2N7001TDPWR Allicdata Electronics
Allicdata Part #:

296-50198-2-ND

Manufacturer Part#:

2N7001TDPWR

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Texas Instruments
Short Description: 1-BIT DUAL-SUPPLY BUFFERED VOLTA
More Detail: Voltage Level Translator Unidirectional 1 Circuit ...
DataSheet: 2N7001TDPWR datasheet2N7001TDPWR Datasheet/PDF
Quantity: 6000
Stock 6000Can Ship Immediately
Specifications
Input Signal: CMOS
Supplier Device Package: 5-X2SON (0.80x0.80)
Package / Case: 5-XFDFN Exposed Pad
Mounting Type: Surface Mount
Features: --
Operating Temperature: -40°C ~ 125°C
Data Rate: 100Mbps
Output Type: Push-Pull
Output Signal: CMOS
Series: --
Voltage - VCCB: 1.65V ~ 3.6V
Voltage - VCCA: 1.65V ~ 3.6V
Channels per Circuit: 2
Number of Circuits: 1
Channel Type: Unidirectional
Translator Type: Voltage Level
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Logic - Translators, Level Shifters often encompass the specialization of medium voltage level translators, which can overcome the inherent limitation of an integrated circuit (IC) capability. 2N7001TDPWR are one of a type of general purpose translator devices that are designed to translate a low-voltage input signal to a medium-voltage output level.2N7001TDPWR are supplied in a 5-lead TO-92 package and offer a wide supply voltage range of 2.5V - 16V. 2N7001TDPWR can reliably transfer an input voltage in the range of 0.7V to 4.5V to a voltage complementary output level between the two supply voltages, or 0.8V - 13V under certain conditions. The supply voltage applied to the device is linked to the output voltage, such that the output voltage is biased to the opposite supply rail.2N7001TDPWR will have very low current consumption of 1mA compared to a typical medium voltage translator and this makes it suitable for battery operated applications. Its wide supply voltage range, output performance and low power consumption makes it suitable for a range of general applications including power management, interface level conversion and signal bridging, for example.One of the application areas for the 2N7001TDPWR is in low power system design, where low voltage microcontrollers, logic, and other digital ICs need to communicate but operate at different voltages. This is an especially important application in medical and automotive systems, among others. 2N7001TDPWR can be used to convert the low voltage input signals of a microcontroller to medium voltage level signals compatible with an automotive bus.The working principle of the 2N7001TDPWR ultimately depends on the behavior of the p-n junction inside the device. 2N7001TDPWR uses two voltage inputs, a V_IN and a Vdd, that are held constant during normal operation and the device will steer the output voltage such that the diode voltage drop is minimized.When V_IN is higher than Vdd, the output voltage should be lower than Vdd as the diode should be forward-biased and it will drop the voltage. This is also the same for when V_IN is lower than Vdd, since the output voltage should be higher than Vdd since the diode should be backward-biased and the difference in level should be about 0.7V.The output voltage output by the 2N7001TDPWR is affected by temperature and any voltage changes in Vdd and V_IN, however, the output voltage variation is usually quite small even when V_IN is around its maximum voltage of 4.5V and Vdd is around its minimum voltage of 2.5V.In summary, the 2N7001TDPWR device is a general purpose medium voltage level translators, capable of operating with a wide supply voltage range and low power consumption. It can be used in a range of applications to convert an input voltage in the range of 0.7V to 4.5V to a voltage complementary output level between the two supply voltages. Its output voltage is highly consistent and stable and can be reliably used for power management, interface level conversion and signal bridging. Its working principle is based on thebehavior of the p-n junction inside the device and the diode voltage drop.

The specific data is subject to PDF, and the above content is for reference

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