Description
The 32196 Group is supported only for customers who have already adopted these products. The RX63T Group is recommended for new designs.
Applications
- Chassis & Safety
| Part Number | Status | Samples | Stock | RoHS | Package | Bit Size | RAM (KB) | Lead Count (#) | Supply Voltage (V) | Operating Freq (Max) (MHz) | CPU | RTC | LVD or PVD | DMA | Timer | PWM | ADC | CAN (ch) | Ethernet | Temp. Range (°C) |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| M32196F8TFP#U4 | Obsolete | N/A | Out of Stock | RoHS:EN RoHS:JA | LFQFP | 32 | 64KB | 144# | 3 - 5 | 160MHz | M32R-FPU | No | No | No | 16-bit x 31-ch, 32-bit x 8-ch | No | 10-bit x 16-ch | 2 | No | -40 to +85 |
| M32196F8UFP#U4 | Obsolete | N/A | Out of Stock | RoHS:EN RoHS:JA | LFQFP | 32 | 64KB | 144# | 3 - 5 | 160MHz | M32R-FPU | No | No | No | 16-bit x 31-ch, 32-bit x 8-ch | No | 10-bit x 16-ch | 2 | No | -40 to +105 |
| M32196F8VFP#U4 | Obsolete | N/A | Out of Stock | RoHS:EN RoHS:JA | LFQFP | 32 | 64KB | 144# | 3 - 5 | 128MHz | M32R-FPU | No | No | No | 16-bit x 31-ch, 32-bit x 8-ch | No | 10-bit x 16-ch | 2 | No | -40 to +125 |
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- Manual - Software32192/32195/32196 Group Hardware ManualRECOMMENDEDPDF 5.65 MB REJ09B0123-0110 Rev.1.10 Apr 06, 2007
- Application NoteAI-generated Summary: The document details the register configurations for the 7547 Group MCU, including control registers and port registers. It explains bit functions, reset values, and read/write permissions. Port Pi and Port P1 registers and their direction registers are described with bit-level configurations, addressing input/output modes and undefined states. Notes clarify behavior such as pull-up resistor disabling in output mode and shared output functions.
- Technical Update
- Application NoteAI-generated Summary: This document explains how to use the Serial I/O 1 and 2 in asynchronous UART mode on the 38D2 Group MCU with a 4.9152 MHz oscillator. It details transmitting and receiving 2-byte data at 9600 bps using port P51 for communication control. The document includes connection diagrams, timing charts, register settings, and control procedures for both transmit and receive sides. It also provides examples of baud rate generator settings and formulas for calculating transfer bit rates.Related Files:
- Technical Update
- Manual - Software32192/32195/32196 Group Hardware ManualRECOMMENDEDPDF 5.65 MB REJ09B0123-0110 Rev.1.10 Apr 06, 2007
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- Manual - Software32192/32195/32196 Group Hardware ManualRECOMMENDEDPDF 5.65 MB REJ09B0123-0110 Rev.1.10 Apr 06, 2007
Manuals & Guides (1)
- Application NoteAI-generated Summary: The document details the register configurations for the 7547 Group MCU, including control registers and port registers. It explains bit functions, reset values, and read/write permissions. Port Pi and Port P1 registers and their direction registers are described with bit-level configurations, addressing input/output modes and undefined states. Notes clarify behavior such as pull-up resistor disabling in output mode and shared output functions.
- Application NoteAI-generated Summary: This document explains how to use the Serial I/O 1 and 2 in asynchronous UART mode on the 38D2 Group MCU with a 4.9152 MHz oscillator. It details transmitting and receiving 2-byte data at 9600 bps using port P51 for communication control. The document includes connection diagrams, timing charts, register settings, and control procedures for both transmit and receive sides. It also provides examples of baud rate generator settings and formulas for calculating transfer bit rates.Related Files:
- Application NoteAI-generated Summary: The document explains the input/output port functions of the 4509 Group microcomputer, focusing on Ports PO and P1. Both ports support 4-bit input/output operations with configurable output formats: N-channel open-drain or CMOS output. Ports PO0 to PO2 and P11 to P13 share pins with serial interface and control terminals, requiring specific register settings for proper use. Key-on wakeup and pull-up transistor functions can be enabled or disabled via dedicated registers. Procedures for input and output operations involve setting output latches and transferring data between ports and registers.
- Application NoteAI-generated Summary: The multiprocessor communication function of the serial communications interface (SCI) enables data transmission to specific processors by sending unique IDs followed by data. Each receiving station compares the received ID with its own and accepts data only if they match. The document details asynchronous transmission at 19200 bps with 8-bit data length, no parity, and 1 stop bit. It also specifies operating conditions such as clock frequencies and development tools used for software control of 128-byte data transfer via interrupts.Related Files:
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- IDE and Coding ToolRenesas integrated development environment (IDE) (for SuperH, RX, R8C, M32R, M16C, H8SX, H8S, H8, and 740 families).
- Compiler/AssemblerC/C++ Compiler package for M32R Family. Simulator debugger and High-performance Embedded Workshop included.
- EmulatorEmulator for M32R Family [Overseas standards compliant]. High-end model (Advanced)
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- SimulatorSimulator Debugger for M32R Family (Note: This product is included in Compiler Package and is not available separately.)
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- IDE and Coding ToolRenesas integrated development environment (IDE) (for SuperH, RX, R8C, M32R, M16C, H8SX, H8S, H8, and 740 families).
- Compiler/AssemblerC/C++ Compiler package for M32R Family. Simulator debugger and High-performance Embedded Workshop included.
- EmulatorEmulator for M32R Family [Overseas standards compliant]. High-end model (Advanced)View More (10)
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Knowledge Base
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Is it okay for emulators not supported by SDI-3 specification to debug?
If you are not using the trace function or the time measurement function, you will have no problems debugging the 32185/32186 and 32192/32195/32196 Groups. If you are using the trace or time measurement functions, the following restrictions apply. [Usage Restrictions] Compared to results gained ...
Oct 29, 2007 -
What is Internal Power Supply Generator (VDC)?
Internal Power Supply Generator (VDC) is a function that converts 5V and 3.3V, which are input to VCCER (main power supply) pin, to the voltage level for internal use.
Mar 22, 2017 -
What's the status of P110-P115 to PWM outputs of TOM and TOU?
The ports (P110-P115) in relation to the TOM timer and the TOU timer always go to a high-impedance state no matter which mode they are in.
Mar 22, 2017
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