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Flip Flop ICs

A flip-flop integrated circuit is composed of semiconductor materials; this device is typically used in a flip-flop circuit that consists of two stable states. Flip flop card is an innovative device commonly installed in communication systems to preserve and transmit data or signals as efficiently as possible. Enrgtech distributes a wide range of high-quality electronic equipment from leading manufacturers such as Nexperia, Texas Instruments, ON Semiconductor, and Toshiba.

Flip-Flop Circuit Function

Since flip-flop circuits are non-linear, the output from one of their gates—devices that let an electrical system decide based on the number of its inputs—is fed "back" to be processed alongside the input signal.

Flip flop circuits operate on an input signal blended with this prior output signal, so that the state of their own outputs is dependent on the state of the input signal. In contrast to latches, flip-flop circuits feature a control signal (clock) input.

Types of Flip Flop ICs

There are four main types of devices with the following logic functions.

In the industry, four of the most popular and widely used types of logic functions are available. They are given below:

  • SR Flip-Flop - (Set-Reset)
  • JK Flip-Flop
  • T Flip-Flop - (Toggle)
  • D-type Flip-Flop - (Data)

What are the Applications of Flip-Flop ICs Used?

A flip flop is a strong and reliable device that can store more information. Thus, the integration of many flip-flops can let users store data or information which can represent the state of a series, the value of a counter, or an ASCII character existing in computer memory. These flip-flops are widely installed in a system that is primarily used for storage and data processing; the typical applications where flips flop employed are:


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Texas Instruments
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SN54LS74AJ, Texas Instruments
95 In Stock
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£ 20.21
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£ 16.33
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£ 14.95
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TC74HC574AP(F), Toshiba
3 In Stock
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£ 0.70
125 +
£ 0.68
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£ 0.66
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TC7W74FU(F), Toshiba
203 In Stock
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5 +
£ 0.12
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74HC574PW,118, Nexperia
2498 In Stock
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2500 +
£ 0.14
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MC100EP52DTG, onsemi
451 In Stock
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£ 7.67
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£ 6.61
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74HCT273D,653, Nexperia
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2000 +
£ 0.31
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74LVC1G80GW,125, Nexperia
19798 In Stock
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£ 0.088
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£ 0.045
375 +
£ 0.044
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74HC174D,652, Nexperia
48 In Stock
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£ 0.39
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£ 0.38
250 +
£ 0.37
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MC74AC273DTR2G, onsemi
3345 In Stock
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£ 0.38
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£ 0.33
1000 +
£ 0.28
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74LVT16374ADGG,112, Nexperia
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£ 0.71
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£ 0.51
260 +
£ 0.50
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74LVC74APW,118, Nexperia
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£ 0.10
Nexperia
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74LV74D,112, Nexperia
530 In Stock
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£ 0.19
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MC14013BDR2G, onsemi
444 In Stock
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£ 0.17
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74HC123D,652, Nexperia
148 In Stock
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£ 0.13
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£ 0.12
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£ 0.11
Nexperia
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74HC74D,653, Nexperia
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£ 0.11
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74HCT245D,653, Nexperia
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£ 0.21
Nexperia
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74HCT74D, Nexperia
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£ 0.25
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74LVC1G175GW,125, Nexperia
2998 In Stock
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£ 0.050
Nexperia
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74HC74D,652, Nexperia
55 In Stock
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£ 0.16
114 +
£ 0.086
285 +
£ 0.084
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HEF4013BT,653, Nexperia
49998 In Stock
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2500 +
£ 0.093
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MC100EP51DG, onsemi
128 In Stock
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£ 8.23
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74AUP1G74DC,125, Nexperia
2998 In Stock
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£ 0.23
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74HCT574D,653, Nexperia
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£ 0.27
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74LVC1G74DP,125, Nexperia
2998 In Stock
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£ 0.15
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74LVC574APW,118, Nexperia
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New Items
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TC74HC74AF(F), Toshiba

TC74HC74AF(F), Toshiba

TC74HC Series, Toshiba High-Speed CMOS Logic Operating Voltage: 2 to 6 V Compatibility: Input CMOS, Output CMOS 74HC Family
New items
74VHC74FT, Toshiba

74VHC74FT, Toshiba

The 74VHC74FT is an advanced high speed CMOS D-FLIP FLOP fabricated with silicon gate C2MOS technology. It achieves the high speed operation similar to equivalent Bipolar Schottky TTL while maintaining the CMOS low power dissipation. The signal level applied to the D INPUT is transferred to Q OUTPUT during the positive going transition of the CK pulse. CLR and PR are independent of the CK and are accomplished by setting the appropriate input low. An input protection circuit ensures that 0 to 5.5 V can be applied to the input pins without regard to the supply voltage. This device can be used to interface 5 V to 3 V systems and two supply systems such as battery back up. This circuit prevents device destruction due to mismatched supply and input voltages. Wide operating temperature range: Topr = -40 to 125  High speed: fMAX = 185 MHz (typ.) at VCC = 5.0 V Low power dissipation: ICC = 4.0 μA (max) at Ta = 25 High noise immunity: VNIH = VNIL = 28 % VCC (min) Power-down protection is provided on all inputs. Balanced propagation delays: tPLH ≈ tPHL Wide operating voltage range: VCC(opr) = 2.0 V to 5.5 V Low noise: VOLP = 1.0 V (max) Pin and function compatible with the 74 series (74AC/HC/AHC/LV etc.) 74 type
New items
MC74AC32DG, onsemi

MC74AC32DG, onsemi

IC GATE OR 4CH 2-INP 14SOIC
New items
SN54LS74AJ, Texas Instruments

SN54LS74AJ, Texas Instruments

74LS Family Flip-Flops & Latches, Texas Instruments Texas Instruments range of Flip-Flops and Latches from the 74LS Family of Low Power Schottky Logic ICs. The 74LS Family use bipolar junction technology coupled with Schottky diode clamps to achieve operating speeds equal to the original 74TTL family but with much lower power consumption. 74LS Family
New items
TC74HC374AF(F), Toshiba

TC74HC374AF(F), Toshiba

TC74HC Series, Toshiba High-Speed CMOS Logic Operating Voltage: 2 to 6 V Compatibility: Input CMOS, Output CMOS 74HC Family
New items
MC74HC74ADG, onsemi

MC74HC74ADG, onsemi

IC FF D-TYPE DUAL 1BIT 14SOIC
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MM74HC74AM, onsemi

MM74HC74AM, onsemi

IC FF D-TYPE DUAL 1BIT 14SOIC
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MC74AC273DWG, onsemi

MC74AC273DWG, onsemi

IC FF D-TYPE SNGL 8BIT 20SOIC
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NC7SZ175P6X, onsemi

NC7SZ175P6X, onsemi

TinyLogic UHS, Fairchild Semiconductor Advanced Ultra High-Speed and Low Power CMOS Logic Operating Voltage 1.65 to 5.5 Noise/EMI Reduction Circuit
New items
MM74HCT374WM, Fairchild Semiconductor

MM74HCT374WM, Fairchild Semiconductor

74HCT Family, Fairchild Semiconductor High-Speed CMOS Logic Operating Voltage 4.5 to 5.5 V Compatibility: Input TTL, Output CMOS 74HCT Family
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TC74HC574AP(F), Toshiba

TC74HC574AP(F), Toshiba

TC74HC Series, Toshiba High-Speed CMOS Logic Operating Voltage: 2 to 6 V Compatibility: Input CMOS, Output CMOS 74HC Family
New items
74HC574PW,118, Nexperia

74HC574PW,118, Nexperia

The 74HC574: 74HCT574 is an 8-bit positive-edge triggered D-type flip-flop with 3-state outputs. The device features a clock (CP) and output enable (OE) inputs. The flip-flops will store the state of their individual D-inputs that meet the set-up and hold time requirements on the LOW-to-HIGH clock (CP) transition. A HIGH on OE causes the outputs to assume a high-impedance OFF-state. Operation of the OE input does not affect the state of the flip-flops. Mixed 5 V and 3.3 V applications Improved signal integrity with integrated termination resistors High noise immunity Flow through pin out for easy layout Wide supply voltage range Low propagation delay Overvoltage tolerant input options Integrated source termination resistor options Bus hold options Frequency division Controlled delays Interface between asynchronous and synchronous systems
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