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RX113 Datasheet(PDF) 85 Page - Renesas Technology Corp

Part # RX113
Description  32 MHz maximum operating frequency Capable of 50 DMIPS when operating at 32 MHz
PDF  131 Pages
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Manufacturer  RENESAS [Renesas Technology Corp]
Direct Link  http://www.renesas.com
Logo RENESAS - Renesas Technology Corp

RX113 Datasheet(HTML) 85 Page - Renesas Technology Corp

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R01DS0216EJ0120 Rev.1.20
Page 85 of 131
Sep 07, 2020
RX113 Group
5. Electrical Characteristics
5.3.5
Timing of On-Chip Peripheral Modules
Note 1. tPcyc: PCLK cycle
Note 2. tcac: CAC count clock source cycle
Note 3. When the LOCO is selected as the clock output source (CKOCR.CKOSEL[2:0] bits = 000b), set the clock output division ratio
selection to divided by 2 (CKOCR.CKODIV[2:0] bits = 001b).
Note 4. When the XTAL external clock input or an oscillator is used with divided by 1 (CKOCR.CKOSEL[2:0] bits = 010b and
CKOCR.CKODIV[2:0] bits = 000b) to output from CLKOUT, the above should be satisfied with an input duty cycle of 45 to 55%.
Table 5.30
Timing of On-Chip Peripheral Modules (1)
Conditions: 1.8 V
≤ VCC = VCC_USB ≤ 3.6 V, 1.8 V ≤ AVCC0 ≤ 3.6 V, VSS = AVSS0 = VSS_USB = 0 V, T
a = –40 to +105°C
Item
Symbol
Min.
Max.
Unit*1
Test
Conditions
I/O ports
Input data pulse width
tPRW
1.5
—
tPcyc
Figure 5.33
MTU2
Input capture input pulse width
Single-edge setting
tTICW
1.5
—
tPcyc
Figure 5.34
Both-edge setting
2.5
—
Timer clock pulse width
Single-edge setting
tTCKWH,
tTCKWL
1.5
—
tPcyc
Figure 5.35
Both-edge setting
2.5
—
Phase counting mode
2.5
—
POE
POE# input pulse width
tPOEW
1.5
—
tPcyc
Figure 5.36
TMR
Timer clock pulse width
Asynchronous
tTMCWH,
tTMCWL
1.5
—
tPcyc
Figure 5.37
Clock synchronous
2.5
—
SCI
Input clock cycle
Asynchronous
tScyc
4—
tPcyc
Figure 5.38
Clock synchronous
6
—
Input clock pulse width
tSCKW
0.4
0.6
tScyc
Input clock rise time
tSCKr
—20
ns
Input clock fall time
tSCKf
—20
ns
Output clock cycle
Asynchronous
tScyc
16
—
tPcyc
Figure 5.39
C = 30 pF
Clock synchronous
4
—
Output clock pulse width
tSCKW
0.4
0.6
tScyc
Output clock rise time
tSCKr
—20
ns
Output clock fall time
tSCKf
—20
ns
Transmit data delay
time (master)
Clock synchronous
tTXD
—40
ns
Transmit data delay
time (slave)
Clock
synchronous
2.7 V or above
—
65
ns
1.8 V or above
—
100
ns
Receive data setup
time (master)
Clock
synchronous
2.7 V or above
tRXS
65
—
ns
1.8 V or above
90
—
ns
Receive data setup
time (slave)
Clock synchronous
40
—
ns
Receive data hold
time
Clock synchronous
tRXH
40
—
ns
A/D converter
Trigger input pulse width
tTRGW
1.5
—
tPcyc
Figure 5.40
CAC
CACREF input pulse width
tPcyc ≤ tcac*2
tCACREF 4.5 tcac + 3 tPcyc
—ns
tPcyc > tcac*2
5 tcac + 6.5 tPcyc
CLKOUT
CLKOUT pin output cycle*4
VCC = 2.7 V or above
tCcyc
125
—
ns
Figure 5.41
VCC = 1.8 V or above
250
CLKOUT pin high pulse width*3
VCC = 2.7 V or above
tCH
35
—
ns
VCC = 1.8 V or above
70
CLKOUT pin low pulse width*3
VCC = 2.7 V or above
tCL
35
—
ns
VCC = 1.8 V or above
70
CLKOUT pin output rise time
VCC = 2.7 V or above
tCr
—15
ns
VCC = 1.8 V or above
30
CLKOUT pin output fall time
VCC = 2.7 V or above
tCf
—15
ns
VCC = 1.8 V or above
30



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