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NLSX3013FCT1G Datasheet(PDF) 5 Page - ON Semiconductor |
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NLSX3013FCT1G Datasheet(HTML) 5 Page - ON Semiconductor |
5 / 10 page NLSX3013 www.onsemi.com 5 DC ELECTRICAL CHARACTERISTICS Symbol Parameter Test Conditions (Note 1) VCC (V) (Note 2) VL (V) (Note 3) −40 5C to +855C Unit Min Typ (Note 4) Max VIHC I/O VCC Input HIGH Voltage 1.3 to 4.5 0.9 to (VCC – 0.4) 0.8 * VCC − − V VILC I/O VCC Input LOW Voltage 1.3 to 4.5 0.9 to (VCC – 0.4) − − 0.2 * VCC V VIHL I/O VL Input HIGH Voltage 1.3 to 4.5 0.9 to (VCC – 0.4) 0.8 * VL − − V VILL I/O VL Input LOW Voltage 1.3 to 4.5 0.9 to (VCC – 0.4) − − 0.2 * VL V VIH Control Pin Input HIGH Voltage TA = +25°C 1.3 to 4.5 0.9 to (VCC – 0.4) 0.8 * VL − − V VIL Control Pin Input LOW Voltage TA = +25°C 1.3 to 4.5 0.9 to (VCC – 0.4) − − 0.2 * VL V VOHC I/O VCC Output HIGH Voltage I/O VCC Source Current = 20 mA 1.3 to 4.5 0.9 to (VCC – 0.4) 0.8 * VCC − − V VOLC I/O VCC Output LOW Voltage I/O VCC Sink Current = 20 mA 1.3 to 4.5 0.9 to (VCC – 0.4) − − 0.2 * VCC V VOHL I/O VL Output HIGH Voltage I/O VL Source Current = 20 mA 1.3 to 4.5 0.9 to (VCC – 0.4) 0.8 * VL − − V VOLL I/O VL Output LOW Voltage I/O VL Sink Current = 20 mA 1.3 to 4.5 0.9 to (VCC – 0.4) − − 0.2 * VL V Product parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted. Product performance may not be indicated by the Electrical Characteristics if operated under different conditions. 1. Normal test conditions are VEN = 0 V, CIOVCC = 15 pF and CIOVL = 15 pF, unless otherwise specified. 2. VCC is the supply voltage associated with the high voltage port, and VCC ranges from +1.3 V to 4.5 V under normal operating conditions. 3. VL is the supply voltage associated with the low voltage port. VL must be less than or equal to (VCC – 0.4) V during normal operation. However, during startup and shutdown conditions, VL can be greater than (VCC – 0.4) V. 4. Typical values are for VCC = +2.8 V, VL = +1.8 V and TA = +25°C. All units are production tested at TA = +25°C. Limits over the operating temperature range are guaranteed by design. POWER CONSUMPTION Symbol Parameter Test Conditions (Note 5) VCC (V) (Note 6) VL (V) (Note 7) −40 5C to +855C Unit Min Typ Max IQ−VCC Supply Current from VCC EN = VL; I/O VCCn = 0 V, I/O VLn = 0 V, I/O VCCn = VCC or I/O VLn = VL and Io = 0 1.3 to 3.6 0.9 to (VCC – 0.4) − − 1.0 mA IQ−VL Supply Current from VL EN = VL; I/O VCCn = 0 V, I/O VLn = 0 V, I/O VCCn = VCC or I/O VLn = VL and Io = 0 1.3 to 3.6 0.9 to (VCC – 0.4) − − 1.0 mA EN = VL, I/O VCCn = 0 V, I/O VLn = 0 V, I/O VCCn = VCC or I/O VLn = (VCC − 0.2 V) and Io = 0 < (VCC – 0.2) − − 2.0 ITS−VCC VCC Tristate Output Mode Supply Current EN = 0 V 1.3 to 3.6 0.9 to (VCC – 0.4) − − 1.0 mA ITS−VL VL Tristate Output Mode Supply Current EN = 0 V 1.3 to 3.6 0.9 to (VCC – 0.4) − − 0.2 mA EN = 0 V VCC − 0.2 − − 2.0 IOZ I/O Tristate Output Mode Leakage Current EN = 0 V 1.3 to 3.6 0.9 to (VCC – 0.4) − − 0.15 mA EN = 0 V VCC – 0.2 − − 2.0 IEN Output Enable Pin Input Current − 1.3 to 3.6 0.9 to (VCC – 0.4) − − 1.0 mA 5. Normal test conditions are VEN = 0 V, CIOVCC = 15 pF and CIOVL = 15 pF, unless otherwise specified. 6. VCC is the supply voltage associated with the high voltage port, and VCC ranges from +1.3 V to 4.5 V under normal operating conditions. 7. VL is the supply voltage associated with the low voltage port. VL must be less than or equal to (VCC – 0.4) V during normal operation. However, during startup and shutdown conditions, VL can be greater than (VCC – 0.4) V. |
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