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SN74LVC2G74DCUR

Single Positive-Edge-Triggered D-Type Flip-Flop with Clear and Preset 8-VSSOP -40 to 125

Manufacturer Texas Instruments
Price Range $0.1100 / $0.5437

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Part Number Description Manufacturer Compare
SN74LVC1G74DCUR-P Logic LVC/LCX/Z SERIES, POSITIVE EDGE TRIGGERED D FLIP-FLOP, COMPLEMENTARY OUTPUT, PDSO8, PLASTIC, VSSOP-8 Texas Instruments SN74LVC2G74DCUR vs SN74LVC1G74DCUR-P
SN74LVC2G74DCUTE4 Logic Single Positive-Edge-Triggered D-Type Flip-Flop with Clear and Preset 8-VSSOP -40 to 125 Texas Instruments SN74LVC2G74DCUR vs SN74LVC2G74DCUTE4
SN74LVC1G74DCU Logic LVC/LCX/Z SERIES, POSITIVE EDGE TRIGGERED D FLIP-FLOP, COMPLEMENTARY OUTPUT, PDSO8, PLASTIC, VSSOP-8 Texas Instruments SN74LVC2G74DCUR vs SN74LVC1G74DCU
SN74LVC2G74DCUTG4 Logic Single Positive-Edge-Triggered D-Type Flip-Flop with Clear and Preset 8-VSSOP -40 to 125 Texas Instruments SN74LVC2G74DCUR vs SN74LVC2G74DCUTG4
SN74LVC1G74DCU6 Logic LVC/LCX/Z SERIES, POSITIVE EDGE TRIGGERED D FLIP-FLOP, COMPLEMENTARY OUTPUT, PDSO8, GREEN, PLASTIC, VSSOP-8 Texas Instruments SN74LVC2G74DCUR vs SN74LVC1G74DCU6
SN74LVC2G74DCURG4 Logic Single Positive-Edge-Triggered D-Type Flip-Flop with Clear and Preset 8-VSSOP -40 to 125 Texas Instruments SN74LVC2G74DCUR vs SN74LVC2G74DCURG4
SN74LVC1G74DCUT Logic Single Positive-Edge-Triggered D-Type Flip-Flop With Clear and Preset 8-VSSOP -40 to 125 Texas Instruments SN74LVC2G74DCUR vs SN74LVC1G74DCUT
SN74LVC2G74DCURE4 Logic Single Positive-Edge-Triggered D-Type Flip-Flop with Clear and Preset 8-VSSOP -40 to 125 Texas Instruments SN74LVC2G74DCUR vs SN74LVC2G74DCURE4
SN74LVC2G74DCUT Logic Single Positive-Edge-Triggered D-Type Flip-Flop with Clear and Preset 8-VSSOP -40 to 125 Texas Instruments SN74LVC2G74DCUR vs SN74LVC2G74DCUT
SN74LVC1G74DCUR Logic Single Positive-Edge-Triggered D-Type Flip-Flop With Clear and Preset 8-VSSOP -40 to 125 Texas Instruments SN74LVC2G74DCUR vs SN74LVC1G74DCUR
Part Number Description Manufacturer Compare
SN74LVC1G74DCUR-P Logic LVC/LCX/Z SERIES, POSITIVE EDGE TRIGGERED D FLIP-FLOP, COMPLEMENTARY OUTPUT, PDSO8, PLASTIC, VSSOP-8 Texas Instruments SN74LVC2G74DCUR vs SN74LVC1G74DCUR-P
SN74LVC1G74DCU6 Logic LVC/LCX/Z SERIES, POSITIVE EDGE TRIGGERED D FLIP-FLOP, COMPLEMENTARY OUTPUT, PDSO8, GREEN, PLASTIC, VSSOP-8 Texas Instruments SN74LVC2G74DCUR vs SN74LVC1G74DCU6
SN74LVC2G74DCUTG4 Logic Single Positive-Edge-Triggered D-Type Flip-Flop with Clear and Preset 8-VSSOP -40 to 125 Texas Instruments SN74LVC2G74DCUR vs SN74LVC2G74DCUTG4
SN74LVC2G74DCUTE4 Logic Single Positive-Edge-Triggered D-Type Flip-Flop with Clear and Preset 8-VSSOP -40 to 125 Texas Instruments SN74LVC2G74DCUR vs SN74LVC2G74DCUTE4
SN74LVC1G74DCU Logic LVC/LCX/Z SERIES, POSITIVE EDGE TRIGGERED D FLIP-FLOP, COMPLEMENTARY OUTPUT, PDSO8, PLASTIC, VSSOP-8 Texas Instruments SN74LVC2G74DCUR vs SN74LVC1G74DCU
SN74LVC2G74DCURG4 Logic Single Positive-Edge-Triggered D-Type Flip-Flop with Clear and Preset 8-VSSOP -40 to 125 Texas Instruments SN74LVC2G74DCUR vs SN74LVC2G74DCURG4
SN74LVC1G74DCUT Logic Single Positive-Edge-Triggered D-Type Flip-Flop With Clear and Preset 8-VSSOP -40 to 125 Texas Instruments SN74LVC2G74DCUR vs SN74LVC1G74DCUT
SN74LVC2G74DCUT Logic Single Positive-Edge-Triggered D-Type Flip-Flop with Clear and Preset 8-VSSOP -40 to 125 Texas Instruments SN74LVC2G74DCUR vs SN74LVC2G74DCUT
SN74LVC2G74DCURE4 Logic Single Positive-Edge-Triggered D-Type Flip-Flop with Clear and Preset 8-VSSOP -40 to 125 Texas Instruments SN74LVC2G74DCUR vs SN74LVC2G74DCURE4
SN74LVC1G74DCUR Logic Single Positive-Edge-Triggered D-Type Flip-Flop With Clear and Preset 8-VSSOP -40 to 125 Texas Instruments SN74LVC2G74DCUR vs SN74LVC1G74DCUR

Global Popularity

Popularity in Logic

Popularity in FF/Latches

Popularity by Region

Very High

Medium

Good

Low

  • 1. France
    100
  • 2. Malaysia
    100
  • 3. United States
    97
  • 4. South Korea
    93
  • 5. Mexico
    91
  • 6. Estonia
    88
  • 7. Thailand
    87
  • 8. Denmark
    87
  • 9. China
    84
  • 10. Pakistan
    83

Estimated Price History

Estimated Stock History

Market Price Analysis

No data available
  • 1. Rochester Electronics $0.1100 Buy Now
  • 2. Texas Instruments $0.2300 Buy Now
  • 3. Newark element14 $0.4600 Buy Now
  • 4. element14 Asia-Pacific $0.5437 Buy Now

Datasheets & Reference Designs

Reference Designs

  • TIDM-SOLAR-DCDC C2000™ Solar DC/DC Converter with Maximum Power Point Tracking (MPPT) | TI.com
    TIDM-SOLAR-DCDC: This design is a digitally-controlled, solar DC/DC converter with maximum power point tracking (MPPT), for use in central or string solar inverters. It is a companion to the TI Design TIDM-SOLAR-ONEPHINV, a grid-tied, single phase, DC/AC inverter. Together, the TIDM-SOLAR-DCDC and the TIDM-SOLAR-ONEPHINV comprise a complete solar inverter for central or string topologies. This solar DC/DC converter consists of a two-phase interleaved boost converter for MPPT and a resonant LLC converter with isolation. A C2000™ Piccolo™ TMS320F28035 microcontroller (MCU) is the digital controller for the complete DC/DC converter, executing high frequency control loops and maximum-power point tracking algorithms. This design achieves full-load efficiency of greater than 94 percent, which allows for more overall energy output from a solar installation and reduces detrimental heat generation in the converter.
  • Bidirectional 400V-12V DC/DC Converter Reference Design
    TIDM-BIDIR-400-12: The Bidirectional 400V-12V DC/DC Converter Reference Design is a microcontroller-based implementation of an isolated bi-directional DC-DC converter. A phase shifted full-bridge (PSFB) with synchronous rectification controls power flow from a 400V bus/battery to the 12V battery in step-down mode, while a push-pull stage controls the reverse power flow from the low voltage battery to the high voltage bus/battery in boost mode. In this implementation closed loop control for both directions of power flow is implemented using Texas Instruments 32-bit microcontroller TMS320F28035, which is placed on the LV side. This digitally-controller system can implement advanced control strategies to optimally control the power stage under different conditions and also provide system level intelligence to make safe and seamless transitions between operation modes and PWM switching patterns.
  • TIDM-BIDIR-400-12 Bidirectional 400V-12V DC/DC Converter Reference Design | TI.com
    TIDM-BIDIR-400-12: The Bidirectional 400V-12V DC/DC Converter Reference Design is a microcontroller-based implementation of an isolated bi-directional DC-DC converter. A phase shifted full-bridge (PSFB) with synchronous rectification controls power flow from a 400V bus/battery to the 12V battery in step-down mode, while a push-pull stage controls the reverse power flow from the low voltage battery to the high voltage bus/battery in boost mode. In this implementation closed loop control for both directions of power flow is implemented using Texas Instruments 32-bit microcontroller TMS320F28035, which is placed on the LV side. This digitally-controller system can implement advanced control strategies to optimally control the power stage under different conditions and also provide system level intelligence to make safe and seamless transitions between operation modes and PWM switching patterns.
  • C2000™ Solar DC/DC Converter with Maximum Power Point Tracking (MPPT)
    TIDM-SOLAR-DCDC: This design is a digitally-controlled, solar DC/DC converter with maximum power point tracking (MPPT), for use in central or string solar inverters. It is a companion to the TI Design TIDM-SOLAR-ONEPHINV, a grid-tied, single phase, DC/AC inverter. Together, the TIDM-SOLAR-DCDC and the TIDM-SOLAR-ONEPHINV comprise a complete solar inverter for central or string topologies. This solar DC/DC converter consists of a two-phase interleaved boost converter for MPPT and a resonant LLC converter with isolation. A C2000™ Piccolo™ TMS320F28035 microcontroller (MCU) is the digital controller for the complete DC/DC converter, executing high frequency control loops and maximum-power point tracking algorithms. This design achieves full-load efficiency of greater than 94 percent, which allows for more overall energy output from a solar installation and reduces detrimental heat generation in the converter.

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