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TMPM367FDFG Datasheet(PDF) 12 Page - Toshiba Semiconductor

Part # TMPM367FDFG
Description  32-Bit Microcontrollers
PDF  24 Pages
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Manufacturer  TOSHIBA [Toshiba Semiconductor]
Direct Link  http://www.semicon.toshiba.co.jp/eng
Logo TOSHIBA - Toshiba Semiconductor

TMPM367FDFG Datasheet(HTML) 12 Page - Toshiba Semiconductor

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**: Under development
The TMPM350FDTFG microcontroller of the M350 Group is specifically designed for automotive applications. The
TMPM350FDTFG provides various peripheral functions, such as CAN controllers and AD converters, as well as a
Toshiba-original Programmable Motor Driver (PMD).
The TMPM354F10TFG is designed for automotive motor control applications. It contains a Vector Engine (VE) that enables
efficient motor control, a Toshiba-original motor controller that supports one-shot pulse control, CAN controllers, and a
resolver-to-digital converter (RDC). Additionally, the TMPM354F10TFG offers functional safety features. Because Toshiba’s
functional safety technology is compliant with ISO 26262, using the TMPM354F10TFG will facilitate certification of your
product.
Product Lineup
TMPM350FDTFG **
TMPM354F10TFG **
Part Number
512 KB
48 KB
LQFP100
(14 x 14 mm)
1 MB
64 KB
LQFP144
(20 x 20 mm)
ROM (Flash)
Size
RAM
Size
Package
Features
Application
High-performance ARM CortexTM-M3 core: 88-MHz operation (max)
Motor control circuits
Programmable Motor Driver (PMD)
12-bit AD converters: 10 ch x 2 units
Resolver excitation circuit
CAN controller: 2 channels (V2.0 B)
High temperature operation (Ta: 105˚C max)
Functional safety: Optimized tightly coupled fault supervisors
(ISO 26262-compliant)
Fault supervisors with different algorithms monitor the detailed
operation of each block integrated in an MCU. This architecture
provides a low-cost, single-CPU solution for functional safety.
High-performance ARM CortexTM-M3 core: 80-MHz operation (max)
Advanced motor control circuits
Advanced Programmable Motor Driver (A-PMD)
Vector Engine (VE): The increased hardware computation for
motor vector control reduces the CPU workload approx. 50%
(compared to the predecessor).
One-shot pulse control: Almost the same CPU workload at
high rpms as for mid-rpms
Resolver-to-digital converter (RDC): Increases design
flexibility, reduces system costs and improves noise immunity.
High-temperature operation (Ta: 125˚C max)
Functional safety: Optimized tightly coupled fault supervisors
(ISO 26262-compliant)
Fault supervisors with different algorithms monitor the detailed
operation of each block integrated in an MCU. This architecture
provides a low-cost, single-CPU solution for functional safety.
Features (TMPM350FDTFG)
Features (TMPM354F10TFG)
Application
HEV, EV and other automotive control applications
ARM CortexTM-M3 plus Toshiba-original Programmable Motor Driver (PMD)
2-channel CAN controller and 2 units of AD Converter
Functional safety: Optimized tightly coupled fault supervisors
The CAN controllers and the blocks that implement functional safety contain logic
specifically designed for automotive applications, making the TMPM350FDTFG
suitable for motor applications in safety-related systems such as electronic power
steering (EPS).
ARM CortexTM-M3 plus Toshiba-original Advanced Programmable Motor Driver
(A-PMD)
3-channel CAN controller and 4 units of AD Converter
Toshiba-original Vector Engine
Reduced part count and improved noise immunity due to the built-in RDC
Ideal for motor control applications in HEVs and EVs owing to enhanced motor
controllers, angle sensor computation, in-vehicle networking, etc.
Electric power steering (EPS) and other automotive control
applications
–
12 –
M350 Group (for Automotive Applications)



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