TB9033FTG

Under development

Network communication IC

  • Related Reference Design(2)

Description

Functions CXPI driver receiver + Encoding, decoding, and arbitration + Protocol control
Applications Steering switches / Meter cluster switches / Light switches / Door locks / Door mirrors
Features Low quiescent current in sleep mode / 16ch GPIO I/O / 6ch AD converter
Built-in Functions Overheat detection / Low voltage detection / Overvoltage detection
CXPI Standard ISO 20794-2 / ISO 20794-4
RoHS Compatible Product(s) (#) Please contact us.

Package Information

Toshiba Package Name P-VQFN28-0606-0.65-003
Package Image Toshiba TB9033FTG Network communication IC product P-VQFN28-0606-0.65-003 package image
Pins 28
Mounting Surface Mount
Package Dimensions View
Land pattern dimensions View
SamacSys CAD model
(Symbol, Footprint and 3D model)
Download from SamacSys<br>*1 *2

Download from SamacSys
*1 *2

 Please refer to the link destination to check the detailed size.

*1

SamacSys is a wholly owned subsidiary of Supplyframe, Inc. CAD models (Symbol/Footprint /3D model) are provided by Supplyframe, Inc. The footprints are generated based on the specifications of SamacSys.

*2

Please note that the footprint dimensions may differ from the reference Land Pattern dimensions provided on our website.

Absolute Maximum Ratings

Characteristics Symbol Rating Unit
Supply voltage 1 (Min) VBAT 0 V
Supply voltage 1 (Max) VBAT 40 V
Input output withstand voltage (Min) VBUS -27 V
Input output withstand voltage (Max) VBUS 40 V
Output current (Max) IBUS 0.2 A
Junction temperature (Max) Tj 150
Strage temperature (Min) Tstg -55
Strage temperature (Max) Tstg 150

Electrical Characteristics

Characteristics Symbol Condition Value Unit
BAT normal operating voltage (Min) VBAT(opr) - 6 V
BAT normal operating voltage (Max) VBAT(opr) - 18 V
Operating temperature (Min) Ta(opr) - -40
Operating temperature (Max) Ta(opr) - 125
BAT current consumption(SLP) (Typ.) IBATSLP - 10 μA
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.

Reference Design

Automotive CXPI Communication Application Circuit B (Door Mirror Drive Board / CXPI Responder Node)
CXPI, a next‑generation automotive communication protocol, delivers low cost and high responsiveness to support efficient control of various in‑vehicle functions.
This reference design represents an example of a responder node for in-vehicle CXPI communication, implemented as a door mirror control board equipped with a CXPI interface.
The CXPI interface IC TB9033FTG is adopted, and in combination with a Motor Control Driver (MCD) and external MOSFETs, the design enables control of multiple motors integrated in the door mirror as well as the Blinker.
Automotive CXPI Communication Application Circuit C (LED Ambient Light Drive Board / CXPI Responder Node)
CXPI, a next‑generation automotive communication protocol, delivers low cost and high responsiveness to support efficient control of various in‑vehicle functions.
This reference design demonstrates an example of a CXPI responder node, implemented as an LED ambient light driving board with an integrated CXPI interface.
The CXPI interface IC TB9033FTG is employed, and four PWM outputs selected from its 16-channel GPIO are utilized to provide flexible control of WRGB LEDs.

Technical inquiry

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