Orderable parts
Type number | Orderable part number | Ordering code (12NC) | Package | Buy from distributors |
---|---|---|---|---|
74LVC2G74DC | 74LVC2G74DC,125 | 935280391125 | SOT765-1 | Order product |
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Click here for more informationSingle D-type flip-flop with set and reset; positive edge trigger
The 74LVC2G74 is a single positive edge triggered D-type flip-flop with individual data (D), clock (CP), set (SD) and reset (RD) inputs, and complementary Q and Q outputs. Data at the D-input that meets the set-up and hold time requirements on the LOW-to-HIGH clock transition will be stored in the flip-flop and appear at the Q output. Inputs can be driven from either 3.3 V or 5 V devices. This feature allows the use of these devices as translators in mixed 3.3 V and 5 V environments.
Schmitt-trigger action at all inputs makes the circuit tolerant of slower input rise and fall times.
This device is fully specified for partial power down applications using IOFF. The IOFF circuitry disables the output, preventing the potentially damaging backflow current through the device when it is powered down.
Wide supply voltage range from 1.65 V to 5.5 V
Overvoltage tolerant inputs to 5.5 V
High noise immunity
Complies with JEDEC standard:
JESD8-7 (1.65 V to 1.95 V)
JESD8-5 (2.3 V to 2.7 V)
JESD8-B/JESD36 (2.7 V to 3.6 V)
±24 mA output drive (VCC = 3.0 V)
CMOS low power consumption
Latch-up performance exceeds 250 mA
Direct interface with TTL levels
IOFF circuitry provides partial Power-down mode operation
ESD protection:
HBM: ANSI/ESDA/JEDEC JS-001 class 2 exceeds 2000 V
CDM: ANSI/ESDA/JEDEC JS-002 class C3 exceeds 1000 V
Multiple package options
Specified from -40 °C to +85 °C and -40 °C to +125 °C
Type number | VCC (V) | Logic switching levels | Output drive capability (mA) | tpd (ns) | fmax (MHz) | Power dissipation considerations | Tamb (°C) | Rth(j-a) (K/W) | Ψth(j-top) (K/W) | Rth(j-c) (K/W) | Package name |
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74LVC2G74DC | 1.65 - 5.5 | CMOS/LVTTL | ± 32 | 3.5 | 280 | low | -40~125 | 206 | 36.4 | 117 | VSSOP8 |
Model Name | Description |
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Type number | Orderable part number, (Ordering code (12NC)) | Status | Marking | Package | Package information | Reflow-/Wave soldering | Packing |
---|---|---|---|---|---|---|---|
74LVC2G74DC | 74LVC2G74DC,125 (935280391125) |
Active | V74 |
VSSOP8 (SOT765-1) |
SOT765-1 | SOT765-1_125 |
Type number | Orderable part number | Chemical content | RoHS | RHF-indicator |
---|---|---|---|---|
74LVC2G74DC | 74LVC2G74DC,125 | 74LVC2G74DC |
File name | Title | Type | Date |
---|---|---|---|
74LVC2G74 | Single D-type flip-flop with set and reset; positive edge trigger | Data sheet | 2023-08-22 |
AN10161 | PicoGate Logic footprints | Application note | 2002-10-29 |
AN11009 | Pin FMEA for LVC family | Application note | 2019-01-09 |
Nexperia_document_guide_MiniLogic_PicoGate_201901 | PicoGate leaded logic portfolio guide | Brochure | 2019-01-07 |
SOT765-1 | 3D model for products with SOT765-1 package | Design support | 2020-01-22 |
lvc2g74 | 74LVC2G74 IBIS model | IBIS model | 2014-10-20 |
Nexperia_package_poster | Nexperia package poster | Leaflet | 2020-05-15 |
VSSOP8_SOT765-1_mk | plastic, very thin shrink small outline package; 8 leads; 0.5 mm pitch; 2 mm x 2.3 mm x 1 mm body | Marcom graphics | 2017-01-28 |
SOT765-1 | plastic, very thin shrink small outline package; 8 leads; 0.5 mm pitch; 2 mm x 2.3 mm x 1 mm body | Package information | 2022-06-03 |
SOT765-1_125 | VSSOP8; Reel pack for SMD, 7''; Q3/T4 product orientation | Packing information | 2020-04-21 |
74LVC2G74DC_Nexperia_Product_Reliability | 74LVC2G74DC Nexperia Product Reliability | Quality document | 2024-06-16 |
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Model Name | Description |
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Type number | Orderable part number | Ordering code (12NC) | Status | Packing | Packing Quantity | Buy online |
---|---|---|---|---|---|---|
74LVC2G74DC | 74LVC2G74DC,125 | 935280391125 | Active | SOT765-1_125 | 3,000 | Order product |
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The interactive datasheets are based on the Nexperia MOSFET precision electrothermal models. With our interactive datasheets you can simply specify your own conditions interactively. Start by changing the values of the conditions. You can do this by using the sliders in the condition fields. By dragging the sliders you will see how the MOSFET will perform at the new conditions set.