Orderable parts
Type number | Orderable part number | Ordering code (12NC) | Package | Buy from distributors |
---|---|---|---|---|
74LVC1GU04GM | 74LVC1GU04GM,115 | 935277185115 | SOT886 | Order product |
74LVC1GU04GM | 74LVC1GU04GM,132 | 935277185132 | SOT886 | Order product |
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Click here for more informationUnbuffered inverter
The 74LVC1GU04 is a single unbuffered inverter. The input can be driven from either 3.3 V or 5 V devices. This feature allows the use of this device in a mixed 3.3 V and 5 V environment.
Wide supply voltage range from 1.65 V to 5.5 V
High noise immunity
±24 mA output drive (VCC = 3.0 V)
CMOS low power dissipation
Latch-up performance exceeds 250 mA
Complies with JEDEC standard no. 8-1A
ESD protection:
HBM: ANSI/ESDA/JEDEC JS-001 class 2 exceeds 2000 V
CDM: ANSI/ESDA/JEDEC JS-002 class C3 exceeds 1000 V
Specified from -40 °C to +85 °C and -40 °C to +125 °C
Type number | VCC (V) | Logic switching levels | Output drive capability (mA) | fmax (MHz) | Nr of bits | Power dissipation considerations | Tamb (°C) | Rth(j-a) (K/W) | Rth(j-c) (K/W) | Package name |
---|---|---|---|---|---|---|---|---|---|---|
74LVC1GU04GM | 1.65 - 5.5 | CMOS/LVTTL | ± 32 | 175 | 1 | low | -40~125 | 320 | 163 | XSON6 |
Model Name | Description |
---|---|
|
Type number | Orderable part number, (Ordering code (12NC)) | Status | Marking | Package | Package information | Reflow-/Wave soldering | Packing |
---|---|---|---|---|---|---|---|
74LVC1GU04GM | 74LVC1GU04GM,115 (935277185115) |
Active | VD |
XSON6 (SOT886) |
SOT886 |
REFLOW_BG-BD-1
|
SOT886_115 |
74LVC1GU04GM,132 (935277185132) |
Active | VD | SOT886_132 |
Type number | Orderable part number | Chemical content | RoHS | RHF-indicator |
---|---|---|---|---|
74LVC1GU04GM | 74LVC1GU04GM,115 | 74LVC1GU04GM | ||
74LVC1GU04GM | 74LVC1GU04GM,132 | 74LVC1GU04GM |
File name | Title | Type | Date |
---|---|---|---|
74LVC1GU04 | Unbuffered inverter | Data sheet | 2024-11-13 |
AN10161 | PicoGate Logic footprints | Application note | 2002-10-29 |
AN11009 | Pin FMEA for LVC family | Application note | 2019-01-09 |
Nexperia_document_guide_MiniLogic_MicroPak_201808 | MicroPak leadless logic portfolio guide | Brochure | 2018-09-03 |
SOT886 | 3D model for products with SOT886 package | Design support | 2019-10-03 |
lvc1gu04 | 74LVC1GU04 IBIS model | IBIS model | 2014-10-20 |
Nexperia_package_poster | Nexperia package poster | Leaflet | 2020-05-15 |
DFN1410-6_SOT886_mk | plastic, extremely thin small outline package; no leads; 6 terminals; 0.6 mm pitch; 1 mm x 1.45 mm x 0.5 mm body | Marcom graphics | 2017-01-28 |
XSON6_SOT886_mk | plastic, extremely thin small outline package; no leads; 6 terminals; 0.6 mm pitch; 1 mm x 1.45 mm x 0.5 mm body | Marcom graphics | 2017-01-28 |
SOT886 | plastic, leadless extremely thin small outline package; 6 terminals; 0.5 mm pitch; 1 mm x 1.45 mm x 0.5 mm body | Package information | 2022-06-01 |
SOT886_115 | XSON6; Reel pack for SMD, 7''; Q1/T1 product orientation | Packing information | 2020-04-21 |
SOT886_132 | XSON6; Reel pack for SMD, 7''; Q3/T4 product orientation | Packing information | 2020-04-21 |
74LVC1GU04GM_Nexperia_Product_Reliability | 74LVC1GU04GM Nexperia Product Reliability | Quality document | 2024-06-16 |
REFLOW_BG-BD-1 | Reflow soldering profile | Reflow soldering | 2021-04-06 |
MAR_SOT886 | MAR_SOT886 Topmark | Top marking | 2013-06-03 |
If you are in need of design/technical support, let us know and fill in the answer form we'll get back to you shortly.
Model Name | Description |
---|---|
|
Type number | Orderable part number | Ordering code (12NC) | Status | Packing | Packing Quantity | Buy online |
---|---|---|---|---|---|---|
74LVC1GU04GM | 74LVC1GU04GM,115 | 935277185115 | Active | SOT886_115 | 5,000 | Order product |
74LVC1GU04GM | 74LVC1GU04GM,132 | 935277185132 | Active | SOT886_132 | 5,000 | 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.