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74AXP1G125GX

Low-power buffer/line driver; 3-state

The 74AXP1G125 is a single buffer/line driver with 3-state output.

Schmitt-trigger action at all inputs makes the circuit tolerant of slower input rise and fall times.

This device ensures very low static and dynamic power consumption across the entire VCC range from 0.7 V to 2.75 V. It 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.

Not recommended for new designs (NRND).

Features and benefits

  • Wide supply voltage range from 0.7 V to 2.75 V

  • Low input capacitance; CI = 0.5 pF (typical)

  • Low output capacitance; CO = 1.0 pF (typical)

  • Low dynamic power consumption; CPD = 2.5 pF at VCC = 1.2 V (typical)

  • Low static power consumption; ICC = 0.6 μA (85 °C maximum)

  • High noise immunity

  • Complies with JEDEC standard:

    • JESD8-12A.01 (1.1 V to 1.3 V)

    • JESD8-11A.01 (1.4 V to 1.6 V)

    • JESD8-7A (1.65 V to 1.95 V)

    • JESD8-5A.01 (2.3 V to 2.7 V)

  • ESD protection:

    • HBM ANSI/ESDA/JEDEC JS-001 Class 2 exceeds 2 kV

    • CDM JESD22-C101E exceeds 1000 V

  • Latch-up performance exceeds 100 mA per JESD 78 Class II

  • Inputs accept voltages up to 2.75 V

  • Low noise overshoot and undershoot < 10 % of VCC

  • IOFF circuitry provides partial Power-down mode operation

  • Multiple package options

  • Specified from -40 °C to +85 °C

Parametrics

Type number Product status 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
74AXP1G125GX
Not for design in 0.7 - 2.75 CMOS ± 4.5 70 1 ultra low -40~85 352 217 X2SON5

Package

All type numbers in the table below are discontinued. See the table Discontinuation information for more information.

Type number Orderable part number, (Ordering code (12NC)) Status Marking Package Package information Reflow-/Wave soldering Packing
74AXP1G125GX
74AXP1G125GXH
(935303211125)
Discontinued / End-of-life rM SOT1226-3
X2SON5
(SOT1226-3)
SOT1226-3 SOT1226-3_125

Environmental information

All type numbers in the table below are discontinued. See the table Discontinuation information for more information.

Type number Orderable part number Chemical content RoHS RHF-indicator
74AXP1G125GX
74AXP1G125GXH 74AXP1G125GX rohs rhf rhf
Quality and reliability disclaimer

Documentation (7)

File name Title Type Date
74AXP1G125 Low-power buffer/line driver; 3-state Data sheet 2021-09-30
SOT1226-3 3D model for products with SOT1226-3 package Design support 2021-01-28
axp1g125 74AXP1G125 IBIS model IBIS model 2014-10-22
Nexperia_document_leaflet_Logic_AXP_technology_portfolio_201904 AXP – Extremely low-power logic technology portfolio Leaflet 2019-04-05
Nexperia_document_leaflet_Logic_X2SON_packages_062018 X2SON ultra-small 4, 5, 6 & 8-pin leadless packages Leaflet 2018-06-05
SOT1226-3 plastic thermal enhanced extremely thin small outline package; no leads;5 terminals; body 0.8 x 0.8 x 0.32 mm Package information 2020-08-27
74AXP1G125GX_Nexperia_Product_Reliability 74AXP1G125GX Nexperia Product Reliability Quality document 2022-05-04

Support

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Models

File name Title Type Date
axp1g125 74AXP1G125 IBIS model IBIS model 2014-10-22
SOT1226-3 3D model for products with SOT1226-3 package Design support 2021-01-28

Ordering, pricing & availability

Type number Orderable part number Ordering code (12NC) Status Packing Packing Quantity Buy online
74AXP1G125GX 74AXP1G125GXH 935303211125 Discontinued / End-of-life SOT1226-3_125 10,000 Order product

Sample

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Sample orders normally take 2-4 days for delivery.

If you do not have a direct account with Nexperia our network of global and regional distributors is available and equipped to support you with Nexperia samples.

How does it work?

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.