Description
The H8SX/1668R, H8SX/1668M Group is supported only for customers who have already adopted these products. The RX651 Group is recommended for new designs.
Applications
- Home Appliance
| Part Number | Status | Samples | Longevity | Stock | RoHS | Package | Budgetary Price (USD) | CPU | Bit Size | RAM (KB) | Program Memory (KB) | Lead Count (#) | Operating Freq (Max) (MHz) | Timer | ADC | DAC | LVD or PVD | DMA | Ethernet | USB | Temp. Range (°C) | Country of Assembly | Country of Wafer Fabrication |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| R5F61663MD50BGV | NRND | N/A | Out of Stock | Contact | LFBGA | 1ku | $18.55 | H8SX | 32 | 40KB | 384KB | 176# | 50MHz | 8-bit x 8-ch, 16-bit x 12-ch, 32-bit x 4-ch | 10-bit x 8-ch | 8-bit x 2-ch | Yes | No | No | USB Peripheral | -40 to +85 | JAPAN | JAPAN, SINGAPORE | |
| R5F61663MD50FPV | Last Time Buy | N/A | Out of Stock | Contact | LFQFP | H8SX | 32 | 40KB | 384KB | 144# | 50MHz | 8-bit x 8-ch, 16-bit x 12-ch, 32-bit x 4-ch | 10-bit x 8-ch | 8-bit x 2-ch | Yes | No | No | USB Peripheral | -40 to +85 | ||||
| R5F61663MN50BGV | Obsolete | N/A | Out of Stock | RoHS:EN RoHS:JA | LFBGA | H8SX | 32 | 40KB | 384KB | 176# | 50MHz | 8-bit x 8-ch, 16-bit x 12-ch, 32-bit x 4-ch | 10-bit x 8-ch | 8-bit x 2-ch | Yes | No | No | USB Peripheral | -20 to +75 | ||||
| R5F61663MN50FPV | Last Time Buy | N/A | Out of Stock | Contact | LFQFP | H8SX | 32 | 40KB | 384KB | 144# | 50MHz | 8-bit x 8-ch, 16-bit x 12-ch, 32-bit x 4-ch | 10-bit x 8-ch | 8-bit x 2-ch | Yes | No | No | USB Peripheral | -20 to +75 | ||||
| R5F61664MD50BGV | NRND | N/A | Out of Stock | Contact | LFBGA | 1ku | $19.22 | H8SX | 32 | 40KB | 512KB | 176# | 50MHz | 8-bit x 8-ch, 16-bit x 12-ch, 32-bit x 4-ch | 10-bit x 8-ch | 8-bit x 2-ch | Yes | No | No | USB Peripheral | -40 to +85 | JAPAN | JAPAN, SINGAPORE | |
| R5F61664MD50FPV | Last Time Buy | N/A | Out of Stock | Contact | LFQFP | H8SX | 32 | 40KB | 512KB | 144# | 50MHz | 8-bit x 8-ch, 16-bit x 12-ch, 32-bit x 4-ch | 10-bit x 8-ch | 8-bit x 2-ch | Yes | No | No | USB Peripheral | -40 to +85 | ||||
| R5F61664MN50BGV | Obsolete | N/A | Out of Stock | RoHS:EN RoHS:JA | LFBGA | H8SX | 32 | 40KB | 512KB | 176# | 50MHz | 8-bit x 8-ch, 16-bit x 12-ch, 32-bit x 4-ch | 10-bit x 8-ch | 8-bit x 2-ch | Yes | No | No | USB Peripheral | -20 to +75 | ||||
| R5F61664MN50FPV | Last Time Buy | N/A | Out of Stock | Contact | LFQFP | 1ku | $16.56 | H8SX | 32 | 40KB | 512KB | 144# | 50MHz | 8-bit x 8-ch, 16-bit x 12-ch, 32-bit x 4-ch | 10-bit x 8-ch | 8-bit x 2-ch | Yes | No | No | USB Peripheral | -20 to +75 | JAPAN | JAPAN, SINGAPORE | |
| R5F61668MD50BGV | Obsolete | N/A | Out of Stock | RoHS:EN RoHS:JA | LFBGA | H8SX | 32 | 56KB | 1024KB | 176# | 50MHz | 8-bit x 8-ch, 16-bit x 12-ch, 32-bit x 4-ch | 10-bit x 8-ch | 8-bit x 2-ch | Yes | No | No | USB Peripheral | -40 to +85 | ||||
| R5F61668MD50FPV | NRND | N/A | 2029 Jan | Out of Stock | Contact | LFQFP | 1ku | $20.97 | H8SX | 32 | 56KB | 1024KB | 144# | 50MHz | 8-bit x 8-ch, 16-bit x 12-ch, 32-bit x 4-ch | 10-bit x 8-ch | 8-bit x 2-ch | Yes | No | No | USB Peripheral | -40 to +85 | JAPAN | JAPAN, SINGAPORE |
| R5F61668MN50BGV | Obsolete | N/A | Out of Stock | RoHS:EN RoHS:JA | LFBGA | H8SX | 32 | 56KB | 1024KB | 176# | 50MHz | 8-bit x 8-ch, 16-bit x 12-ch, 32-bit x 4-ch | 10-bit x 8-ch | 8-bit x 2-ch | Yes | No | No | USB Peripheral | -20 to +75 | ||||
| R5F61668MN50FPV | Last Time Buy | N/A | Out of Stock | Contact | LFQFP | H8SX | 32 | 56KB | 1024KB | 144# | 50MHz | 8-bit x 8-ch, 16-bit x 12-ch, 32-bit x 4-ch | 10-bit x 8-ch | 8-bit x 2-ch | Yes | No | No | USB Peripheral | -20 to +75 |
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- Application Note
- Application NoteAI-generated Summary: The document details the differences and migration process between the 8-bit timer modules of the H8SX/1668 and RX65N devices. It compares features such as the number of timer units and channels, clock sources, timer output modes, interrupt sources, and activation triggers for DTC and ADC. The RX65N has fewer timer units but supports upward-compatible timers like TPU and MTU. It also covers register changes, hardware details, and usage notes to assist developers in transitioning applications from H8SX/1668 to RX65N.
- Application NoteAI-generated Summary: The guide details the differences and migration procedures for the Serial Communications Interface (SCI) between H8SX/1668 and RX65N devices. It covers feature comparisons, register changes, software migration steps including baud rate adjustments, port pin settings, and interrupt handling. The RX65N supports more channels and communication modes, including simplified I2C and SPI, with enhanced features like full duplex communication and noise elimination. The document also references relevant hardware and software manuals to assist in migration.
- Application NoteAI-generated Summary: The guide explains the differences in the Data Transfer Controller (DTC) between RX65N and H8SX/1668 devices, focusing on migration from H8SX/1668 to RX65N. It details changes in DTC registers, transfer modes, address modes, and features such as sequence transfer and displacement addition. The document also covers general notes on memory layout, clock usage, power management, and register locations. It references hardware and software manuals for further technical details and provides a comprehensive comparison of DTC functionalities between the two devices.
- Application NoteAI-generated Summary: The document details the differences between the A/D converter modules of RX65N and H8SX/1668 devices, focusing on migration from H8SX/1668 to RX65N. It compares specifications such as resolution, input channels, conversion time, operating modes, and interrupt sources. The RX65N offers higher resolution (12-bit vs 10-bit), more input channels, faster conversion times, and advanced features like sample-and-hold, self-diagnosis, and extended input functions. It also supports multiple trigger sources and event linkage for flexible operation. The document includes detailed register descriptions and usage notes to assist developers in adapting software and hardware between these devices.
- Application NoteAI-generated Summary: The document details functional differences between RCAN-ET (SH and H8SX Families) and CAN (RX Family) controllers. It compares protocol compatibility, bit rates, channel numbers, mailbox configurations, ID formats, and transmission/reception capabilities. Key distinctions include FIFO mailbox support, message priority handling, interrupt types, error handling, and bus-off recovery. The RX65N supports more channels, FIFO modes, and additional interrupts, while SH7137 offers ID reordering and overwrite modes. These differences impact CAN communication performance and error management.
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- Application NoteAI-generated Summary: The document explains how to register and uninstall Call Walker within the High-performance Embedded Workshop (HEW). It guides users to launch HEW without opening a workspace, access the Tools Administration menu, and register the Call Walker tool by specifying the registration file path. After registration, Call Walker version 2.3 appears in the menu. Upon uninstalling HEW, users must manually delete the remaining Call Walker directory. It also provides Renesas Electronics website and contact information for support. The revision history notes the first edition release date.
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- Manual - Hardware
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- Guide
- GuideRelated Files:
- Manual - HardwarePDF 7.24 MB REJ09B0596-0100 Rev.1.00 Jan 29, 2010
- Manual - Hardware
Manuals & Guides (5)
- Application Note
- Application NoteAI-generated Summary: The document details the differences and migration process between the 8-bit timer modules of the H8SX/1668 and RX65N devices. It compares features such as the number of timer units and channels, clock sources, timer output modes, interrupt sources, and activation triggers for DTC and ADC. The RX65N has fewer timer units but supports upward-compatible timers like TPU and MTU. It also covers register changes, hardware details, and usage notes to assist developers in transitioning applications from H8SX/1668 to RX65N.
- Application NoteAI-generated Summary: The guide details the differences and migration procedures for the Serial Communications Interface (SCI) between H8SX/1668 and RX65N devices. It covers feature comparisons, register changes, software migration steps including baud rate adjustments, port pin settings, and interrupt handling. The RX65N supports more channels and communication modes, including simplified I2C and SPI, with enhanced features like full duplex communication and noise elimination. The document also references relevant hardware and software manuals to assist in migration.
- Application NoteAI-generated Summary: The guide explains the differences in the Data Transfer Controller (DTC) between RX65N and H8SX/1668 devices, focusing on migration from H8SX/1668 to RX65N. It details changes in DTC registers, transfer modes, address modes, and features such as sequence transfer and displacement addition. The document also covers general notes on memory layout, clock usage, power management, and register locations. It references hardware and software manuals for further technical details and provides a comprehensive comparison of DTC functionalities between the two devices.
- Application NoteAI-generated Summary: The document details the differences between the A/D converter modules of RX65N and H8SX/1668 devices, focusing on migration from H8SX/1668 to RX65N. It compares specifications such as resolution, input channels, conversion time, operating modes, and interrupt sources. The RX65N offers higher resolution (12-bit vs 10-bit), more input channels, faster conversion times, and advanced features like sample-and-hold, self-diagnosis, and extended input functions. It also supports multiple trigger sources and event linkage for flexible operation. The document includes detailed register descriptions and usage notes to assist developers in adapting software and hardware between these devices.View More (103)
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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 H8SX, H8S and H8 families. Simulator debugger and High-performance Embedded Workshop included.
- EmulatorE10A-USB emulator not supporting AUD trace function.
- Programmer (Unit/SW)On-chip debugging emulator available as a flash memory programmer [Available flash programming software: Flash Development Toolkit] [Support MCU/MPU and devices: SuperH RISC engine, R8C, M16C, H8SX, H8S, H8, 740]
- Programmer (Unit/SW)Flash memory programming software. [Support MCU/MPU and devices: SuperH RISC engine, RX, R8C, M16C, H8SX, H8S, H8, 740]
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- SimulatorSimulator debugger for the H8,H8S, H8SX family [Support IDE : High-performance Embedded Workshop] (Note: This product is included in Compiler Package and is not available separately.)
- ITRON OSμITRON4.0 Specification real-time OS for H8SX, H8S Family [Required IDE :High-performance Embedded Workshop]
- Plug-in, OS Aware Debugging, Etc.Function for task-level debugging of real-time OS applications. Standard feature of High-performance Embedded Workshop. Available for debugging with a simulator or an emulator.
- Plug-in, OS Aware Debugging, Etc.Optional debugger extension product (Debugging Extension) for Integrated Development Environment High-performance Embedded Workshop which supports task level debugging of real-time OS applications.
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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 H8SX, H8S and H8 families. Simulator debugger and High-performance Embedded Workshop included.
- EmulatorE10A-USB emulator not supporting AUD trace function.
- Programmer (Unit/SW)On-chip debugging emulator available as a flash memory programmer [Available flash programming software: Flash Development Toolkit] [Support MCU/MPU and devices: SuperH RISC engine, R8C, M16C, H8SX, H8S, H8, 740]
- Programmer (Unit/SW)Flash memory programming software. [Support MCU/MPU and devices: SuperH RISC engine, RX, R8C, M16C, H8SX, H8S, H8, 740]View More (16)
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Knowledge Base
-
(H8SX) Is it possible to set φ output pin as I/O port output pin?
No. φ output pin cannot be set as I/O port output pin. (There is no alternative settings.)
Dec 25, 2008 -
Can H8SX operate with Vcc = 3.0 V?
LVD enable of the Low Voltage Detection Control Register (LVDCR) of the LVD circuit is invalid at its initial value (LVDE = 0) so H8SX can operate at Vcc = 3.0 V. However, if the LVD circuit is enabled while Vcc = 3.0 V, Vdet is min value 3.0 V ...
Apr 7, 2011 -
Is there any evaluation data with the resonator available?
No. Since resonator matching is evaluated based on your board and the resonator manufacturer you will use, we do not provide any specific evaluation data. If you require evaluation data, please confer with your resonator manufacturer.
Mar 11, 2008
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