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MCP73123-22S/MF Datasheet(PDF) 10 Page - Microchip Technology |
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MCP73123-22S/MF Datasheet(HTML) 10 Page - Microchip Technology |
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10 / 28 page ![]() MCP73123/223 DS22191E-page 10 2009-2013 Microchip Technology Inc. 3.0 PIN DESCRIPTION The descriptions of the pins are listed in Table 3-1. TABLE 3-1: PIN FUNCTION TABLE 3.1 Battery Management Input Supply (VDD) A supply voltage of [VREG (Typical) + 0.3V] to 6.0V is recommended for MCP73123, while a supply voltage of [VREG (Typical) + 0.3V] to 12.0V is recommended for MCP73223. Bypass to VSS with a minimum of 1 µF. The VDD pin is rated 18V absolute maximum to prevent sudden rise of input voltage from spikes or low cost AC-DC wall adapter. 3.2 Battery Charge Control Output (VBAT) Connect to the positive terminal of the battery. Bypass to VSS with a minimum of 1 µF to ensure loop stability when the battery is disconnected. The MCP73123 is designed to provide 3.6V battery regulation voltage for LiFePO4 batteries. Undercharge may occur if a typical Li-Ion or Li-Poly battery is used. 3.3 No Connect (NC) No connect. 3.4 Status Output (STAT) STAT is an open-drain logic output for connection to an LED for charge status indication in stand-alone applications. Alternatively, a pull-up resistor can be applied for interfacing to a host microcontroller. Refer to Table 5-1 for a summary of the status output during a charge cycle. 3.5 Battery Management 0V Reference (VSS) Connect to the negative terminal of the battery and input supply. 3.6 Current Regulation Set (PROG) The fast charge current is set by placing a resistor from PROG to VSS during constant current (CC) mode. The PROG pin also serves as a charge control enable pin. Allowing the PROG pin to float or connecting the pin to an impedance greater than 200 k will disable the MCP73123/223 charger. Refer to Section 5.5, "Constant Current Mode – Fast Charge", for details. 3.7 Exposed Pad (EP) The Exposed Thermal Pad (EP) shall be connected to the exposed copper area on the Printed Circuit Board (PCB) to enhance thermal power dissipation. Additional vias on the copper area under the MCP73123/223 device will improve the performance of heat dissipation and simplify the assembly process. Connecting EP to VSS is recommended. MCP73123/223 Symbol I/O Description DFN-10 1, 2 VDD I Battery Management Input Supply 3, 4 VBAT I/O Battery Charge Control Output 5, 6 NC — No Connection 7 STAT O Battery Charge Status Output 8, 9 VSS — Battery Management 0V Reference 10 PROG I/O Battery Charge Current Regulation Program and Charge Control Enable 11 EP — Exposed Pad |
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