Texas Instruments UCC3957MTR-1

IC LI-ION PROTECT CIRCUIT 16SSOP / Battery Protection Li-Ion 25mA 4.2V 16-Pin SSOP T/R

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Datasheet15 페이지18년 전

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관련 부품

Texas InstrumentsUCC3957M-3
3-, 4-Cell Lithium-Ion Protection IC W/Vov = 4.30V 16-SSOP -20 to 70
Analog DevicesMAX1924XEEE+
DUAL Tube e3 Matte Tin (Sn) battery management 30muA 20V 1.75mm -40C~85C TA

설명

유통업체에서 제공한 Texas Instruments UCC3957MTR-1에 대한 설명입니다.

IC LI-ION PROTECT CIRCUIT 16SSOP / Battery Protection Li-Ion 25mA 4.2V 16-Pin SSOP T/R
Battery Management IC; Battery Type:Li-Ion; Package/Case:16-SSOP; No. of Pins:16; Operating Temperature Range:-20°C to +70°C; Peak Reflow Compatible (260 C):No; Battery Management Case Style:SSOP; Battery Protection:Over Current ;RoHS Compliant: Yes
The UCC3957 is a BiCMOS three- or four-cell lithium-ion battery pack protector designed to operate with external P-channel MOSFETs. Utilizing external P-channel MOSFETs provides the benefits of no loss-of-system ground in an overdischarge state, and protects the IC as well as battery cells from damage during an overcharge state. An internal state machine runs continuously to protect each lithium-ion cell from overcharge and overdischarge. A separate overcurrent-protection block protects the battery pack from excessive discharge currents. If any cell voltage exceeds the overvoltage threshold, the appropriate external P-channel MOSFET is turned off, preventing further charge current. An external N-channel MOSFET is required to level shift to this high-side P-channel MOSFET. Discharge current can still flow through the second P-channel MOSFET. Likewise, if any cell voltage falls below the undervoltage limit, the second P-channel MOSFET is turned off and only charge current is allowed. Such a cell-voltage condition causes the chip to go into low-power sleep mode. Attempting to charge the battery pack wakes up the chip. A cell-count pin (CLCNT) is provided to program the IC for three- or four-cell operations. A two-tiered overcurrent controller and external current shunt protect the battery pack from excessive discharge currents. If the first overcurrent threshold level is exceeded, an internal timing circuit charges an external capacitor to provide a user programmable blanking time. If at the end of the blanking time the overcurrent condition still exists, the external discharge FET is turned off for a period 17 times longer than the first blanking period, and then the discharge FET is turned back on. If at any time a second higher overcurrent threshold is exceeded for more than a user programmable time, the discharge FET is turned off, and remains off for the same period as the first tier off time. This two tiered overcurrent-protection scheme allows for charging capacitive loads while retaining effective short-circuit protection.

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