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High Performance 32-bit Microcontrollers Achieving 5.06CoreMark/MHz (607CoreMark) with RXv2 Core Employed

Package Information

Pitch (mm) 0.5
Lead Count (#) 176
Pkg. Dimensions (mm) 24 x 24 x 1.7
Pkg. Code pkg_9400
Pkg. Type LFQFP

Environmental & Export Classifications

Moisture Sensitivity Level (MSL) 3
ECCN (US) 3A991
HTS (US) 8542.31.0001
RoHS (R5F564MLCDFC#31) EnglishJapanese
Pb (Lead) Free Yes

Product Attributes

Carrier Type Tray
Family Name RX
Series Name RX600
Group Name RX64M
CPU Architecture RX
Main CPU RXv2
Sub CPU No
Floating Point Unit Single
Bit Length 32
Program Memory (KB) 4096
Data Flash (KB) 64
RAM (KB) 512
ECC SRAM No
Lead Count (#) 176
Pitch (mm) 0.5
Pkg. Dimensions (mm) 24 x 24 x 1.7
Number of Supply Voltage(s) (#) 1
Supply Voltage (V) 2.7 - 3.6
I/O Ports 128
DMAC or DTC DMAC&DTC
DMA (ch) 8
Temperature Sensor (ch) (#) 1
Power-On Reset Yes
Watchdog Timer (ch) 2
External Memory Bus (bit) 8,16,32
DRAM I/F SDRAM I/F
3D GPU No
Accelerator No
Temp. Range Ta = -40 to +85°C
External Interrupt Pins (#) 16
LVD or PVD Yes
Operating Freq (Max) (MHz) 120
Operating Freq of Sub CPU (Max) 0
Sub-clock (32.768 kHz) Yes
On-chip Oscillator Yes
Ethernet speed 10M/100M
Ethernet (ch) 2
EtherCat (ch) (#) 0
USB Ports (#) 2
USB FS (host ch/device ch) ( 2 / 2 )
USB HS (host ch/device ch) ( 0 / 0 )
USB SS (host ch/device ch) ( 0 / 0 )
PCI Express (generation and ch) No
SCI or UART (ch) 13
SPI (ch) 10
QSPI (ch) 1
OSPI (ch) 0
I2C (#) 11
I3C (ch) 0
CAN (ch) 3
CAN-FD (ch) 0
Wireless No
IrDA No
LIN (#) 0
SDHI (ch) 0
High Resolution Output Timer No
PWM Output (pin#) 47
32-Bit Timer (ch) 3
16-Bit Timer (ch) (#) 22
8-Bit Timer (ch) 4
Standby operable timer No
Asynchronous General Purpose Timer / Interval Timer (ch) 0
RTC Yes
16-Bit A/D Converter (ch) 0
14-Bit A/D Converter (ch) 0
12-Bit A/D Converter (ch) 29
10-Bit A/D Converter (ch) 0
24-Bit Sigma-Delta A/D Converter (ch) 0
16-Bit D/A Converter (ch) 0
12-Bit D/A Converter (ch) 2
10-Bit D/A Converter (ch) (#) 0
8-Bit D/A Converter (ch) 0
Analog Comparator (ch) 0
OPAMP (ch) (#) 0
PGA (ch) 0
Capacitive Touch Sensing Unit (ch) 0
Graphics LCD Controller No
MIPI Interfaces (DSI) (ch) 0
MIPI Interfaces (CSI) (ch) 0
Camera I/F (Parallel) 8-bit
Image Codec No
2D Drawing Engine No
Segment LCD Controller No
SSI (ch) 2
Security & Encryption Unique ID
Debug Interface JTAG/Single-wire Serial
Moisture Sensitivity Level (MSL) 3
Country of Assembly China
Country of Wafer Fabrication Japan
12-Bit Timer (ch) 0
32-Bit High Res Timer (ch) 0
ADC 12-bit x 29-ch
Asynchronous General Purpose Timer (ch) 0
Bit Size 32
CPU RXv2
DAC 12-bit x 2-ch
DMA Yes
DTC (ch) 0
Delta-Sigma A/D Converter No
Ethernet Yes
Family Name
Group Name
High-Speed Analog Comparator (ch) 0
Human Machine Interface Camera Interface PDC, Serial sound interface
Lead Compliant Yes
Length (mm) 24
Longevity 2038 Dec
Low-Power Analog Comparator (ch) 0
MIPI Interfaces (DSI/CSI) 0
MOQ 1
Pb (Lead) Free Yes
Pkg. Type LFQFP
SPI (#) 10
Tape & Reel No
Thickness (mm) 1.7
Timer 8-bit x 4-ch, 16-bit x 22-ch, 32-bit x 3-ch
UART (#) 13
USB USB Ports (ch) x 2||USB Endpoints x 10||USB Isochronous Transfer Support
USBFS (ch) 0
USBHS (ch) 0
Width (mm) 24

Description

The RX64M Group 32-bit microcontrollers are capable of operating at up to 120 MHz, providing a leading edge performance of 5.06 CoreMark/MHz. The RX64M employs the powerfully evolved RXv2 core, which is backward compatible with the RX core employed in existing RX products.The RXv2 core enables 1.48 times the CoreMark/MHz performance and a 40% reduction in power consumption compared to existing RX products, and even higher code efficiency, allowing the realization of high-speed, low consumption systems. The RX64M Group is equipped with large-capacity memory of up to 4 MB of ROM for code and 552 KB work RAM. Built-in functions include the well-received event link controller from the RX200 and abundant functions from the RX63N, as well as SD card and audio interfaces, which are highly demanded by the market, and IEEE 1588 industrial Ethernet functions have been added. Thus, the RX64M Group is suitable for industrial equipment, network devices, and other applications requiring advanced real-time performance and large-capacity memory. We are also preparing a variety of middleware to support short system development times at low cost.