M30290FAHP#U5A Renesas Electronics America, M30290FAHP#U5A Datasheet - Page 267

IC M16C/29 MCU FLASH 96K 80LQFP

M30290FAHP#U5A

Manufacturer Part Number
M30290FAHP#U5A
Description
IC M16C/29 MCU FLASH 96K 80LQFP
Manufacturer
Renesas Electronics America
Series
M16C™ M16C/Tiny/29r
Datasheet

Specifications of M30290FAHP#U5A

Core Processor
M16C/60
Core Size
16-Bit
Speed
20MHz
Connectivity
CAN, I²C, IEBus, SIO, UART/USART
Peripherals
DMA, POR, PWM, Voltage Detect, WDT
Number Of I /o
71
Program Memory Size
96KB (96K x 8)
Program Memory Type
FLASH
Ram Size
8K x 8
Voltage - Supply (vcc/vdd)
2.7 V ~ 5.5 V
Data Converters
A/D 27x10b
Oscillator Type
Internal
Operating Temperature
-20°C ~ 85°C
Package / Case
80-LQFP
For Use With
R0K330290S000BE - KIT EVAL STARTER FOR M16C/29M30290T2-CPE - EMULATOR COMPACT M16C/26A/28/29M30290T2-CPE-HP - EMULATOR COMPACT FOR M16C/TINY
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Eeprom Size
-

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Table 15.10 Delayed Trigger Mode 0 Specifications
NOTES:
6
Readout of A/D conversion
0
Function
A/D Conversion Start
A/D Conversion Stop
result
Condition
Interrupt request
generation timing
Analog input pin
15.1.7 Delayed Trigger Mode 0
1
9
C
1 .
B
In delayed trigger mode 0, analog voltages applied to the selected pins are converted one-by-one to a
digital code. The delayed trigger mode 0 used in combination with A/D trigger mode of Timer B. The
Timer B0 underflow starts a single sweep conversion. After completing the AN
pin is not sampled and converted until the Timer B1 underflow is generated. When the Timer B1 under-
flow is generated, the single sweep conversion is restarted with the AN
delayed trigger mode 0 specifications. Figure 15.19 shows the operation example in delayed trigger
mode 0. Figures 15.20 and 15.21 show each flag operation in the ADSTAT0 register that corresponds to
the operation example. Figure 15.22 shows registers ADCON0 to ADCON2 in delayed trigger mode 0.
Figure 15.23 shows the ADTRGCON register in delayed trigger mode 0 and Table 15.11 shows the
trigger select bit setting in delayed trigger mode 0.
1. Set the larger value than the value of the timer B0 register to the timer B1 register. The count source for timer B0
2. Do not write 1 (A/D conversion started) to the ADST bit in delayed trigger mode 0. When write 1, unexpected
3. AN0
2 /
0
2
9
1
and timer B1 must be the same.
interrupts may be generated.
pins need to belong to the same group.
M
0
G
1
r a
0 -
o r
0
3 .
1
Item
to AN0
u
, 0
1
p
2
2
0
0
7
7
, AN 2
page 241
0
to AN2
Bits SCAN1 and SCAN0 in the ADCON1 register and bits ADGSEL1 and ADGSEL0
in the ADCON2 register select pins. Analog voltage applied to the input voltage of
the selected pins are converted one-by-one to the digital code. At this time, timer B0
underflow generation starts AN
starts conversion after the AN
AN
AN
A/D conversion completed
Select from AN
and AN
Readout one of registers AN0 to AN7 that corresponds to the selected pins
•When single sweep conversion from the AN
•Set the ADST bit to 0 (A/D conversion halted)
•When Timer B0 underflow is generated if Timer B0 underflow is generated again
•When Timer B1 underflow is generated during A/D conversion of the AN
•When Timer B0 underflow is generated during A/D conversion of pins after the
sweep start when AN
7
f o
before Timer B1 underflow is generated , the conversion is not affected
AN
input voltage of the AN
, and AN3
0
1
4
pin conversion start condition
pin conversion start condition
1
5
pin, conversion is halted and the sweep is restarted from the AN
8
0
to AN
0
to AN3
7
0
(8 pins)
to AN
2
can be used in the same way as AN
0
conversion is completed.
1
1
(3)
(2 pins), AN
pin is sampled. The AN
Specification
1
0
pin.
pin conversion. Timer B1 underflow generation
(1)
0
to AN
3
(4 pins), AN
0
1
1
conversion and the rest of the
pin is completed
(2)
pin. Table 15.10 shows the
0
0
pin conversion, the AN
to AN
0
to AN
7
. However, all input
0
5
pin again
(6 pins)
0
pin, the
1

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