September 2012 Rev FEATURES. Fig. 1: XRP2523 Application Diagram

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September 2012 Rev. 1.1.0 GENERAL DESCRIPTION The is a single channel integrated high-side power distribution switch optimized for self or bus-powered USB applications and compliant with the latest USB 3.0 specification. It accepts an input voltage between of 3.2V and 6.5V allowing for operations from industry standard 3.3V and 5V power rails. The is provided with an enable pin with integrated soft start while an error flag is available to indicate any fault conditions. With a low quiescent current as well as a small package, the is ideal for battery powered applications. The power-switch rise and fall times are controlled to minimize current surges during turn on/off. Built-in over current, under voltage lockout (UVLO), reverse current and over temperature protections insure safe operations under abnormal operating conditions. is offered in a RoHS compliant green /halogen free 5-pin SOT-23 package. APPLICATIONS Self Powered USB 2.0 and 3.0 Hubs USB Compliant V BUS Power Distribution Audio-Video Equipment Portable Equipment FEATURES 1.5A Single Channel Current Switch 1.5A continuous load current 1.6A Over-current Limit 3.2V to 6.5V Input Voltage Range USB 2.0 and USB 3.0 Compliant Active High Enable Soft Start Channel Fault Flag Indicator 9ms Blanking Time UVLO, Reverse Current, Short circuit and Thermal Shutdown Protection RoHS Compliant, Green/Halogen Free 5-Pin SOT-23 Package TYPICAL APPLICATION DIAGRAM Fig. 1: Application Diagram Exar Corporation www.exar.com 48720 Kato Road, Fremont CA 94538, USA Tel. +1 510 668-7000 Fax. +1 510 668-7001

ABSOLUTE MAXIMUM RATINGS These are stress ratings only and functional operation of the device at these ratings or any other above those indicated in the operation sections of the specifications below is not implied. Exposure to absolute maximum rating conditions for extended periods of time may affect reliability. OPERATING RATINGS Input Voltage Range V IN... 3.2V to 6.5V Ambient Temperature Range... -40 C to 85 C Thermal Resistance θ JA...250ºC/W V IN... 7.0V V EN, V FLG... -0.3V to 7.0V Junction Temperature... 125 C Storage Temperature... -65 C to 150 C Power Dissipation... Internally Limited Lead Temperature (Soldering, 10 sec)... 260 C ESD Rating (HBM - Human Body Model)... 2kV ELECTRICAL SPECIFICATIONS Specifications are for an Operating Junction Temperature of T A = T J = 25 C only; limits applying over the full Operating Junction Temperature range are denoted by a. Minimum and Maximum limits are guaranteed through test, design, or statistical correlation. Typical values represent the most likely parametric norm at T A = 25 C, and are provided for reference purposes only. Unless otherwise indicated, V IN = 5V, C IN = C OUT = 1µF, T J = 25 C. Parameter Min. Typ. Max. Units Conditions Input Supply Voltage 3.2 6.5 V Input Quiescent Current 40 µa V IN=5V, No load Input Shutdown Current 0.1 1 µa V IN=5V, V EN=0V Maximum Output Current per channel 1.5 A Output Leakage Current 0.5 1 µa V EN=0V, V OUT=0V Output MOSFET Resistance 85 mω I OUT=0.1A Output turn-on rise time 400 µs V IN=5V, R L=10Ω, C OUT not used Output turn-off fall time 0.7 20 µs V IN=5V, R L=10Ω, C OUT not used Current limit threshold 1.6 2.5 3.2 A EN input threshold 0.4 0.8 1.2 V Over temperature shutdown threshold Over temperature shutdown threshold hysteresis 145 C Temperature rising 20 C Under-voltage lockout threshold 2.3 V V IN rising Under-voltage lockout hysteresis 200 mv FLG output logic low voltage 400 mv FLG blanking time 4 9 ms FLG Off-State Current 1 µa 2012 Exar Corporation 2/9 Rev. 1.1.0

BLOCK DIAGRAM PIN ASSIGNMENT Fig. 2: Block Diagram Fig. 3: Pin Assignment PIN DESCRIPTION Name Pin Number Description EN 1 Channel Enable Input Active High GND 2 Ground Signal FLG 3 IN 4 Voltage Input Pin OUT 5 Voltage Output Pin Error Flag Signal Active low open drain output. Active on over-current, over-temperature, short-circuit or UVLO conditions. ORDERING INFORMATION Part Number Temperature Range Marking Package Packing Quantity Note 1 Note 2 ISTR-F -40 C T A +85 C KCWW X 5-Pin SOT23 2.5K/Tape & Reel RoHS Compliant Halogen Free Single Channel Active high EVB Evaluation Board YY = Year WW = Work Week X = Lot Number; when applicable. 2012 Exar Corporation 3/9 Rev. 1.1.0

On-State Supply Current (µa) TYPICAL PERFORMANCE CHARACTERISTICS All data taken at V IN = 5V, C IN = 1µF, C OUT = 22µF, T J = T A = 25 C, unless otherwise specified - Schematic and BOM from Application Information section of this datasheet. Fig. 4: Output On-Resistance vs. Supply Voltage Fig. 5: Output On-Resistance vs. Temperature 70 60 50 40 30 20 Ta = 25 C 10 0 3 3.5 4 4.5 5 5.5 6 6.5 Supply Voltage (V) Fig. 6: ON-State Supply Current vs. Supply Voltage Fig. 7: ON-State Supply Current vs. Temperature Fig. 8: Current Limit Threshold vs. Supply Voltage Fig. 9: Current Limit Threshold vs. Temperature 2012 Exar Corporation 4/9 Rev. 1.1.0

Fig. 10: Flag Delay Time vs. Supply Voltage Fig. 11: Flag Delay Time vs. Temperature Fig. 12: Enable Threshold vs. Supply Voltage Fig. 13: UVLO Threshold Voltage vs. Temperature Fig. 14: Output Rising Time vs. Temperature Fig. 15: Short circuit protection V IN = 5.0V 2012 Exar Corporation 5/9 Rev. 1.1.0

Fig. 16: Turn-On/Off Characteristics C OUT=1µF, R LOAD=10Ω Fig. 17: Turn-On/Off Characteristics C OUT=1µF,R LOAD=5.1Ω Fig. 18: Current Limit Operation V IN = 5V, R LOAD = 2.5Ω Fig. 19: Current Limit Operation V IN = 5.2V, R LOAD = 2.5Ω 2012 Exar Corporation 6/9 Rev. 1.1.0

APPLICATION INFORMATION The device is a single channel integrated high-side power distribution switch that can be used in any self or bus powered USB applications. It is compliant with the latest USB 3.0 specifications. The reverse current protection feature prevents current to flow from OUT to IN when the device is disabled. INPUT & OUTPUT It is important to place a 1μF ceramic bypass capacitor from IN to GND as close as possible to the device in order to control supply transients. A high capacitor value can further reduce voltage droop on the input. Placing bulk capacitance of at least 22μF at the output pin reduces power supply transients under heavy current load conditions. Furthermore, bypassing the output pin with a 0.1μF to 1μF ceramic capacitor placed close to OUT and PGND improves the device response to short-circuit transients. ENABLE CONTROL The device is disabled when the enable pin is in logic low condition. During this condition, the internal circuitry and the switch are turned off thereby reducing the supply current 0.1µA typical. Enable must be driven logic high for a clearly defined input. Floating the input may cause unpredictable operation. ERROR FLAG The error flag signal (FLG output pin) is an open-drain output and is pulled low (active low) upon detection of the following fault conditions: Over-current condition Over-temperature condition Short-circuit condition Under voltage lockout condition Under voltage lockout condition is flagged immediately while the over current, overtemperature and short-circuit conditions are reported only if the condition persists continuously for longer than the blanking time of 9ms typical. The blanking time prevents erroneous reporting of current faults due to brief output current spikes. Once activated, the error flag signal remains low until all fault conditions have been removed. CURRENT LIMIT The current limit threshold is preset internally. It protects the output MOSFET switch from damages resulting from undesirable short circuit conditions or excess inrush current, which is often encountered during hot plug-in. The low limit of the current limit threshold of the allows a minimum current of 1.6A through the MOSFET switch. An over-current condition is detected once the current limit threshold is exceeded, and output current is then limited to a constant current value. Triggering the current limit function is signaled by the Error Flag after 9ms of blanking time period. UNDER-VOLTAGE LOCKOUT Under-voltage lockout function (UVLO) keeps the internal power switch from being turned on until the power supply exceeds 2.3V typically, even if the switch is enabled. Upon detection of an input voltage below approximately 2.3V, the power switch is turned off and a fault condition is reported by the error flag signal. THERMAL PROTECTION Internal thermal sensing circuitry monitors the operating temperature of the device. Upon detection of a temperature in excess of 145 C, the power switch is disabled preventing any damages to the device while a fault condition is reported by the error flag signal. A built-in 20 C hysteresis allows the device to cool down to 125 C before resuming normal operation by turning the switch on. At this time, the error flag signal is cleared. 2012 Exar Corporation 7/9 Rev. 1.1.0

TEST CIRCUIT PACKAGE SPECIFICATION 5-PIN SOT23 2012 Exar Corporation 8/9 Rev. 1.1.0

REVISION HISTORY Revision Date Description 1.1.0 09/18/2012 Initial release of datasheet FOR FURTHER ASSISTANCE Email: Exar Technical Documentation: customersupport@exar.com http://www.exar.com/techdoc/default.aspx? EXAR CORPORATION HEADQUARTERS AND SALES OFFICES 48720 Kato Road Fremont, CA 94538 USA Tel.: +1 (510) 668-7000 Fax: +1 (510) 668-7030 www.exar.com NOTICE EXAR Corporation reserves the right to make changes to the products contained in this publication in order to improve design, performance or reliability. EXAR Corporation assumes no responsibility for the use of any circuits described herein, conveys no license under any patent or other right, and makes no representation that the circuits are free of patent infringement. Charts and schedules contained here in are only for illustration purposes and may vary depending upon a user s specific application. While the information in this publication has been carefully checked; no responsibility, however, is assumed for inaccuracies. EXAR Corporation does not recommend the use of any of its products in life support applications where the failure or malfunction of the product can reasonably be expected to cause failure of the life support system or to significantly affect its safety or effectiveness. Products are not authorized for use in such applications unless EXAR Corporation receives, in writing, assurances to its satisfaction that: (a) the risk of injury or damage has been minimized; (b) the user assumes all such risks; (c) potential liability of EXAR Corporation is adequately protected under the circumstances. Reproduction, in part or whole, without the prior written consent of EXAR Corporation is prohibited. 2012 Exar Corporation 9/9 Rev. 1.1.0