MCP1631RD-MCC1 Microchip Technology, MCP1631RD-MCC1 Datasheet - Page 14

REFERENCE DESIGN FOR MCP1631HV

MCP1631RD-MCC1

Manufacturer Part Number
MCP1631RD-MCC1
Description
REFERENCE DESIGN FOR MCP1631HV
Manufacturer
Microchip Technology
Type
Battery Managementr

Specifications of MCP1631RD-MCC1

Main Purpose
Power Management, Battery Charger
Embedded
Yes, MCU, 8-Bit
Utilized Ic / Part
MCP1631HV, PIC16F883
Primary Attributes
1 ~ 2 Cell- Li-Ion, 1 ~ 4 Cell- NiCd/NiMH
Secondary Attributes
Status LEDs
Supported Devices
MCP1631HV, PIC16F883 Device Type
Tool / Board Applications
Power Management-Battery Management
Development Tool Type
Reference Design
Input Voltage
5.5 V to 16 V
Product
Power Management Modules
Mcu Supported Families
MCP1631HV/PIC16F883 Family
Silicon Manufacturer
Microchip
Silicon Core Number
MCP1631HV
Kit Application Type
Reference Design
Application Sub Type
Battery Charger
Kit Contents
Board Only
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With/related Products
MCP1631HV, PIC16F883
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
MCP1631 Multi-Chemistry Battery Charger Reference Design
DS51697A-page 10
FIGURE 2-3:
2.3.1.2
1. To apply a load (battery pack), to the MCP1631HV Multi-Chemistry Battery
2. For NiMH or NiCd battery packs, a thermistor referenced to (B-) in the battery
Charger, the positive side of the battery pack (B+) should be connected to pin 1
of J2. The negative side of the load (B-)should be connected to pin 5 of J2.
pack should be utilized, reccomened EPCOS Inc. PN B57500M0103A005. If a
thermistor is not available or not desired, a 10 kΩ resistor should be placed
between pins 4 and 5 of the battery header (J2) or the charger will detect a miss-
ing thermistor and no charge cycle will begin.
APPLYING A LOAD TO THE MCP1631HV MULTI-CHEMISTRY
BATTERY CHARGER
Setup Configuration Diagram.
© 2007 Microchip Technology Inc.

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