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NC7WZ240K8X

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NC7WZ240K8X

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Part Number NC7WZ240K8X
Manufacturer ON Semiconductor
Description IC BUFFER INVERT 5.5V US8
Datasheet NC7WZ240K8X Datasheet
Package 8-VFSOP (0.091", 2.30mm Width)
In Stock 8,560 piece(s)
Unit Price $ 0.1730 *
Lead Time Can Ship Immediately
Estimated Delivery Time Dec 2 - Dec 7 (Choose Expedited Shipping)
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Part Number # NC7WZ240K8X (Logic - Buffers, Drivers, Receivers, Transceivers) is manufactured by 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.

For NC7WZ240K8X specifications/configurations, quotation, lead time, payment terms of further enquiries please have no hesitation to contact us. To process your RFQ, please add NC7WZ240K8X with quantity into BOM. Heisener.com does NOT require any registration to request a quote of NC7WZ240K8X.

NC7WZ240K8X Specifications

ManufacturerON Semiconductor
CategoryIntegrated Circuits (ICs) - Logic - Buffers, Drivers, Receivers, Transceivers
Datasheet NC7WZ240K8XDatasheet
Package8-VFSOP (0.091", 2.30mm Width)
Series7WZ
Logic TypeBuffer, Inverting
Number of Elements2
Number of Bits per Element1
Input Type-
Output Type3-State
Current - Output High, Low32mA, 32mA
Voltage - Supply1.65 V ~ 5.5 V
Operating Temperature-40°C ~ 85°C (TA)
Mounting TypeSurface Mount
Package / Case8-VFSOP (0.091", 2.30mm Width)
Supplier Device PackageUS8

NC7WZ240K8X Datasheet

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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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© 2005 Fairchild Semiconductor Corporation DS500398 www.fairchildsemi.com March 2001 Revised January 2005 N C 7 W Z 2 4 0 T in y L o g ic U H S D u a l In v e rtin g B u ffe r w ith 3 -S T A T E O u tp u ts NC7WZ240 TinyLogic UHS Dual Inverting Buffer with 3-STATE Outputs General Description The NC7WZ240 is a Dual Inverting Buffer with indepen- dent active LOW enables for the 3-STATE outputs. The Ultra High Speed device is fabricated with advanced CMOS technology to achieve superior switching perfor- mance with high output drive while maintaining low static power dissipation over a broad VCC operating range. The device is specified to operate over the 1.65V to 5.5V VCC operating range. The inputs and outputs are high imped- ance when VCC is 0V. Inputs tolerate voltages up to 5.5V independent of VCC operating range. Outputs tolerate volt- ages above VCC when in the 3-STATE condition. Features ■Space saving US8 surface mount package ■MicroPak Pb-Free leadless package ■Ultra High Speed; tPD 2.3 ns typ into 50 pF at 5V VCC ■High Output Drive; ± 24 mA at 3V VCC ■Broad VCC Operating Range: 1.65V to 5.5V ■Matches the performance of LCX when operated at 3.3V VCC ■Power down high impedance inputs/outputs ■Overvoltage tolerant inputs facilitate 5V to 3V translation ■Outputs are overvoltage tolerant in 3-STATE mode Ordering Code: Pb-Free package per JEDEC J-STD-020B. TinyLogic is a registered trademark of Fairchild Semiconductor Corporation. MicroPak is a trademark of Fairchild Semiconductor Corporation. Product Package Description Supplied AsOrder Package Code Number Number Top Mark NC7WZ240K8X MAB08A WZ40 8-Lead US8, JEDEC MO-187, Variation CA 3.1mm Wide 3k Units on Tape and Reel NC7WZ240L8X MAC08A U7 Pb-Free 8-Lead MicroPak, 1.6 mm Wide 5k Units on Tape and Reel ■Proprietary noise/EMI reduction circuitry implemented

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www.fairchildsemi.com 2 N C 7 W Z 2 4 0 Logic Symbol IEEE/IEC Pin Descriptions Function Table H = HIGH Logic Level L = LOW Logic Level Z = 3-STATE Connection Diagrams Pin Assignments for US8 (Top View) Pin One Orientation Diagram AAA represents 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 Assignment for MicroPak (Top Through View) Pin Names Description OEn Enable Inputs for 3-STATE Outputs An Inputs Yn 3-STATE Outputs Inputs Output OE An Yn L L H L H L H L Z H H Z

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3 www.fairchildsemi.com N C 7 W Z 2 4 0 Absolute Maximum Ratings(Note 1) Recommended Operating Conditions (Note 3) Note 1: Absolute maximum ratings are DC values beyond which the device may be damaged or have its useful life impaired. The datasheet specifica- tions should be met, without exception, to ensure that the system design is reliable over its power supply, temperature, and output/input loading vari- ables. Fairchild does not recommend operation outside datasheet specifi- cations. Note 2: The input and output negative voltage ratings may be exceeded if the input and output diode current ratings are observed. Note 3: Unused inputs must be held HIGH or LOW. They may not float. DC Electrical Characteristics Supply Voltage (VCC) − 0.5V to + 7.0V DC Input Voltage (VIN) (Note 2) − 0.5V to + 7.0V DC Output Voltage (VOUT) − 0.5V to + 7.0V DC Input Diode Current (IIK) @VIN < 0V − 50 mA DC Output Diode Current (IOK) @VOUT < 0V − 50 mA DC Output Source/Sink Current (IOUT) ± 50 mA DC VCC/Ground Current (ICC/IGND) ± 100 mA Storage Temperature Range (TSTG) − 65° C to + 150° C Junction Lead Temperature under Bias (TJ) + 150° C Junction Lead Temperature (TL) (Soldering, 10 seconds) + 260° C Power Dissipation (PD) @ + 85° C 250 mW Supply Voltage Operating (VCC) 1.65V to 5.5V Supply Voltage Data Retention (VCC) 1.5V to 5.5V Input Voltage (VIN) 0V to 5.5V Output Voltage (VOUT) Active State 0V to VCC 3-STATE 0V to 5.5V Operating Temperature (TA) − 40° C to + 85° C Input Rise and Fall Time (tr, tf) VCC @ 1.8V, 0.15V, 2.5V ± 0.2V 0 ns/V to 20 ns/V VCC @ 3.3V ± 0.3V 0 ns/V to 10 ns/V VCC @ 5.0V ± 0.5V 0 ns/V to 5 ns/V Thermal Resistance (θ JA) 250° C/W Symbol Parameter VCC TA = + 25° C TA = − 40° C to + 85° C Units Conditions (V) Min Typ Max Min Max VIH HIGH Level Input Voltage 1.65 to 1.95 0.75 VCC 0.75 VCC V 2.3 to 5.5 0.7 VCC 0.7 VCC VIL LOW Level Input Voltage 1.65 to 1.95 0.25 VCC 0.25 VCC V 2.3 to 5.5 0.3 VCC 0.3 VCC VOH HIGH Level Output Voltage 1.65 1.55 1.65 1.55 V 2.3 2.2 2.3 2.2 VIN = VIH IOH = − 100 µ A 3.0 2.9 3.0 2.9 or VIL 4.5 4.4 4.5 4.4 1.65 1.29 1.52 1.29 V IOH = − 4 mA 2.3 1.9 2.15 1.9 VIN = VIH IOH = − 8 mA 3.0 2.4 2.80 2.4 or VIL IOH = − 16 mA 3.0 2.3 2.68 2.3 IOH = − 24 mA 4.5 3.8 4.20 3.8 IOH = − 32 mA VOL LOW Level Output Voltage 1.65 0.0 0.10 0.10 V 2.3 0.0 0.10 0.10 VIN = VIH IOL = 100 µ A 3.0 0.0 0.10 0.10 or VIL 4.5 0.0 0.10 0.10 1.65 0.08 0.24 0.24 V IOL = 4 mA 2.3 0.10 0.3 0.3 IOL = 8 mA 3.0 0.15 0.4 0.4 IOL = 16 mA 3.0 0.22 0.55 0.55 IOL = 24 mA 4.5 0.22 0.55 0.55 IOL = 32 mA IIN Input Leakage Current 0 to 5.5 ± 0.1 ± 1 µ A VIN = 5.5V, GND IOZ 3-STATE Output Leakage 1.65 to 5.5 ± 0.5 ± 5 µ A VIN = VIH or VIL 0 ≤ VOUT ≤ 5.5V IOFF Power Off Leakage Current 0.0 1 10 µ A VIN or VOUT = 5.5V ICC Quiescent Supply Current 1.65 to 5.5 1 10 µ A VIN = 5.5V, GND

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www.fairchildsemi.com 4 N C 7 W Z 2 4 0 Noise Characteristics Note 4: Parameter guaranteed by design. AC Electrical Characteristics Note 5: Parameter guaranteed by design. tOSLH = |tPLHmax − tPLHmin|; tOSHL = |tPHLmax − tPHLmin|. Note 6: CPD is defined as the value of the internal equivalent capacitance which is derived from dynamic operating current consumption (ICCD) at no output loading and operating at 50% duty cycle. (See Figure 2.) CPD is related to ICCD dynamic operating current by the expression: ICCD = (CPD)(VCC)(fIN) + (ICCstatic). Symbol Parameter VCC TA = + 25° C Units Conditions (V) Typ Max VOLP (Note 4) Quiet Output Maximum Dynamic VOL 5.0 1.0 V CL = 50 pF VOLV (Note 4) Quiet Output Minimum Dynamic VOL 5.0 1.0 V CL = 50 pF VOHV (Note 4) Quiet Output Minimum Dynamic VOH 5.0 4.0 V CL = 50 pF VIHD (Note 4) Minimum HIGH Level Dynamic Input Voltage 5.0 3.5 V CL = 50 pF VILD (Note 4) Maximum LOW Level Dynamic Input Voltage 5.0 1.5 V CL = 50 pF Symbol Parameter VCC TA = + 25° C TA = − 40° C to + 85° C Units Conditions Figure (V) Min Typ Max Min Max Number tPLH, Propagation Delay 1.8 ± 0.15 2.0 12.0 2.0 13.0 ns CL = 15 pF Figures 1, 3 tPHL An to Yn 2.5 ± 0.2 1.0 7.5 1.0 8.0 RD = 1 MΩ 3.3 ± 0.3 0.8 5.2 0.8 5.5 S1= Open 5.0 ± 0.5 0.5 4.5 0.5 4.8 tPLH, Propagation Delay 3.3 ± 0.3 1.2 5.7 1.2 6.0 ns CL = 50 pF Figures 1, 3 tPHL An to Yn 5.0 ± 0.5 0.8 5.0 0.8 5.3 RD = 500Ω S1= Open tOSLH, Output to Output Skew 3.3 ± 0.3 1.0 1.0 ns CL = 50 pF Figures 1, 3 tOSHL (Note 5) 5.0 ± 0.5 0.8 0.8 RD = 500Ω S1= Open tPZL, Output Enable Time 1.8 ± 0.15 3.0 14.0 3.0 15.0 ns CL = 50 pF Figures 1, 3 tPZH 2.5 ± 0.2 1.8 8.5 1.8 9.0 RD, RU = 500 Ω 3.3 ± 0.3 1.2 6.2 1.2 6.5 S1 = GND for tPZH 5.5 ± 0.5 0.8 5.5 0.8 5.8 S1 = VI for tPZL VI = 2 x VCC tPLZ, Output Disable Time 1.8 ± 0.15 2.5 12.0 2.5 13.0 ns CL = 50 pF Figures 1, 3 tPHZ 2.5 ± 0.2 1.5 8.0 1.5 8.5 RD, RU = 500 Ω 3.3 ± 0.3 0.8 5.7 0.8 6.0 S1 = GND for tPZH 5.0 ± 0.5 0.3 4.7 0.3 5.0 S1 = VI for tPZL VI = 2 x VCC CIN Input Capacitance 0 2.5 pF COUT Output Capacitance 5.0 4 CPD Power Dissipation Capacitance 3.3 10 pF (Note 6) Figure 2 5.0 12

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5 www.fairchildsemi.com N C 7 W Z 2 4 0 AC Loading and Waveforms CL includes load and stray capacitance Input PRR = 1.0 MHz; tw = 500 ns FIGURE 1. AC Test Circuit Input = AC Waveform; tr = tf = 1.8 ns; PRR = 10 MHz; Duty Cycle = 50% FIGURE 2. ICCD Test Circuit FIGURE 3. AC Waveforms

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www.fairchildsemi.com 6 N C 7 W Z 2 4 0 Tape and Reel Specification Tape Format for US8 TAPE DIMENSIONS inches (millimeters) Tape Format for MicroPak TAPE DIMENSIONS inches (millimeters) Package Tape Number Cavity Cover Tape Designator Section Cavities Status Status Leader (Start End) 125 (typ) Empty Sealed K8X Carrier 3000 Filled Sealed Trailer (Hub End) 75 (typ) Empty Sealed Package Tape Number Cavity Cover Tape Designator Section Cavities Status Status Leader (Start End) 125 (typ) Empty Sealed L8X Carrier 3000 Filled Sealed Trailer (Hub End) 75 (typ) Empty Sealed

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7 www.fairchildsemi.com N C 7 W Z 2 4 0 Tape and Reel Specification (Continued) REEL DIMENSIONS inches (millimeters) 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 W Z 2 4 0 Physical Dimensions inches (millimeters) unless otherwise noted 8-Lead US8, JEDEC MO-187, Variation CA 3.1mm Wide Package Number MAB08A

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