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MM3474G01VBE

Description
Power Supply Support Circuit, PDSO20,
CategoryPower/power management    The power supply circuit   
File Size53KB,4 Pages
ManufacturerMitsumi Electric Co., Ltd.
Download Datasheet Parametric View All

MM3474G01VBE Overview

Power Supply Support Circuit, PDSO20,

MM3474G01VBE Parametric

Parameter NameAttribute value
package instructionTSSOP, TSSOP20,.25
Reach Compliance Codeunknown
ECCN codeEAR99
Analog Integrated Circuits - Other TypesPOWER SUPPLY SUPPORT CIRCUIT
JESD-30 codeR-PDSO-G20
Number of terminals20
Maximum operating temperature85 °C
Minimum operating temperature-40 °C
Package body materialPLASTIC/EPOXY
encapsulated codeTSSOP
Encapsulate equivalent codeTSSOP20,.25
Package shapeRECTANGULAR
Package formSMALL OUTLINE, THIN PROFILE, SHRINK PITCH
Certification statusNot Qualified
Maximum supply current (Isup)0.02 mA
surface mountYES
Temperature levelINDUSTRIAL
Terminal formGULL WING
Terminal pitch0.635 mm
Terminal locationDUAL
MITSUMI
3 to 5cells lithium-ion/lithium-polymer battery protection IC
3 to 5cells lithium-ion/lithium-polymer battery protection IC
Monolithic IC MM3474 Series
Outline
MM3474 series is an overcharge, overdischarge and overcurrent protection IC for a lithium-ion / lithium-
polymer rechargeable secondary battery. Lithium-ion / lithium-polymer rechargeable secondary battery
overcharge each cell, over discharge, and discharge overcurrent, short circuits can be detected.
This supports 3 to 5 serial cells connected in series, and switches over to the desired no. of cells by sending
High / Low signal to SEL terminal.
This also provides the control terminals of output over discharge detection (SDC) and output over charge
detection (SOC), which allows configuring an application with fewer external parts for 6 or more cells
connected in series.
Features
(Unless otherwise specified, Topr=+25°C)
(1) Range and accuracy of detection / release voltage
Overcharge detection voltage
Overcharge release voltage
Overdischarge detection voltage
Overdischarge release voltage
Overcurrent detect voltage
Short detection voltage
3.6V to 4.5V, 5mV steps
3.4V to 4.5V, 50mV steps
2.0V to 3.0V, 50mV steps
2.0V to 3.4V, 50mV steps
50mV to 300mV, 5mV steps
0.2V to 1.0V, 50mV steps
Accuracy±25mV (Topr=±0 to +50°C)
Accuracy±50mV
Accuracy±80mV
Accuracy±100mV
Accuracy±15mV
Accuracy±100mV
(2) Each detection delay time set by the external capacitor
(3) The setting for three cell , for four cell , and for five cell protection can be set with the SEL1 pin
and the SEL2 pin.
(4) The charge and discharge of the battery can be controlled with SDC pin and SOC pin.
(5) Low current consumption
Consumption current1 (Vdd) , Vcell=4.4V
Consumption current2 (Vdd) , Vcell=3.5V
Consumption current3 (Vdd) , Vcell=1.8V
Consumption current1 (V5) , Vcell=4.4V
Consumption current2 (V5) , Vcell=3.5V
Consumption current3 (V5) , Vcell=1.8V
Typ. 10.0µA, Max. 20.0µA
Typ. 5.0µA, Max. 10.0µA
Typ. 1.5µA, Max. 3.0µA
Typ. 4.0µA, Max. 8.0µA
Typ. 3.0µA, Max. 6.0µA
Typ. 1.5µA, Max. 3.0µA
(6) Absolute maximum ratings
VDD pin
V5 pin
Between the input terminals of voltage of battery
V− pin, CS pin
OV pin, DCHG pin
SEL pin
SDC pin, SOC pin
Storage temperature
Operation temperature
VSS2−0.3V to +30V
V4−0.3V to VDD+0.3V
−0.3V to +10V
VDD−30V to VDD+0.3V
VSS2−0.3V to VDD+0.3V
VSS2−0.3V to VDD+0.3V
VSS2−0.3V to VDD+0.3V
−55 to +125ºC
−40 to +85ºC
• Any products mentioned in this catalog are subject to any modification in their appearance and others for improvements without prior notification.
• The details listed here are not a guarantee of the individual products at the time of ordering. When using the products, you will be asked to check their specifications.
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