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RA4M1 Datasheet(PDF) 58 Page - Renesas Technology Corp

Part # RA4M1
Description  High efficiency 48-MHz Arm Cortex-M4 core, 256-KB code flash memory
PDF  130 Pages
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Manufacturer  RENESAS [Renesas Technology Corp]
Direct Link  http://www.renesas.com
Logo RENESAS - Renesas Technology Corp

RA4M1 Datasheet(HTML) 58 Page - Renesas Technology Corp

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R01DS0355EJ0100 Rev.1.00
Page 58 of 130
Oct 8, 2019
RA4M1 Group
2. Electrical Characteristics
Note 1.
Time until the clock can be used after the Main Clock Oscillator Stop bit (MOSCCR.MOSTP) is set to 0 (operating) when the
external clock is stable.
Note 2.
The VCC range that the PLL can be used is 2.4 to 5.5 V.
Note 3.
After changing the setting of the SOSCCR.SOSTP bit so that the sub-clock oscillator operates, only start using the sub-clock
after the sub-clock oscillation stabilization wait time elapses, that is greater than or equal to the value recommended by the
oscillator manufacturer.
Note 4.
The 48-MHz HOCO can be used within a VCC range of 1.8 V to 5.5 V.
Note 5.
The 64-MHz HOCO can be used within a VCC range of 2.4 V to 5.5 V.
Note 6.
This is a characteristic when HOCOCR.HCSTP bit is set to 0 (oscillation) in MOCO stop state.
When HOCOCR.HCSTP bit is set to 0 (oscillation) during MOCO oscillation, this specification is shortened by 1 μs.
Note 7.
Whether stabilization time has elapsed can be confirmed by OSCSF.HOCOSF.
Note 8.
This is a characteristic when PLLCR.PLLSTP bit is set to 0 (operation) in MOCO stop state.
When PLLCR.PLLSTP bit is set to 0 (operation) during MOCO oscillation, this specification is shortened by 1 μs.
Note 9.
When setting up the main clock, ask the oscillator manufacturer for an oscillation evaluation and use the results as the
recommended oscillation stabilization time. Set the MOSCWTCR register to a value equal to or greater than the recommended
stabilization time. After changing the setting of the MOSCCR.MOSTP bit so that the main clock oscillator operates, read the
OSCSF.MOSCSF flag to confirm that it is 1, then start using the main clock.
HOCO clock oscillation frequency
fHOCO24
23.64
24
24.36
MHz
Ta = -40 to -20°C
1.8 ≤ VCC ≤ 5.5
22.68
24
25.32
Ta = -40 to 85°C
1.6 ≤ VCC < 1.8
23.76
24
24.24
Ta = -20 to 85°C
1.8 ≤ VCC ≤ 5.5
23.52
24
24.48
Ta = 85 to 105°C
2.4 ≤ VCC ≤ 5.5
fHOCO32
31.52
32
32.48
Ta = -40 to -20°C
1.8 ≤ VCC ≤ 5.5
30.24
32
33.76
Ta = -40 to 85°C
1.6 ≤ VCC < 1.8
31.68
32
32.32
Ta = -20 to 85°C
1.8 ≤ VCC ≤ 5.5
31.36
32
32.64
Ta = 85 to 105°C
2.4 ≤ VCC ≤ 5.5
fHOCO48*4
47.28
48
48.72
Ta = -40 to -20°C
1.8 ≤ VCC ≤ 5.5
47.52
48
48.48
Ta = -20 to 85°C
1.8 ≤ VCC ≤ 5.5
47.04
48
48.96
Ta = 85 to 105°C
2.4 ≤ VCC ≤ 5.5
fHOCO64*5
63.04
64
64.96
Ta = -40 to -20°C
2.4 ≤ VCC ≤ 5.5
63.36
64
64.64
Ta = -20 to 85°C
2.4 ≤ VCC ≤ 5.5
62.72
64
65.28
Ta = 85 to 105°C
2.4 ≤ VCC ≤ 5.5
HOCO clock oscillation
stabilization time*6, *7
Except Low-Voltage
mode
tHOCO24
tHOCO32
--
37.1
μs
Figure 2.27
tHOCO48
--
43.3
tHOCO64
--
80.6
Low-Voltage mode
tHOCO24
tHOCO32
tHOCO48
tHOCO64
-
-
100.9
PLL input frequency*2
fPLLIN
4-
12.5
MHz
-
PLL circuit oscillation frequency*2
fPLL
24
-
64
MHz
-
PLL clock oscillation stabilization time*8
tPLL
--
55.5
μs
Figure 2.29
PLL free-running oscillation frequency
fPLLFR
-8
-MHz
-
Sub-clock oscillator oscillation frequency
fSUB
-
32.768
-
kHz
-
Sub-clock oscillation stabilization time*3
tSUBOSC
--
-*3
s
Figure 2.30
Table 2.22
Clock timing (2 of 2)
Parameter
Symbol
Min
Typ
Max
Unit
Test conditions



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