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NC7SP00L6X

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NC7SP00L6X

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Part Number NC7SP00L6X
Manufacturer Fairchild/ON Semiconductor
Description IC GATE NAND 1CH 2-INP 6MICROPAK
Datasheet NC7SP00L6X Datasheet
Package 6-UFDFN
In Stock 263,612 piece(s)
Unit Price $ 0.1359 *
Lead Time Can Ship Immediately
Estimated Delivery Time Dec 4 - Dec 9 (Choose Expedited Shipping)
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Part Number # NC7SP00L6X (Logic - Gates and Inverters) is manufactured by Fairchild/ON Semiconductor and distributed by Heisener. Being one of the leading electronics distributors, we carry many kinds of electronic components from some of the world’s top class manufacturers. Their quality is guaranteed by its stringent quality control to meet all required standards.

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NC7SP00L6X Specifications

ManufacturerFairchild/ON Semiconductor
CategoryIntegrated Circuits (ICs) - Logic - Gates and Inverters
Datasheet NC7SP00L6XDatasheet
Package6-UFDFN
Series7SP
Logic TypeNAND Gate
Number of Circuits1
Number of Inputs2
Features-
Voltage - Supply0.9 V ~ 3.6 V
Current - Quiescent (Max)0.9µA
Current - Output High, Low2.6mA, 2.6mA
Logic Level - Low0.7 V ~ 0.9 V
Logic Level - High1.6 V ~ 2.1 V
Max Propagation Delay @ V, Max CL7ns @ 3.3V, 30pF
Operating Temperature-40°C ~ 85°C
Mounting TypeSurface Mount
Supplier Device Package6-MicroPak
Package / Case6-UFDFN

NC7SP00L6X Datasheet

Page 1

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To learn more about ON Semiconductor, please visit our website at www.onsemi.com Please note: As part of the Fairchild Semiconductor integration, some of the Fairchild orderable part numbers will need to change in order to meet ON Semiconductor’s system requirements. Since the ON Semiconductor product management systems do not have the ability to manage part nomenclature that utilizes an underscore (_), the underscore (_) in the Fairchild part numbers will be changed to a dash (-). This document may contain device numbers with an underscore (_). Please check the ON Semiconductor website to verify the updated device numbers. The most current and up-to-date ordering information can be found at www.onsemi.com. Please email any questions regarding the system integration to Fairchild_questions@onsemi.com. Is Now Part of ON Semiconductor and the ON Semiconductor logo are trademarks of Semiconductor Components Industries, LLC dba ON Semiconductor or its subsidiaries in the United States and/or other countries. ON Semiconductor owns the rights to a number of patents, trademarks, copyrights, trade secrets, and other intellectual property. A listing of ON Semiconductor’s product/patent coverage may be accessed at www.onsemi.com/site/pdf/Patent-Marking.pdf. ON Semiconductor reserves the right to make changes without further notice to any products herein. ON Semiconductor makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does ON Semiconductor assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation special, consequential or incidental damages. Buyer is responsible for its products and applications using ON Semiconductor products, including compliance with all laws, regulations and safety requirements or standards, regardless of any support or applications information provided by ON Semiconductor. “Typical” parameters which may be provided in ON Semiconductor data sheets and/or specifications can and do vary in different applications and actual performance may vary over time. All operating parameters, including “Typicals” must be validated for each customer application by customer’s technical experts. ON Semiconductor does not convey any license under its patent rights nor the rights of others. ON Semiconductor products are not designed, intended, or authorized for use as a critical component in life support systems or any FDA Class 3 medical devices or medical devices with a same or similar classification in a foreign jurisdiction or any devices intended for implantation in the human body. Should Buyer purchase or use ON Semiconductor products for any such unintended or unauthorized application, Buyer shall indemnify and hold ON Semiconductor and its officers, employees, subsidiaries, affiliates, and distributors harmless against all claims, costs, damages, and expenses, and reasonable attorney fees arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such claim alleges that ON Semiconductor was negligent regarding the design or manufacture of the part. ON Semiconductor is an Equal Opportunity/Affirmative Action Employer. This literature is subject to all applicable copyright laws and is not for resale in any manner.

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© 2004 Fairchild Semiconductor Corporation DS500577 www.fairchildsemi.com June 2002 Revised March 2004 N C 7 S P 0 0 T in y L o g ic U L P 2 -In p u t N A N D G a te NC7SP00 TinyLogic ULP 2-Input NAND Gate General Description The NC7SP00 is a single 2-input NAND Gate from Fairchild’s Ultra Low Power (ULP) Series of TinyLogic . Ideal for applications where battery life is critical, this prod- uct is designed for ultra low power consumption within the VCC operating range of 0.9V to 3.6V. The internal circuit is composed of a minimum of inverter stages including the output buffer, to enable ultra low static and dynamic power. The NC7SP00, 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. Features ■0.9V to 3.6V VCC supply operation ■3.6V overvoltage tolerant I/O’s at VCC from 0.9V to 3.6V ■ tPD 3 ns typ for 3.0V to 3.6V VCC 4 ns typ for 2.3V to 2.7V VCC 5 ns typ for 1.65V to 1.95V VCC 6 ns typ for 1.40V to 1.60V VCC 9 ns typ for 1.10V to 1.30V VCC 24 ns typ for 0.90V VCC ■Power-off high impedance inputs and outputs ■Static Drive (IOH/IOL) ± 2.6 mA @ 3.00V VCC ± 2.1 mA @ 2.30V VCC ± 1.5 mA @ 1.65V VCC ± 1.0 mA @ 1.40V VCC ± 0.5 mA @ 1.10V VCC ± 20 µ A @ 0.9V VCC circuitry ■Ultra small MicroPak leadfree package ■Ultra low dynamic power Ordering Code: 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) * VCC 2 * 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 TinyLogic is a registered trademark, and MicroPak and Quiet Series are trademarks of Fairchild Semiconductor Corporation. Order Number Package Product Code Package Description Supplied As Number Top Mark NC7SP00P5X MAA05A P00 5-Lead SC70, EIAJ SC-88a, 1.25mm Wide 3k Units on Tape and Reel NC7SP00L6X MAC06A J4 6-Lead MicroPak, 1.0mm Wide 5k Units on Tape and Reel ■Uses proprietary Quiet Series noise/EMI reduction

Page 4

www.fairchildsemi.com 2 N C 7 S P 0 0 Logic Symbol Pin Descriptions Function Table Y = AB H = HIGH Logic Level L = LOW Logic Level Connection Diagrams Pin Assignments for SC70 (Top View) Pad Assignments for MicroPak (Top Thru View) Pin Names Description A, B Inputs Y Output NC No Connect Inputs Output A B Y L L H L H H H L H H H L

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3 www.fairchildsemi.com N C 7 S P 0 0 Absolute Maximum Ratings(Note 1) Recommended Operating Conditions (Note 3) Note 1: Absolute Maximum Ratings: are those values beyond which the safety of the device cannot be guaranteed. The device should not be oper- ated at these limits. The parametric values defined in the Electrical Charac- teristics 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 Supply Voltage (VCC) − 0.5V to + 4.6V DC Input Voltage (VIN) − 0.5V to + 4.6V DC Output Voltage (VOUT) HIGH or LOW State (Note 2) − 0.5V to VCC + 0.5V VCC = 0V − 0.5V to 4.6V DC Input Diode Current (IIK) VIN < 0V ± 50 mA DC Output Diode Current (IOK) VOUT < 0V − 50 mA VOUT > VCC + 50 mA DC Output Source/Sink Current (IOH/IOL) ± 50 mA DC VCC or Ground Current per Supply Pin (ICC or Ground) ± 50 mA Storage Temperature Range (TSTG) − 65° C to + 150° C Supply Voltage 0.9V to 3.6V Input Voltage (VIN) 0V to 3.6V Output Voltage (VOUT) HIGH or LOW State 0V to VCC VCC = 0V 0V to 3.6V Output Current in IOH/IOL VCC = 3.0V to 3.6V ± 2.6 mA VCC = 2.3V to 2.7V ± 2.1 mA VCC = 1.65V to 1.95V ± 1.5 mA VCC = 1.40V to 1.60V ± 1 mA VCC = 1.10V to 1.30V ± 0.5 mA VCC = 0.9V ± 20 µ A Free Air Operating Temperature (TA) − 40° C to + 85° C Minimum Input Edge Rate (∆ t/∆ V) VIN = 0.8V to 2.0V, VCC = 3.0V 10 ns/V Symbol Parameter VCC TA = + 25° C TA = − 40° C to + 85° C Units Conditions (V) Min Max Min Max VIH HIGH Level 0.90 0.65 x VCC 0.65 x VCC V Input Voltage 1.10 ≤ VCC ≤ 1.30 0.65 x VCC 0.65 x VCC 1.40 ≤ VCC ≤ 1.60 0.65 x VCC 0.65 x VCC 1.65 ≤ VCC ≤ 1.95 0.65 x VCC 0.65 x VCC 2.30 ≤ VCC ≤ 2.70 1.6 1.6 3.00 ≤ VCC ≤ 3.60 2.1 2.1 VIL LOW Level 0.90 0.35 x VCC 0.35 x VCC V Input Voltage 1.10 ≤ VCC ≤ 1.30 0.35 x VCC 0.35 x VCC 1.40 ≤ VCC ≤ 1.60 0.35 x VCC 0.35 x VCC 1.65 ≤ VCC ≤ 1.95 0.35 x VCC 0.35 x VCC 2.30 ≤ VCC ≤ 2.70 0.7 0.7 3.00 ≤ VCC ≤ 3.60 0.9 0.9 VOH HIGH Level 0.90 VCC − 0.1 VCC − 0.1 V IOH = − 20 µ A Output Voltage 1.10 ≤ VCC ≤ 1.30 VCC − 0.1 VCC − 0.1 1.40 ≤ VCC ≤ 1.60 VCC − 0.1 VCC − 0.1 1.65 ≤ VCC ≤ 1.95 VCC − 0.1 VCC − 0.1 2.30 ≤ VCC ≤ 2.70 VCC − 0.1 VCC − 0.1 3.00 ≤ VCC ≤ 3.60 VCC − 0.1 VCC − 0.1 1.10 ≤ VCC ≤ 1.30 0.75 x VCC 0.70 x VCC IOH = − 0.5 mA 1.40 ≤ VCC ≤ 1.60 1.07 0.99 IOH = − 1 mA 1.65 ≤ VCC ≤ 1.95 1.24 1.22 IOH = − 1.5 mA 2.30 ≤ VCC ≤ 2.70 1.95 1.87 IOH = − 2.1 mA 3.00 ≤ VCC ≤ 3.60 2.61 2.55 IOH = − 2.6 mA

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www.fairchildsemi.com 4 N C 7 S P 0 0 DC Electrical Characteristics (Continued) AC Electrical Characteristics Symbol Parameter VCC TA = + 25°C TA = − 40° C to + 85° C Units Conditions (V) Min Max Min Max VOL LOW Level 0.90 0.1 0.1 V IOL = 20 µ A Output Voltage 1.10 ≤ VCC ≤ 1.30 0.1 0.1 1.40 ≤ VCC ≤ 1.60 0.1 0.1 1.65 ≤ VCC ≤ 1.95 0.1 0.1 2.30 ≤ VCC ≤ 2.70 0.1 0.1 3.00 ≤ VCC ≤ 3.60 0.1 0.1 1.10 ≤ VCC ≤ 1.30 0.30 x VCC 0.30 x VCC IOL = 0.5 mA 1.40 ≤ VCC ≤ 1.60 0.31 0.37 IOL = 1 mA 1.65 ≤ VCC ≤ 1.95 0.31 0.35 IOL = 1.5 mA 2.30 ≤ VCC ≤ 2.70 0.31 0.33 IOL = 2.1 mA 3.00 ≤ VCC ≤ 3.60 0.31 0.33 IOL = 2.6 mA IIN Input Leakage Current 0.90 to 3.60 ± 0.1 ± 0.5 µ A 0 ≤ VI ≤ 3.6V IOFF Power Off Leakage Current 0 0.5 0.5 µ A 0 ≤ (VI, VO) ≤ 3.6V ICC Quiescent Supply Current 0.90 to 3.60 0.9 0.9 µ A VI = VCC or GND Symbol Parameter VCC TA = + 25° C TA = − 40° C to + 85° C Units Conditions Figure Number(V) Min Typ Max Min Max tTHL, Propagation Delay 0.90 24 ns Figures 1, 2 tPLH 1.10 ≤ VCC ≤ 1.30 4.0 9 19.0 3.5 31.0 1.40 ≤ VCC ≤ 1.60 2.0 6 12.0 1.5 14.0 CL = 10 pF 1.65 ≤ VCC ≤ 1.95 1.5 5 10.0 1.0 12.0 RL = 1 MΩ 2.30 ≤ VCC ≤ 2.70 1.0 4 7.0 0.8 8.0 3.00 ≤ VCC ≤ 3.60 1.0 3 6.0 0.5 7.0 tPHL, Propagation Delay 0.90 27 ns Figures 1, 2 tPLH 1.10 ≤ VCC ≤ 1.30 5.0 10 20.0 4.5 34.0 1.40 ≤ VCC ≤ 1.60 3.0 7 13.0 2.5 16.0 CL = 15 pF 1.65 ≤ VCC ≤ 1.95 2.0 5 10.0 2.0 12.0 RL = 1 MΩ 2.30 ≤ VCC ≤ 2.70 1.5 4 7.0 1.0 8.0 3.00 ≤ VCC ≤ 3.60 1.0 3 6.0 0.5 7.0 tPHL Propagation Delay 0.90 34 ns Figures 1, 2 tPLH 1.10 ≤ VCC ≤ 1.30 6.0 12 24.0 5.0 43.0 1.40 ≤ VCC ≤ 1.60 4.0 8 16.0 3.0 18.0 CL = 30 pF 1.65 ≤ VCC ≤ 1.95 2.0 6 12.0 2.0 14.0 RL = 1 MΩ 2.30 ≤ VCC ≤ 2.70 1.0 5 9.0 1.0 10.0 3.00 ≤ VCC ≤ 3.60 0.8 4 7.0 0.5 9.0 CIN Input Capacitance 0 2.0 pF COUT Output Capacitance 0 4.0 pF CPD Power Dissipation 0.9 to 3.60 6 pF VI = 0V or VCC, Capacitance f = 10 MHz

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5 www.fairchildsemi.com N C 7 S P 0 0 AC Loading and Waveforms FIGURE 1. AC Test Circuit FIGURE 2. AC Waveforms Symbol VCC 3.3V ± 0.3V 2.5V ± 0.2V 1.8V ± 0.15V 1.5V ± 0.10V 1.2V ± 0.10V 0.9V Vmi 1.5V VCC/2 VCC/2 VCC/2 VCC/2 VCC/2 Vmo 1.5V VCC/2 VCC/2 VCC/2 VCC/2 VCC/2

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www.fairchildsemi.com 6 N C 7 S P 0 0 Tape and Reel Specification TAPE FORMAT for SC70 TAPE DIMENSIONS inches (millimeters) Package Tape Number Cavity Cover Tape Designator Section Cavities Status Status Leader (Start End) 125 (typ) Empty Sealed P5X Carrier 3000 Filled Sealed Trailer (Hub End) 75 (typ) Empty Sealed Package Tape Size DIM A DIM B DIM F DIM Ko DIM P1 DIM W SC70-5 8 mm 0.093 0.096 0.138 ± 0.004 0.053 ± 0.004 0.157 0.315 ± 0.004 (2.35) (2.45) (3.5 ± 0.10) (1.35 ± 0.10) (4) (8 ± 0.1)

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7 www.fairchildsemi.com N C 7 S P 0 0 Tape and Reel Specification (Continued) TAPE FORMAT for MicroPak TAPE DIMENSIONS inches (millimeters) REEL DIMENSIONS inches (millimeters) Package Tape Number Cavity Cover Tape Designator Section Cavities Status Status L6X Leader (Start End) 125 (typ) Empty Sealed Carrier 5000 Filled Sealed Trailer (Hub End) 75 (typ) Empty Sealed Tape Size A B C D N W1 W2 W3 8 mm 7.0 0.059 0.512 0.795 2.165 0.331 + 0.059/− 0.000 0.567 W1 + 0.078/− 0.039 (177.8) (1.50) (13.00) (20.20) (55.00) (8.40 + 1.50/− 0.00) (14.40) (W1 + 2.00/− 1.00)

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www.fairchildsemi.com 8 N C 7 S P 0 0 Physical Dimensions inches (millimeters) unless otherwise noted 5-Lead SC70, EIAJ SC-88a, 1.25mm Wide Package Number MAA05A

NC7SP00L6X Reviews

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Carm*****Mital

November 20, 2020

Went well this time Now have the IC and very pleased.

Nay*****alter

November 16, 2020

Wow super fast delivery, product as described good company!

Dari*****leming

November 14, 2020

Your technical assistance and professionalism cannot be complained!

Ayli*****lmes

November 14, 2020

the parts work as they should. Amazing price perfect all round many thanks

Viva*****oodard

October 22, 2020

These very economical items will repair my expensive contactors with just a quick connection.

Aria*****Golla

October 18, 2020

Fast shipping. Got it in few dayss from Hong Kong

Darr*****Gulati

October 18, 2020

I took the chance and used it and I worked fine for me.

Esteb*****clure

October 15, 2020

Always the correct parts in the correct amounts are received. Fantastic Quality Control and Great Selection. Heisener has became to be one of my best suppliers for many years now.

Viha*****nthony

October 8, 2020

Nice to have an assortment on hand, just in case. Happy with this purchase.

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