TC7WZ04FK

L-MOS SHS series (TC74LCX-equivalent)

  • Related Reference Design(2)

Description

Function1 Inverter
Function2 Inverter
Input type Input-Tolerant
Output type Power-down-Protection
Number of Circuits 3
RoHS Compatible Product(s) (#) Available

Package Information

Toshiba Package Name SOT-765 (US8)
Package Image US8
JEDEC MO-187-CA
Package Code SOT-765
Pins 8
Mounting Surface Mount
Width×Length×Height
(mm)
2.0×3.1×0.7
Package Dimensions View
Land pattern dimensions View
CAD data
(Symbol, Footprint and 3D model)
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Electrical Characteristics

Characteristics Symbol Condition Value Unit
Supply voltage (Max) VCC - 5.5 V
Supply voltage (Min) VCC - 1.65 V
Operating temperature Topr - -40 to 125
Output current (Min) IO VCC=3V 24 mA
Output current (Min) IO VCC=4.5V 32 mA
Propagation delay time (Typ.) tpd_tpz VCC=3V 2.2 ns
Propagation delay time (Typ.) tpd_tpz VCC=4.5V 1.8 ns
Propagation delay time (Max) tpd_tpz VCC=3V 3.4 ns
Propagation delay time (Max) tpd_tpz VCC=4.5V 2.8 ns
Purchase and Sample
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You can search for and purchase a small on-line sample by clicking on the following link.

Document

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Feb,2015

Nov,2024

Dec,2024

Dec,2024

Orderable part number

Orderable part number
(example)
MOQ(pcs) Reliability
Information
RoHS AEC_Q100-Q101 Note
TC7WZ04FK,LJ 3000 Yes - General Use
TC7WZ04FK,LXGJ 3000 - Yes Yes Automotive Use

Reference Design

PCB photo example of Power multiplexer circuit
Power multiplexer circuit
In this reference design, a Power multiplexer circuit with 2 input and 1 output is implemented on a small PCB. MOSFET gate driver ICs, eFuse ICs, zener diodes and small package MOSFETs selected from Toshiba's diverse lineup are used create ideal diode like characteristics with BBM and MBB switching.
PCB photo example of Power multiplexer circuit
Power Multiplexer Circuit Using Common-Drain MOSFET
This power multiplexer circuit with 2 inputs and 1 output is realized on a small board. A new power multiplexer circuit usign common-drain MOSFET has been added to the already developed power multiplexer circuit reference design. These reference circuits allow switching between BBM and MBB modes by combining optimal devices such as MOSFET gate driver ICs and zener diodes from our diverse product lineup.

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Notes

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