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RT5016C データシート(PDF) 45 Page - Richtek Technology Corporation |
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RT5016C データシート(HTML) 45 Page - Richtek Technology Corporation |
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45 / 68 page ![]() RT5016C 45 DS5016C-02 November 2016 www.richtek.com Copyright 2016 Richtek Technology Corporation. All rights reserved. is a registered trademark of Richtek Technology Corporation. © ISYS VSYS IUSB IBAT T1, T7 0 SYS Regulation Voltage CHG_MAX CHG_MAX T2, T6 < IVIN_OC (USB) CHG_MAX SYS Regulation Voltage ISYS + CHG_MAX CHG_MAX T3, T5 > IVIN_OC (USB) CHG_MAX < IVIN_OC (USB) Auto Charge Voltage Threshold IVIN_OC (USB) IVIN_OC (USB) ISYS T4 > IVIN_OC (USB) VBAT IBAT x RDS(ON) IVIN_OC (USB) ISYS IVIN_OC (USB) Battery Supplement Mode Short Circuit Protect In APPM mode, the SYS voltage will continue to drop if the charge current is zero and the system load increases beyond the input current limit. When the SYS voltage decreases below the battery voltage, the battery will kick in to supplement the system load until the SYS voltage rises above the battery voltage. While in supplement mode, there is no battery supplement current regulation. However, a built-in short-circuit protection feature is available to prevent any abnormal current situation. While the battery is supplementing the load, if the difference between the battery and SYS voltage exceeds the short-circuit threshold voltage, SYS will be disabled. After a short- circuit recovery time, tSHORT_R, the counter will be restarted. In supplement mode, the battery termination function is disabled. Note that the battery supply mode exiting condition is VBAT − VSYS < 0V. Thermal Regulation and Thermal Shutdown The charger provides a thermal regulation loop function to monitor the device temperature. If the die temperature rises above the regulation temperature, TREG, the charge current will automatically be reduced to lower the die temperature. However, in certain circumstances (such as high VIN, heavy system load, etc) even with the thermal loop in place, the die temperature may still continue to increase. In this case, if the temperature rises above the thermal shutdown threshold, TSD, the internal switch between VIN and SYS will be turned off. The switch between the battery and SYS will remain on however, to allow continuous battery power to the load. Once the die temperature decreases by ΔTSD, the internal switch between VIN and SYS will be turned on again and the device returns to normal thermal regulation. The internal thermal feedback circuitry regulates the die temperature to optimize the charge rate for all ambient temperatures. |
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