低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651

低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,第1张

Maxim公司的MAX77650/MAX77651是用于低功耗可穿戴的高度集成电池充电和电源解决方案,具有SIMO降压-升压稳压器,有三个输出,可编电压稳压从3.6-4.6V,可编端电流0.375-45mA,主要用在蓝牙耳机,健身和活动监视器,可提设备和物联网(IoT).本文介绍了MAX7765优势和主要特性,功能框图和应用电路,以及MAX77650/MAX77651评估板EVK主要特性,元件分布图,电路图,材料清单和PCB设计图.

The MAX77650/MAX77651 provide highly-integrated bat­tery charging and power supply soluTIons for low-power wearable applicaTIons where size and efficiency are criTIcal. Both devices feature a SIMO buck-boost regulator that provides three independently programmable power rails from a single inductor to minimize total soluTIon size. A 150mA LDO provides ripple rejection for audio and other noise-sensitive applications. A highly configu­rable linear charger supports a wide range of Li+ battery capacities and includes battery temperature monitoring for additional safety (JEITA).

The devices include other features such as current sinks for driving LED indicators and an analog multiplexer that switches several internal voltage and current signals to an external node for monitoring with an external ADC. A bidi­rectional I2C interface allows for configuring and check­ing the status of the devices. An internal on/off controller provides a controlled startup sequence for the regulators and provides supervisory functionality when the devices are on. Numerous factory programmable options allow the device to be tailored for many applications, enabling faster time to market.

MAX7765优势和主要特性:

Highly IntegratedSmart Power Selector™ Li+/Li-Poly Charger
3 Output, Single-Inductor Multiple-Output (SIMO) Buck-Boost Regulator
150mA LDO
3-Channel Current Sink Driver
Analog MUX Output for Power Monitoring
Low Power0.3μA Standby Current
5.6μA Operating Current (3 SIMO Channels + LDO)
Charger Optimized for Small Battery SizeProgrammable Fast-Charge Current from 7.5mA to 300mA
Programmable Battery Regulation Voltage from 3.6V to 4.6V
Programmable Termination Current from 0.375mA to 45mA
JEITA Battery Temperature Monitors Adjust Charge Current and Battery Regulation Voltage for Safe Charging
Flexible and ConfigurableI2C Compatible Interface and GPIO
Factory OTP Options Available
Small Size2.75mm x 2.15mm x 0.7mm WLP Package
30-Bump, 0.4mm-Pitch WLP, 6x5 Array
Small Total Solution Size (19.2mm2)

MAX7765应用:

Bluetooth Headphones/Hearables
Fitness, Health, and Activity Monitors
Portable Devices
Internet of Things (IoT)

低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第2张


图1.MAX7765简化功能框图

低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第3张


图2.MAX7765典型应用电路图

MAX77650/MAX77651评估板EVK

The MAX77650/MAX77651 evaluation kit (EV kit) is a fully assembled and tested printed circuit board (PCB) that demonstrates the MAX77650/MAX77651. The EV kit allows for easy evaluation of the various MAX77650/ MAX77651 features, including the SIMO buck-boost regu­lator, linear regulator, analog multiplexer, smart battery charger, on/off controller, and I2C interface.

The MAX77650 and MAX77651 EV kits are identical aside from the device (U1), silkscreen, and two resis­tive dividers at the SIMO outputs. The MAX77650/ MAX77651 devices themselves have different output volt­age ranges for the SIMO buck-boost regulator. Consult the device data sheet for more information.

Windows®-based software provides a user-friendly graph­ical interface as well as a detailed register-based interface to exercise the features of the MAX77650/MAX77651.

MAX77650/MAX77651评估板EVK主要特性:

Easy to Use
GUI Drives I2C Interface
On-Board Battery Ammeter
On-Board Thermistor
On-Key Options
RGB LED Cluster
Assembled and Fully Tested
Emulates System Loading
On-Board Electronic Loads
Electronic Loads have steady-state, transient, and random modes
Demonstrates End-to-End Analog Multiplexer Implementation
On-Board ADC
Evaluates Both Push-Button and Slider-Switch On-Key Options


图3.MAX77650评估板EVK外形图

低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第4张


图4.MAX77650评估板EVK顶层元件分布图

低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第5张


图5.MAX77650评估板EVK底层元件分布图

低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第6张


图6.MAX77650评估板EVK电路图(1)

低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第7张


图7.MAX77650评估板EVK电路图(2)

低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第8张


图8.MAX77650评估板EVK电路图(3)

低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第9张


图9.MAX77650评估板EVK电路图(4)

低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第10张


图10.MAX77650评估板EVK电路图(5)
MAX77650评估板EVK材料清单(BOM):

低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第11张


低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第12张


低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第13张


低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第14张


低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第15张


低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第16张


低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第17张


低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第18张


图11.MAX77650评估板EVK PCB设计图(1)

低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第19张


图12.MAX77650评估板EVK PCB设计图(2)

低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第20张


图13.MAX77650评估板EVK PCB设计图(3)

低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第21张


图14.MAX77650评估板EVK PCB设计图(4)

低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第22张


图15.MAX77650评估板EVK PCB设计图(5)

低功耗可穿戴的高度集成电池充电和电源解决方案-MAX77650MAX77651,[原创] Maxim MAX77650小型锂电池高集成度充电和电源解决方案,第23张


图16.MAX77650评估板EVK PCB设计图(6)

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