NTS0102TL-Q100 Product Information|NXP

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NTS0102TL-Q100H

Active

12NC: 935432145125

Details

Operating Features

ParameterValue
Signal Application
GPIO, I2C, SMBus, UART
Type VLT
BiDirectional FET w/one shot
Number of bits
2
VCC(A) (Min - Max)
1.65 to 3.6
VCC(B) (Min-Max)
2.3 to 5.5
Supply Current (Typ) (μA)
1.5
ParameterValue
Bandwidth (Max) (MHz)
50
Input Type (TTL, CMOS, Schmitt Trigger)
CMOS
Output Type (Open Drain, 3-State, Push-Pull, Pass-gate)
3-State, Pass-gate
Ambient Operating Temperature (Min to Max) (℃)
-40 to 125
AEC-Q100 compliant
Y

Environmental

Part/12NCPbFreeEU RoHSHalogen FreeRHF IndicatorREACH SVHCWeight (mg)
NTS0102TL-Q100H(935432145125)
Yes
Yes
Certificate Of Analysis (CoA)
Yes
DREACH SVHC
9.028699999999997

Quality

Part/12NCSafe Assure Functional SafetyMoisture Sensitivity Level (MSL)Peak Package Body Temperature (PPT) (C°)
Lead SolderingLead Free SolderingLead SolderingLead Free Soldering
NTS0102TL-Q100H
(935432145125)
No
1
1
240
260

Shipping

Part/12NCHarmonized Tariff (US)Disclaimer
NTS0102TL-Q100H
(935432145125)
854239

Product Change Notice

Part/12NCIssue DateEffective DatePCNTitle
NTS0102TL-Q100H
(935432145125)
2022-12-012022-12-04202210008IData sheet MOQ correction for SOT1052-1 "TL"

More about NTS0102

The NTS0102 is a 2-bit, dual supply translating transceiver with auto direction sensing, that enables bidirectional voltage level translation. It features two 2-bit input-output ports (An and Bn), one output enable input (OE) and two supply pins (VCC(A) and VCC(B)). VCC(A) can be supplied at any voltage between 1.65 V and 3.6 V and VCC(B) can be supplied at any voltage between 2.3 V and 5.5 V, making the device suitable for translating between any of the voltage nodes (1.8 V, 2.5 V, 3.3 V and 5.0 V). Pins An and OE are referenced to VCC(A) and pins Bn are referenced to VCC(B). A LOW level at pin OE causes the outputs to assume a high-impedance OFF-state. This device is fully specified for partial power-down applications using IOFF. The IOFF circuitry disables the output, preventing the damaging backflow current through the device when it is powered down.