R5F21134DFP#U0 Renesas Electronics America, R5F21134DFP#U0 Datasheet - Page 79

IC R8C MCU FLASH 32LQFP

R5F21134DFP#U0

Manufacturer Part Number
R5F21134DFP#U0
Description
IC R8C MCU FLASH 32LQFP
Manufacturer
Renesas Electronics America
Series
M16C™ M16C/R8C/Tiny/13r
Datasheets

Specifications of R5F21134DFP#U0

Core Size
16-Bit
Program Memory Size
16KB (16K x 8)
Oscillator Type
Internal
Core Processor
R8C
Speed
20MHz
Connectivity
SIO, UART/USART
Peripherals
LED, POR, Voltage Detect, WDT
Number Of I /o
22
Program Memory Type
FLASH
Ram Size
1K x 8
Voltage - Supply (vcc/vdd)
2.7 V ~ 5.5 V
Data Converters
A/D 12x10b
Operating Temperature
-40°C ~ 85°C
Package / Case
32-LQFP
No. Of I/o's
22
Eeprom Memory Size
4KB
Ram Memory Size
1024Byte
Cpu Speed
20MHz
No. Of Timers
16
Digital Ic Case
RoHS Compliant
Controller Family/series
R8C/13
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With
R0K521134S000BE - KIT EVAL STARTER FOR R8C/13R0E521134EPB00 - KIT EMULATOR PROBE FOR PC7501R0E521134CPE00 - EMULATOR COMPACT R8C/13
Eeprom Size
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Company:
Part Number:
R5F21134DFP#U0R5F21134DFP
Manufacturer:
Renesas Electronics America
Quantity:
10 000
Company:
Part Number:
R5F21134DFP#U0
Manufacturer:
Renesas Electronics America
Quantity:
10 000
R8C/13 Group
Rev.1.20
REJ09B0111-0120
11. Watchdog Timer
Figure 11.1 Watchdog Timer Block Diagram
The watchdog timer is the function of detecting when the program is out of control. Therefore, we recom-
mend using the watchdog timer to improve reliability of a system. Figure 11.1 shows the watchdog timer
block diagram.The watchdog timer contains a 15-bit counter which counts down the clock derived by
dividing the CPU clock using the prescaler. Whether to generate a watchdog timer interrupt request or
apply a watchdog timer reset as an operation to be performed when the watchdog timer underflows after
reaching the terminal count can be selected using the PM12 bit in the PM1 register. The PM12 bit can
only be set to “1” (reset). Once this bit is set to “1”, it cannot be set to “0” (watchdog timer interrupt) in a
program. Refer to Section 5.3, “Watchdog Timer Reset” for details.
The divide-by-N value for the prescaler can be chosen to be 16 or 128 with the WDC7 bit in the WDC
register. The period of watchdog timer can be calculated as given below. The period of watchdog timer is,
however, subject to an error due to the prescaler.
For example, when CPU clock = 16 MHz and the divide-by-N value for the prescaler= 16, the watchdog
timer period is approx. 32.8 ms.
Figure 11.2 shows the OFS, the WDC, the WDTR and the WDTS registers. The watchdog timer opera-
tion after reset can be selected using the WDTON bit in the option function select register (0FFFF
address).
The WDTON bit can not be changed in a program. When setting the WDTON bit, write “0” into bit 0 of
0FFFF
and the counting continues.
In stop mode and wait mode, the watchdog timer and the prescaler are stopped. Counting is resumed
from the held value when the modes or state are released.
Watchdog timer period =
When the WDTON bit is “0” (the watchdog timer is started automatically after reset), the watchdog
When the WDTON bit is “1” (the watchdog timer is inactive after reset), the watchdog timer and the
timer and the prescaler both start counting automatically after reset.
prescaler both are inactive after reset, so that the watchdog timer is activated to start counting by
writing to the WDTS register.
Jan 27, 2006
Write to WDTR register
Internal
reset signal
CPU clock
16
address using a flash writer. The watchdog timer is nitialized by writing to the WDTR register
page 68 of 205
Prescaler
1/128
Prescaler dividing (16 or 128) X Watchdog timer count (32768)
1/16
WDC7 = 0
WDC7 = 1
Watchdog timer
CPU clock
Set to
“7FFF
16
PM12 = 0
PM12 = 1
Watchdog timer
interrupt request
Watchdog
timer Reset
11. Watchdog Timer
16

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