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SN74HC574DWR

2V~6V 36MHz 8 Bit D-Type Flip Flop DUAL 74HC574 20 Pins 74HC Series 20-SOIC (0.295, 7.50mm Width)


  • Manufacturer: Texas Instruments
  • Nocochips NO: 815-SN74HC574DWR
  • Package: 20-SOIC (0.295, 7.50mm Width)
  • Datasheet: PDF
  • Stock: 611
  • Description: 2V~6V 36MHz 8 Bit D-Type Flip Flop DUAL 74HC574 20 Pins 74HC Series 20-SOIC (0.295, 7.50mm Width)(Kg)

Details

Tags

Parameters
Factory Lead Time 1 Week
Lifecycle Status ACTIVE (Last Updated: 6 days ago)
Contact Plating Gold
Mount Surface Mount
Mounting Type Surface Mount
Package / Case 20-SOIC (0.295, 7.50mm Width)
Number of Pins 20
Weight 500.709277mg
Operating Temperature -40°C~85°C TA
Packaging Tape & Reel (TR)
Series 74HC
JESD-609 Code e3
Pbfree Code yes
Part Status Active
Moisture Sensitivity Level (MSL) 1 (Unlimited)
Number of Terminations 20
ECCN Code EAR99
Type D-Type
Terminal Finish Matte Tin (Sn)
Subcategory FF/Latches
Packing Method TR
Technology CMOS
Voltage - Supply 2V~6V
Terminal Position DUAL
Terminal Form GULL WING
Peak Reflow Temperature (Cel) 260
Supply Voltage 5V
Base Part Number 74HC574
Function Standard
Output Type Tri-State, Non-Inverted
Operating Supply Voltage 5V
Number of Elements 1
Polarity Non-Inverting
Supply Voltage-Max (Vsup) 6V
Power Supplies 2/6V
Supply Voltage-Min (Vsup) 2V
Number of Circuits 8
Load Capacitance 50pF
Number of Ports 2
Output Current 7.8mA
Number of Bits 8
Clock Frequency 36MHz
Propagation Delay 265 ns
Quiescent Current 8μA
Turn On Delay Time 24 ns
Family HC/UH
Logic Function D-Type, Flip-Flop
Current - Output High, Low 7.8mA 7.8mA
Max Propagation Delay @ V, Max CL 46ns @ 6V, 150pF
Prop. Delay@Nom-Sup 0.066 ns
Trigger Type Positive Edge
Input Capacitance 3pF
Number of Input Lines 3
Count Direction UNIDIRECTIONAL
Clock Edge Trigger Type Positive Edge
Max Frequency@Nom-Sup 24000000Hz
Height 2.65mm
Length 12.8mm
Width 7.5mm
Thickness 2.35mm
Radiation Hardening No
REACH SVHC No SVHC
RoHS Status ROHS3 Compliant
Lead Free Lead Free

SN74HC574DWR Overview


20-SOIC (0.295, 7.50mm Width)is the way it is packaged. The package Tape & Reel (TR)contains it. In the configuration, Tri-State, Non-Invertedis used as the output. It is configured with a trigger that uses Positive Edge. Surface Mountmounts this electrical part. A voltage of 2V~6Vis required for its operation. In the operating environment, the temperature is -40°C~85°C TA. The type of this D latch is D-Type. JK flip flop belongs to the 74HCseries of FPGAs. Its output frequency should not exceed 36MHz Hz. D latch consists of 1 elements. It has been determined that there have been 20 terminations. JK flip flop belongs to 74HC574 family. Power is provided by a 5V supply. The input capacitance of this T flip flop is 3pF farads, which is defined as the capacitance between the input terminals of an op amp with either input grounded. Electronic devices of this type belong to the HC/UHfamily. Electronic part Surface Mountis mounted in the way. A total of 20pins are provided on this board. In this device, the clock edge trigger type is Positive Edge. This device has the base part number FF/Latches. An electronic part designed with 8bits is used in this application. 6Vis the maximum supply voltage (Vsup). For normal operation, the supply voltage (Vsup) should be above 2V. The superior flexibility of this circuit is achieved by using 8 circuits. A reliable performance of this D flip flop makes it well suited for use in TR. There are 2/6V power supplies attached to it. The D flip flop has no ports embedded. For high efficiency, the supply voltage should be kept at 5V. With an output current of 7.8mA, it is possible to design the device in any way you want. It is reported that there are 3 input lines. 8μAquiescent current consumed.

SN74HC574DWR Features


Tape & Reel (TR) package
74HC series
20 pins
8 Bits
2/6V power supplies

SN74HC574DWR Applications


There are a lot of Texas Instruments SN74HC574DWR Flip Flops applications.

  • Computers
  • Circuit Design
  • Latch-up performance
  • CMOS Process
  • Buffered Clock
  • Data storage
  • Asynchronous counter
  • Event Detectors
  • Balanced Propagation Delays
  • Dynamic threshold performance

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