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PDF M30620MC-405FP Data sheet ( Hoja de datos )

Número de pieza M30620MC-405FP
Descripción SINGLE-CHIP 16-BIT CMOS MICROCOMPUTER
Fabricantes Mitsubishi 
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Description
Mitsubishi microcomputers
M16C / 62M Group
(Low voltage version)
SINGLE-CHIP 16-BIT CMOS MICROCOMPUTER
Description
The M16C/62M group of single-chip microcomputers are built using the high-performance silicon gate
CMOS process using a M16C/60 Series CPU core and are packaged in a 100-pin plastic molded QFP.
These single-chip microcomputers operate using sophisticated instructions featuring a high level of instruc-
tion efficiency. With 1M bytes of address space, low voltage (2.2V to 3.6V), they are capable of executing
instructions at high speed. They also feature a built-in multiplier and DMAC, making them ideal for control-
ling office, communications, industrial equipment, and other high-speed processing applications.
The M16C/62M group includes a wide range of products with different internal memory types and sizes and
various package types.
Features
• Memory capacity .................................. ROM (See Figure 1.1.4. ROM Expansion)
RAM 10K to 20K bytes
• Shortest instruction execution time ...... 100ns (f(XIN)=10MHZ, VCC=2.7V to 3.6V)
142.9ns (f(XIN)=7MHZ, VCC=2.2V to 3.6V with software one-wait)
• Supply voltage ..................................... 2.7V to 3.6V (f(XIN)=10MHZ, without software wait)
2.4V to 2.7V (f(XIN)=7MHZ, without software wait)
2.2V to 2.4V (f(XIN)=7MHZ with software one-wait)
• Low power consumption ...................... 28.5mW (VCC = 3V, f(XIN)=10MHZ, without software wait)
• Interrupts .............................................. 25 internal and 8 external interrupt sources, 4 software
interrupt sources; 7 levels (including key input interrupt)
• Multifunction 16-bit timer ...................... 5 output timers + 6 input timers
• Serial I/O .............................................. 5 channels
(3 for UART or clock synchronous, 2 for clock synchronous)
• DMAC .................................................. 2 channels (trigger: 24 sources)
• A-D converter ....................................... 10 bits X 8 channels (Expandable up to 10 channels)
• D-A converter ....................................... 8 bits X 2 channels
• CRC calculation circuit ......................... 1 circuit
• Watchdog timer .................................... 1 line
• Programmable I/O ............................... 87 lines
_______
• Input port .............................................. 1 line (P85 shared with NMI pin)
• Memory expansion .............................. Available (to a maximum of 1M bytes)
• Chip select output ................................ 4 lines
• Clock generating circuit ....................... 2 built-in clock generation circuits
(built-in feedback resistor, and external ceramic or quartz oscillator)
Applications
Audio, cameras, office equipment, communications equipment, portable equipment
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M30620MC-405FP pdf
Description
Mitsubishi microcomputers
M16C / 62M Group
(Low voltage version)
SINGLE-CHIP 16-BIT CMOS MICROCOMPUTER
Performance Outline
Table 1.1.1 is a performance outline of M16C/62M group.
Table 1.1.1. Performance outline of M16C/62M group
Item Performance
Number of basic instructions
91 instructions
Shortest instruction execution time
100ns(f(XIN)=10MHZ, VCC=2.7V to 3.6V)
142.9ns (f(XIN)=7MHZ, VCC=2.2V to 3.6V with software one-wait)
Memory
ROM
(See the figure 1.1.4. ROM Expansion)
capacity
RAM
10K to 20K bytes
I/O port
P0 to P10 (except P85)
8 bits x 10, 7 bits x 1
Input port P85
1 bit x 1
Multifunction TA0, TA1, TA2, TA3, TA4
16 bits x 5
timer
TB0, TB1, TB2, TB3, TB4, TB5 16 bits x 6
Serial I/O UART0, UART1, UART2
(UART or clock synchronous) x 3
SI/O3, SI/O4
(Clock synchronous) x 2
A-D converter
10 bits x (8 + 2) channels
D-A converter
8 bits x 2
DMAC
2 channels (trigger: 24 sources)
CRC calculation circuit
CRC-CCITT
Watchdog timer
15 bits x 1 (with prescaler)
Interrupt
25 internal and 8 external sources, 4 software sources, 7 levels
Clock generating circuit
2 built-in clock generation circuits
(built-in feedback resistor, and external ceramic or quartz oscillator)
Supply voltage
2.7V to 3.6V (f(XIN)=10MHZ, without software wait)
2.4V to 2.7V (f(XIN)=7MHZ, without software wait)
2.2V to 2.4V (f(XIN)=7MHZ with software one-wait)
Power consumption
28.5mW (f(XIN) =10MHZ, VCC=3V without software wait)
I/O I/O withstand voltage
3V
characteristics Output current
1mA
Memory expansion
Available (to a maximum of 1M bytes)
Device configuration
CMOS high performance silicon gate
Package
100-pin plastic mold QFP
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M30620MC-405FP arduino
Electrical characteristics
Mitsubishi microcomputers
M16C / 62M Group
(Low voltage version)
SINGLE-CHIP 16-BIT CMOS MICROCOMPUTER
Table 1.26.4. A-D conversion characteristics (referenced to VCC = AVCC = VREF = 2.4V to 3.6V, VSS = AVSS
= 0V, at Ta = – 20oC to 85oC / – 40oC to 85oC (Note2), f(XIN)=10MHZ unless otherwise specified)
Symbol
Parameter
Measuring condition
Standard
Min. Typ. Max Unit
– Resolution
VREF =VCC
10 Bits
Absolute accuracy Sample & hold function not available (8 bit) VREF =VCC=3V, fAD=fAD/2
±2 LSB
RLADDER Ladder resistance
VREF =VCC
10 40 k
tCONV
Conversion
time(8bit)
9.8 µs
VREF Reference voltage
VIA Analog input voltage
Note 1: Connect AVCC pin to VCC pin and apply the same electric potential.
2.4 VCC V
0 VREF V
Note 2: Specify a product of –40°C to 85°C to use it.
Table 1.26.5. D-A conversion characteristics (referenced to VCC = 2.4V to 3.6V, VSS = AVSS = 0V, VREF=3V,
at Ta = – 20oC to 85oC / – 40oC to 85oC (Note2), f(XIN)=10MHZ unless otherwise specified)
Symbol
Parameter
Measuring condition
Standard
Min. Typ. Max Unit
tsu
RO
IVREF
Resolution
Absolute accuracy
Setup time
Output resistance
Reference power supply input current
(Note1)
8 Bits
1.0 %
3 µs
4 10 20 k
1.0 mA
Note 1: This applies when using one D-A converter, with the D-A register for the unused D-A converter set to “0016”.
The A-D converter's ladder resistance is not included.
Also, when DA register contents are not “00”, the current IVREF always flows even though Vref may have been
set to be “unconnected” by the A-D control register.
Note 2: Specify a product of –40°C to 85°C to use it.
Table 1.26.6. Flash memory version electrical characteristics
(referenced to VCC = 2.7V to 3.6V, at Ta =0oC to 60oC unless otherwise specified)
Parameter
Standard
Min. Typ.
Max
Page program time
6 120
Block erase time
50 600
Erase all unlocked blocks time
50 X n (Note) 600 X n (Note)
Lock bit program time
6 120
Note : n denotes the number of block erases.
Unit
ms
ms
ms
ms
Table 1.26.7. Flash memory version program voltage and read operation voltage characteristics
(Ta =0oC to 60oC)
Flash program voltage
Flash read operation voltage
VCC=2.7V to 3.6V
VCC=2.4V to 3.6V
VCC=2.7V to 3.4V
VCC=2.2V to 2.4V
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