NC7SP158 ULP 2-Input Inverting Multiplexer
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NC7SP158L6X (pdf) |
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NC7SP158P6X |
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NC7SV158P6X |
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NC7SV158L6X |
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NC7SP158 ULP 2-Input Inverting Multiplexer NC7SP158 ULP 2-Input Inverting Multiplexer The NC7SP158 is a single 2-Input Inverting Multiplexer from Fairchild’s Ultra Low Power ULP Series of Ideal for applications where battery life is critical, this product is designed for ultra low power consumption within the VCC operating range of 0.9V to 3.6V VCC. The internal circuit is composed of a minimum of inverter stages, including the output buffer, to enable ultra low static and dynamic power. The NC7SP158, for lower drive requirements, is uniquely designed for optimized power and speed, and is fabricated with an advanced CMOS technology to achieve best in class speed operation while maintaining extremely low CMOS power dissipation. s 0.9V to 3.6V VCC supply operation s 3.6V overvoltage tolerant I/O’s at VCC from 0.9V to 3.6V s tPD ns typ for 3.0V to 3.6V VCC ns typ for 2.3V to 2.7V VCC ns typ for 1.65V to 1.95V VCC ns typ for 1.40V to 1.60V VCC ns typ for 1.10V to 1.30V VCC ns typ for 0.90V VCC s Power-Off high impedance inputs and outputs s Static Drive IOH/IOL mA 3.00V VCC mA 2.30V VCC mA 1.65V VCC mA 1.40V VCC mA 1.10V VCC ±20 µA 0.9V VCC s Uses patented Quiet noise/EMI reduction circuitry s Ultra small leadfree package s Ultra low dynamic power Ordering Code: Order Number NC7SP158P6X NC7SP158L6X Package Number MAA06A MAC06A Product Code Top Mark Package Description 6-Lead SC70, EIAJ SC88, 1.25mm Wide 6-Lead MicroPak, 1.0mm Wide Supplied As 3k Units on Tape and Reel 5k Units on Tape and Reel Battery Life vs. VCC Supply Voltage TinyLogic ULP and ULP-A with up to 50% less power consumption can extend your battery life significantly. Battery Life = Vbattery *Ibattery*.9 / Pdevice /24hrs/day Where, Pdevice = ICC * VCC + CPD + CL * VCC2 * f Assumes ideal 3.6V Lithium Ion battery with current rating of 900mAH and derated 90% and device frequency at 10MHz, with CL = 15 pF load is a registered trademark of Fairchild Semiconductor Corporation. Quiet and are trademarks of Fairchild Semiconductor Corporation. 2004 Fairchild Semiconductor Corporation DS500681 NC7SP158 Logic Symbol Connection Diagrams Pin Assignments for SC70 Pin Descriptions Pin Names I0, I1 S Z Function Table Inputs H = HIGH Logic Level L = LOW Logic Level Description Data Inputs Control Input Output Output Z = I0 • S + I1 • S H L H L Top View Pin One Orientation Diagram AAA = Product Code Top Mark - see ordering code Note Orientation of Top Mark determines Pin One location. Read the top product code mark left to right, Pin One is the lower left pin see diagram . Pad Assignments for MicroPak Top Thru View NC7SP158 Absolute Maximum Ratings Note 1 Recommended Operating Supply Voltage VCC DC Input Voltage VIN DC Output Voltage VOUT HIGH or LOW State Note 2 VCC = 0V DC Input Diode Current IIK VIN < 0V DC Output Diode Current IOK VOUT < 0V VOUT > VCC DC Output Source/Sink Current IOH/IOL DC VCC or Ground Current per Supply Pin ICC or Ground Storage Temperature Range TSTG −0.5V to +4.6V −0.5V to +4.6V −0.5V to VCC +0.5V −0.5V to 4.6V ±50 mA −50 mA +50 mA ± 50 mA ± 50 mA −65°C to +150°C Conditions Note 3 Supply Voltage Input Voltage VIN Output Voltage VOUT HIGH or LOW State VCC = 0V Output Current in IOH/IOL VCC = 3.0V to 3.6V VCC = 2.3V to 2.7V VCC = 1.65V to 1.95V VCC = 1.40V to 1.60V VCC = 1.10V to 1.30V VCC = 0.9V Free Air Operating Temperature TA Minimum Input Edge Rate 0.9V to 3.6V 0V to 3.6V 0V to VCC 0V to 3.6V mA ± mA ± mA ± 1 mA ±20 µA −40°C to +85°C VIN = 0.8V to 2.0V, VCC = 3.0V 10 ns/V Note 1 Absolute Maximum Ratings are those values beyond which the safety of the device cannot be guaranteed. The device should not be operated at these limits. The parametric values defined in the Electrical Characteristics tables are not guaranteed at the absolute maximum ratings. The “Recommended Operating Conditions” table will define the conditions for actual device operation. Note 2 IO Absolute Maximum Rating must be observed. Note 3 Unused inputs must be held HIGH or LOW. They may not float. DC Electrical Characteristics Parameter HIGH Level Input Voltage LOW Level Input Voltage HIGH Level Output Voltage TA = +25°C x VCC x VCC x VCC x VCC VCC − VCC − VCC − VCC − VCC − VCC − x VCC |
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