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TPD4S201 датащи(PDF) 7 Page - Texas Instruments |
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TPD4S201 датащи(HTML) 7 Page - Texas Instruments |
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7 / 28 page ![]() 5.6 Electrical Characteristics (continued) over operating junction temperature range (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT SBU OVP Switches RON On Resistance of SBU OVP FETs SBUx = 3.6 V. –40°C ≤ TJ ≤ +85°C 4 6.8 Ω CON_SBU Equivalent on Capacitance Capacitance from SBUx or C_SBUx to GND when device is powered. Measure at VC_SBUx/VSBUx = 0.3V to 4.0V. 6 pF VOVPSBU OVP Threshold on SBU Pins Place 3.6V on C_SBUx. Step up C_SBUx until FLT pin is asserted. 4.0 4.2 4.41 V VOVPSBU_HYS Hysteresis on SBU OVP Place 5 V on C_CCx. Step down the voltage on C_CCx until the FLT pin is deasserted. Measure difference between rising and falling OVP threshold for C_SBUx. 50 mV BWON On Bandwidth Single Ended (-3dB) Measure the -3 dB bandwidth from C_SBUx to SBUx. Single ended measurement, 50Ω system. Vcm = 0.1V to 3.6V. 600 760 MHz XTALK Crosstalk Measure crosstalk at f = 1 MHz from SBU1 to C_SBU2 or SBU2 to C_SBU1. Vcm1 = 3.6 V, Vcm2 = 0.3 V. Terminate open sides to 50Ω. -70 dB VSTBUS_SBU Short-to-VBUS tolerance on the SBU pins Hot-Plug C_SBUx with a 1 meter USB Type C Cable. Put a 100-nF capacitor in series with a 40-Ω resistor to GND on SBUx. 21.5 V VSTBUS_SBU_CLAMP Short-to-VBUS System-Side Clamping Voltage on the SBU pins (SBUx) Hot-Plug C_SBUx with a 1 meter USB Type C Cable. Hot-Plug voltage C_SBUx = 51V. VPWR = 3.3 V. Put a 150-nF capacitor in series with a 40-Ω resistor to GND on SBUx. 7 V Power Supply and Leakage Currents VPWR_UVLO VPWR Undervoltage Lockout Place 1 V on VPWR and raise voltage until SBU or CC FETs turn-on. 2.1 2.3 2.6 V VPWR_UVLO_HYS VPWR UVLO Hysteresis Place 3 V on VPWR and lower voltage until SBU or CC FETs turnoff; measure difference between rising and falling UVLO to calculate hysteresis. 70 100 130 mV IVPWR VPWR supply current VPWR = 3.3 V (typical), VPWR = 4.5 V (maximum). –40°C ≤ TJ ≤ +85°C. 112 160 µA IC_CC_LEAK Leakage current for C_CCx pins when device is powered VPWR = 3.3 V, VC_CCx = 3.6 V, CCx pins are floating, measure leakage current into C_CCx pins. 5 µA IC_SBU_LEAK Leakage current for C_SBUx pins when device is powered VPWR = 3.3 V, VC_SBUx = 3.6 V, SBUx pins are floating, measure leakage current into C_SBUx pins. Result should be same if SBUx side is biased and C_SBUx is left floating.-40°C ≤ TJ ≤ +85°C 3.2 µA IC_CC_LEAK_OVP Leakage current for C_CCx pins when device is in OVP VPWR = 0 V or 3.3 V, VC_CCx = 51 V, CCx pins are set to 0 V, measure leakage current into C_CCx pins. 1200 µA IC_SBU_LEAK_OVP Leakage current for C_SBUx pins when device is in OVP VPWR = 0 V or 3.3 V, VC_SBUx = 51 V, SBUx pins are set to 0 V, measure leakage current into C_SBUx pins. 720 µA ICC_LEAK_OVP Leakage current for CC pins when device is in OVP VPWR = 0 V or 3.3 V, VC_CCx = 51 V, CCx pins are set to 0 V, measure leakage current out of CCx pins. 30 µA ISBU_LEAK_OVP Leakage current for SBU pins when device is in OVP VPWR = 0 V, VC_SBUx = 51 V, SBUx pins are set to 0 V, measure leakage current into SBUx pins. -1 1 µA /FLT Pin VOL Low-level output voltage IOL = 3mA. Measure voltage at FLT pin. 0.4 V Over Temperature Protection www.ti.com TPD4S201 SLVSIF2 – JULY 2025 Copyright © 2025 Texas Instruments Incorporated Submit Document Feedback 7 Product Folder Links: TPD4S201 |
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