Texas Instruments UC2714D

0.5-A/1-A dual-channel gate driver with single input and dead time control 8-SOIC -40 to 85
$ 2.436
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Fiches techniques et documents

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Texas Instruments

Datasheet16 pagesIl y a 12 ans
Official datasheet0 pageIl y a 0 an
Datasheet13 pagesIl y a 14 ans
Technical Drawing2 pagesIl y a 14 ans

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SHENGYU ELECTRONICS

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Pièces de rechange

Price @ 1000
$ 2.436
$ 2.026
$ 2.026
Stock
330,295
429,263
429,263
Authorized Distributors
4
3
3
Case/Package
SOIC
SOIC
SOIC
Number of Pins
8
8
8
Channel Type
-
-
-
Number of Drivers
2
2
2
Max Output Current
2 A
2 A
2 A
Rise Time
60 ns
60 ns
60 ns
Fall Time
60 ns
60 ns
60 ns
Min Supply Voltage
7 V
7 V
7 V
Max Supply Voltage
20 V
20 V
20 V
Max Power Dissipation
-
-
-

Chaîne d'approvisionnement

Lifecycle StatusProduction (Last Updated: 4 days ago)
Manufacturer Lifecycle StatusACTIVE (Last Updated: 4 days ago)

Pièces détachées

Texas InstrumentsTPS2812D
2-A/2-A dual-channel gate driver with internal regulator 8-SOIC -40 to 125
Texas InstrumentsTPS2811D
2-A/2-A dual-channel gate driver with 2 inverting drivers and internal regulator 8-SOIC
Texas InstrumentsTPS2814D
2-A/2-A dual-channel gate driver with two AND inputs for each output 8-SOIC
NCP1031 Series 16 V 4 mA 1 MHz Low Power PWM Controller Switch - SOIC-8

Descriptions

Descriptions de Texas Instruments UC2714D fournies par ses distributeurs.

0.5-A/1-A dual-channel gate driver with single input and dead time control 8-SOIC -40 to 85
DRIVER, FET, SMD, SOIC8, 2714; Driver IC Type:MOSFET; Outputs, No. of:2; Current, Output:1A; Voltage, Supply Min:7V; Case Style:SOIC; Pins, No. of:8; Temperature, Operating Range:-40°C to +85°C; Base Number:2714; Termination Type:SMD; Voltage, Supply Max:20V
These two families of high speed drivers are designed to provide drive waveforms for complementary switches. Complementary switch configurations are commonly used in synchronous rectification circuits and active clamp/reset circuits, which can provide zero voltage switching. In order to facilitate the soft switching transitions, independently programmable delays between the two output waveforms are provided on these drivers. The delay pins also have true zero voltage sensing capability which allows immediate activation of the corresponding switch when zero voltage is applied. These devices require a PWM-type input to operate and can be interfaced with commonly available PWM controllers. In the UC1714 series, the AUX output is inverted to allow driving a p-channel MOSFET. In the UC1715 series, the two outputs are configured in a true complementary fashion.

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