargers - MAX745 (English only)

    评估板
  • MAX745EVKIT

    设计指南
  • 电源 (PDF)

    可靠性报告
  • 查询FIT数据:
  • 申请可靠性报告: (English only)

    软件/模型

    定购信息
    注:

    1. 购买产品,请访问:http://www.maxim-ic.com.cn/sales
    2. 没有找到您所需要的器件?请咨询我们的应用工程师。我们的专家会帮助您找到合适的器件,通常在一个工作日内回复。
    3. 型号尾缀:T或T&R = 卷带; + = RoHS/无铅; # = RoHS/无铅豁免权。详细信息请参考:完整的数据资料型号命名规则
    4. * “封装代码/变更”提供产品使用的变更信息。注意:型号尾缀中的“+”、“#”和“-”表示器件的RoHS状况,封装图上可能显示不同的尾缀字符。


    器件: 1-5 of 5

    MAX745 免费样品 采购
    封装: 类型 引脚 占位面积
      封装图编码/变更 *
    温度 RoHS/无铅?
    材料分析
    MAX745C/D  



    参考数据资料
    MAX745EAP  
    SSOP;20引脚;
    封装图: 21-0056 (PDF)
    使用封装码/变更:A20-1*
    -40°C至+85°C RoHS/无铅:
    材料分析
    MAX745EAP-T  
    SSOP;20引脚;
    封装图: 21-0056 (PDF)
    使用封装码/变更:A20-1*
    -40°C至+85°C RoHS/无铅:
    材料分析
    MAX745EAP+  
    SSOP;20引脚;
    封装图: 21-0056 (PDF)
    使用封装码/变更:A20+1*
    -40°C至+85°C RoHS/无铅:无铅
    材料分析
    MAX745EAP+T  
    SSOP;20引脚;
    封装图: 21-0056 (PDF)
    使用封装码/变更:A20+1*
    -40°C至+85°C RoHS/无铅:无铅
    材料分析

    相关产品
    MAX846A 低成本、多种化学类型电池充电控制器
    MAX1667 与化学类型无关的Level 2智能电池充电器
    MAX1782 高级智能电池组控制器
    MAX1647, MAX1648 与化学类型无关的电池充电控制器
    MAX1640, MAX1641 可调输出、开关模式电流源,内置同步整流

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     概述 
     关键特性 
     应用/使用 
     关键指标 
     图表 

     数据资料 
     应用笔记 
     设计指南 
     工程期刊 
     可靠性报告 
     软件/模型 
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     价格与供货 
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    参考文献: 19-1182; Rev. 3; 2002-09-10
    本页最后一次更新: 2007-05-31



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