TC7SH34FU

L-MOS VHS series

  • Related Reference Design(2)

Description

Function1 Buffer/Transceiver
Function2 Non-Inverter Buffer
Input type Input-Tolerant
Number of Circuits 1
RoHS Compatible Product(s) (#) Available

Package Information

Toshiba Package Name SOT-353 (USV)
Package Image USV
JEITA SC-88A
Package Code SOT-353
Pins 5
Mounting Surface Mount
Width×Length×Height
(mm)
2.0×2.1×0.9
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 - 2 V
Operating temperature Topr - -40 to 125
Output current (Min) IO - 8 mA
Propagation delay time (Typ.) tpd_tpz - 3.8 ns
Purchase and Sample
Please contact one of Toshiba's official distributors or the nearest Toshiba sales office.
You can search for and purchase a small on-line sample by clicking on the following link.

Document

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Feb,2008

Oct,2024

Nov,2024

Nov,2024

Orderable part number

Orderable part number
(example)
MOQ(pcs) Reliability
Information
RoHS AEC-Q100
AEC-Q101
Note
TC7SH34FU,LJ 3000 Yes - General Use
TC7SH34FU,LXGJ 3000 - Yes Yes Automotive Use

Reference Design

This is a picture of eFuse Application Circuit (with Thermal Shutdown).
eFuse Application Circuit (with Thermal Shutdown)
This reference design provides design guide, data and other contents of eFuse IC Application Circuit (with Thermal Shutdown) built on a small board. This circuit provides over temperature detection and protection by combining the eFuse IC and the ThermoflaggerTM (Over Temperature Detection IC).
This is a picture of eFuse Application Circuit (with Enhanced Overcurrent Protection).
eFuse Application Circuit (with Enhanced Overcurrent Protection)
This reference design provides design guide, data and other contents of eFuse IC Application Circuit (with Enhanced Overcurrent Protection) built on a small board.
This circuit provides precise overcurrent shutdown by combining the eFuse IC and the ThermoflaggerTM used as an overcurrent detection device.

Technical inquiry

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Frequently Asked Questions

FAQs

Notes

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