Features
- Brings high level of intelligence to end devices
- Provides significant improvement to industrial networks
- Embedded Gigabit ethernet PHY in R-IN32M4
- Circuit design is made extremely easy; no Gigabit PHY related analog design is required
- FPU: 8 channel 10-bit ADC and 16 channel 16-bit timers embedded to the CPU core
Description
Click here for products that support the latest protocol CC-Link IE TSN.
The R-IN32M4-CL2 contains built-in Gigabit PHY in addition to our featured Renesas R-IN engine (“R-IN engine”) available in the series family, providing the optimal solution to bring high performance CC-Link IE Field network protocol to industrial equipment. The network performance of CC-Link IE Field has been proven effective in the 4th industrial revolution, where various sensors and actuators are connected. By combining CC-Link IE Field with our proposed R-IN engine, we bring high level of intelligence to end devices, providing significant improvement further to the industrial networks.
With the embedded Gigabit ethernet PHY in the R-IN32M4, circuit design is made extremely easy since no Gigabit PHY related analog design is required, which can be quite troublesome in a conventional hardware approach. Furthermore, with the addition of FPU, 8 channels of 10-bit ADC and 16 channels of 16-bit timers embedded to the CPU core, the R-IN32M4 has greatly extended the family’s application; not only remote IO applications, where the R-IN32M series has exceeded, the R-IN32M4 also performs well in motor & sensor control, and even industrial network gateway applications.
Applications
- Communication unit of various slaves in field networks and motion networks
- PLC, Remote IO, CNC, AC Drive (Inverter), Robot, Servo drive, Servo Motor
| Part Number | Status | Samples | Stock | Package | Budgetary Price (USD) | Lead Count (#) | Moisture Sensitivity Level (MSL) | Pb (Lead) Free | Temp. Range (°C) |
|---|---|---|---|---|---|---|---|---|---|
| R9J03G019GBG#BC2 | Obsolete | N/A | Out of Stock | BGA | 1ku | $34.52 | 484# | 3 | Yes | -40 to +85 |
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- Application NoteAI-generated Summary: Differences between R-IN32M4-CL2 and R-IN32M4-CL3 Ethernet communication LSIs focus on hardware and software changes required for replacement. Replacing CL2 with CL3 in CC-Link IE Field devices involves circuit modifications and driver updates, while replacing CL2 with CL3 in CC-Link IE TSN devices requires more extensive software changes due to different communication processes. Hardware differences include power supply, oscillator, regulator, A/D converter, buffer characteristics, pin assignments, and registers. Sample code adaptation varies depending on the replacement pattern, with some user program parts reusable and others requiring rewriting.
- Manual - Development Tools
- Application NoteAI-generated Summary: The package includes sample applications such as CC-Link versions, TCP/IP samples, and OS samples, alongside libraries like HW-RTOS and TCP/IP stack. Middleware components control parallel and serial flash ROM and TCP/IP stack. Peripheral drivers cover ADC, UART, timers, DMAC, and others. The folder structure organizes files by CMSIS, device-specific, drivers, middleware, libraries, and projects. The operating environment supports R-IN32M4-CL2 device and board, using IAR Embedded Workbench 7.80.4 for compilation and debugging with l-jet/JTAGjet-Trace ICE tools.Related Files:
- Application NoteAI-generated Summary: The package includes sample applications such as CC-Link versions, TCP/IP samples, and OS samples, alongside libraries like HW-RTOS and EtherPHY, middleware for flash ROM and TCP/IP stack control, and peripheral drivers including ADC, UART, and timers. The folder structure organizes files into CMSIS, device-specific, libraries, drivers, middleware, and project directories. The operating environment supports the R-IN32M4-CL2 device and TS-R-IN32M4-CL2 board, using IAR Embedded Workbench for Arm 7.80.4 for compiling and debugging with l-jet/JTAGjet-Trace ICE tools.Related Files:
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- Application NoteAI-generated Summary: Differences between R-IN32M4-CL2 and R-IN32M4-CL3 Ethernet communication LSIs focus on hardware and software changes required for replacement. Replacing CL2 with CL3 in CC-Link IE Field devices involves circuit modifications and driver updates, while replacing CL2 with CL3 in CC-Link IE TSN devices requires more extensive software changes due to different communication processes. Hardware differences include power supply, oscillator, regulator, A/D converter, buffer characteristics, pin assignments, and registers. Sample code adaptation varies depending on the replacement pattern, with some user program parts reusable and others requiring rewriting.
- Application NoteAI-generated Summary: The package includes sample applications such as CC-Link versions, TCP/IP samples, and OS samples, alongside libraries like HW-RTOS and TCP/IP stack. Middleware components control parallel and serial flash ROM and TCP/IP stack. Peripheral drivers cover ADC, UART, timers, DMAC, and others. The folder structure organizes files by CMSIS, device-specific, drivers, middleware, libraries, and projects. The operating environment supports R-IN32M4-CL2 device and board, using IAR Embedded Workbench 7.80.4 for compilation and debugging with l-jet/JTAGjet-Trace ICE tools.Related Files:
- Application NoteAI-generated Summary: The package includes sample applications such as CC-Link versions, TCP/IP samples, and OS samples, alongside libraries like HW-RTOS and EtherPHY, middleware for flash ROM and TCP/IP stack control, and peripheral drivers including ADC, UART, and timers. The folder structure organizes files into CMSIS, device-specific, libraries, drivers, middleware, and project directories. The operating environment supports the R-IN32M4-CL2 device and TS-R-IN32M4-CL2 board, using IAR Embedded Workbench for Arm 7.80.4 for compiling and debugging with l-jet/JTAGjet-Trace ICE tools.Related Files:
- Application NoteAI-generated Summary: TFTP is a simple file transfer protocol operating over UDP without connection establishment, using acknowledgments for reliability. Unlike FTP, TFTP requires no authentication and transfers small data amounts, such as firmware updates. The protocol supports write requests, data, acknowledgments, and error packets, with each packet having a specific format including operation codes and data blocks. WRQ packets send files, DATA packets transfer file blocks, and ACK packets confirm receipt.Related Files:
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