2N7001TDPWR The Texas Instruments 2N7001TDPWR is a single-bit, dual-supply buffered voltage signal converter. It supports up and down translation across a 1.65V to 3.6V range with a data rate up to 100Mbps.
Mfr Part #:

2N7001TDPWR

Available from 2 distributors
Mfr Name: Texas Instruments
Texas Instruments
The Texas Instruments 2N7001TDPWR is a single-bit, dual-supply buffered voltage signal converter. It supports up and down translation across a 1.65V to 3.6V range with a data rate up to 100Mbps.
Total Stock: 4,000 pcs
$ Price Range: $0.12

2N7001TDPWR Available from 2 distributors

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Distributor Stock Pricing MOQ PKG Lead Time Date Code On Order Quantity On Order Delivery
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3,000 pcs
3000 pcs On Request 1 On Request On Request 21+ On Request On Request
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1,000 pcs
1000 pcs On Request 1 On Request On Request On Request On Request On Request

2N7001TDPWR Specifications Quick View

Most important parameters for selection – full specs in datasheet.
Category
Manufacturer Name
Channel Type
Channels per Circuit
Data Rate
Input Signal
Latch-up Performance
Mounting Type
Number of Circuits
Operating Temperature
Output Signal
Output Type
Propagation Delay
Supplier Device Package
Supplier Package
Supply Current
Translator Type
Voltage

2N7001TDPWR Description

Short technical summary and product information.

The Texas Instruments 2N7001TDPWR is a single-bit buffered voltage signal converter designed for unidirectional signal translation. It operates with dual configurable power-supply rails, VCCA and VCCB, supporting voltages from 1.65V to 3.60V. VCCA sets the input threshold voltage on the A input, while VCCB defines the output drive voltage on the B output.

 

This device is capable of up to 100Mbps data rates across its full supply range. Key features include VCC isolation, where the output port enters a high-impedance state if either VCC input drops below 100mV, and Ioff support for partial-power-down mode operation. It also offers latch-up performance exceeding 100mA per JESD 78, Class II, and ESD protection exceeding JESD 22 standards (2000V HBM, 1000V CDM).

 

The 2N7001TDPWR is available in a 5-X2SON package with a surface mount type. Its operating temperature range is -40°C to +125°C. This translator is suitable for applications such as MCU/FPGA/processor GPIO translation and communications modules to processor translation.

 

It functions as a voltage level translator with a push-pull output type, handling CMOS input and output signals. The maximum quiescent current is 14µA at 125°C.

2N7001TDPWR Quick Information

Product Type: Voltage Translator
Canonical Name: 2N7001T Single-Bit Dual-Supply Buffered Voltage Signal Converter
Subcategory: Level Shifter

2N7001TDPWR Compliance

RoHS Status: RoHS Compliant
Moisture Sensitivity Level (MSL): 1 Unlimited
REACH Status: REACH Unaffected

2N7001TDPWR Estimated Pricing

Qty Low High
1+ $0.12 $0.12

Estimated market price range - modelled values for guidance only, not live distributor offers.

2N7001TDPWR Features

  • Single-bit dual-supply voltage translator.
  • Operates from 1.65V to 3.6V supply.
  • Supports up to 100Mbps data rate.
  • Features VCC isolation and Ioff.
  • Surface mount 5-X2SON package.

2N7001TDPWR Applications

  • MCU/FPGA/processor GPIO translation.
  • Communications module to processor translation.
  • Push-pull I/O buffering.
  • Unidirectional signal translation.

2N7001TDPWR FAQs

7 frequently asked questions generated from this part’s specifications.
What is the operating voltage range of the 2N7001TDPWR?

The supply voltage range is 1.65V to 3.6V.

What package is the 2N7001TDPWR available in?

The device is available in a 5-X2SON surface-mount package.

What is the operating temperature range?

The operating temperature range is -40°C to +125°C.

What is the maximum data rate supported?

The maximum data rate is 100Mbps.

What is the supply current at 125°C?

The maximum supply current is 14µA at 125°C.

Does the device include ESD protection?

Yes, it exceeds 2000V human body model and 1000V charged-device model.

What happens if a supply voltage falls below 100mV?

The output becomes high-impedance when either VCC input is below 100mV.

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