Technical Document
Specifications
Brand
Renesas ElectronicsFamily Name
RL78/G13
Package Type
HWQFN
Mounting Type
Surface Mount
Pin Count
32
Device Core
RL78
Data Bus Width
16bit
Program Memory Size
128 kB
Maximum Frequency
32MHz
RAM Size
12 kB
USB Channels
0
Number of SPI Channels
3
Number of USART Channels
0
Typical Operating Supply Voltage
1.6 → 5.5 V
Number of I2C Channels
4
Number of UART Channels
3
Number of CAN Channels
0
Dimensions
5 x 5 x 0.75mm
Width
5mm
Height
0.75mm
Number of LIN Channels
1
Number of Ethernet Channels
0
Number of PCI Channels
0
Program Memory Type
Flash
Minimum Operating Temperature
-40 °C
Instruction Set Architecture
CISC
Maximum Number of Ethernet Channels
0
ADCs
8 x 8/10 bit
Length
5mm
Number of ADC Units
1
Maximum Operating Temperature
+85 °C
Country of Origin
Japan
Product details
RL78/G13, 16-Bit Microcontrollers, 128kB/192kB Flash, Renesas Electronics
RL78 is Renesas Electronics' next-generation microcontroller family combining advanced features from both the 78K and R8C families to deliver low power consumption (66uA / MHz) and high performance (41DMIPS @ 32MHz).
RL78 is based upon a 16bit CISC architecture with analogue rich functionality. The platform line-up will include general purpose, LCD and ASSPs including lighting and automotive microcontrollers.
RL78 is designed specifically for ultra-low power applications enabling customers to build compact and energy-efficient systems at lower cost.
In addition to a high-precision (±1%) on-chip oscillator enabling 32MHz CPU operation and other standard on-chip functions from the RL78/G13, the RL78/G14 microcontrollers have multiply, divide and multiply-accumulate instructions capable of faster processing than the RL78/G13, and functions from the R8C Family with proven track records, such as timers RD/RG/RJ, data transfer controller, and event link controller, helping to lower the total cost of building a system and contributing to more compact size and lower power consumption.
RL78 Family Microcontrollers, Renesas Electronics
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2
Price on asking
Each (In a Pack of 2) (Exc. VAT)
Stock information temporarily unavailable.
2
Technical Document
Specifications
Brand
Renesas ElectronicsFamily Name
RL78/G13
Package Type
HWQFN
Mounting Type
Surface Mount
Pin Count
32
Device Core
RL78
Data Bus Width
16bit
Program Memory Size
128 kB
Maximum Frequency
32MHz
RAM Size
12 kB
USB Channels
0
Number of SPI Channels
3
Number of USART Channels
0
Typical Operating Supply Voltage
1.6 → 5.5 V
Number of I2C Channels
4
Number of UART Channels
3
Number of CAN Channels
0
Dimensions
5 x 5 x 0.75mm
Width
5mm
Height
0.75mm
Number of LIN Channels
1
Number of Ethernet Channels
0
Number of PCI Channels
0
Program Memory Type
Flash
Minimum Operating Temperature
-40 °C
Instruction Set Architecture
CISC
Maximum Number of Ethernet Channels
0
ADCs
8 x 8/10 bit
Length
5mm
Number of ADC Units
1
Maximum Operating Temperature
+85 °C
Country of Origin
Japan
Product details
RL78/G13, 16-Bit Microcontrollers, 128kB/192kB Flash, Renesas Electronics
RL78 is Renesas Electronics' next-generation microcontroller family combining advanced features from both the 78K and R8C families to deliver low power consumption (66uA / MHz) and high performance (41DMIPS @ 32MHz).
RL78 is based upon a 16bit CISC architecture with analogue rich functionality. The platform line-up will include general purpose, LCD and ASSPs including lighting and automotive microcontrollers.
RL78 is designed specifically for ultra-low power applications enabling customers to build compact and energy-efficient systems at lower cost.
In addition to a high-precision (±1%) on-chip oscillator enabling 32MHz CPU operation and other standard on-chip functions from the RL78/G13, the RL78/G14 microcontrollers have multiply, divide and multiply-accumulate instructions capable of faster processing than the RL78/G13, and functions from the R8C Family with proven track records, such as timers RD/RG/RJ, data transfer controller, and event link controller, helping to lower the total cost of building a system and contributing to more compact size and lower power consumption.


