MN101CF96D, MN101CF96F
Type
Internal ROM type
ROM (byte)
RAM (byte)
Package (Lead-free)
64K
3K
LQFP064-P-1414 (Under planning)
[Standard]
0.2
µs (at
2.7
V to
3.6
V,
10
MHz)
0.5
µs (at
2.7
V to
3.6
V,
4
MHz)
62.5
µs (at
2.7
V to
3.6
V,
32
kHz)
[Double speed]
0.1
µs (at
2.7
V to
3.6
V,
10
MHz)
MN101CF96D
FLASH
96K
6K
MN101CF96F
Minimum Instruction
Execution Time
Interrupts
RESET, Watchdog, External
0
to
5,
Timer
0
to
8,
Time base, Serial
0
reception, Serial
0
transmission, Serial
1
reception, Serial
1
transmission, Serial
2,
Serial
3,
Automatic transfer finish, A/D conversion finish, Key interrupts (8 lines)
Timer counter
0
:
8-bit
×
1
(square-wave/8-bit PWM output, event count, pulse width measurement, serial clock output, real-time output control,
generation of remote control carrier)
Clock source................
1/2, 1/4
of system clock frequency;
1/1, 1/4, 1/16, 1/32, 1/64
of OSC oscillation clock frequency;
1/1
of
XI oscillation clock frequency; external clock input
Interrupt source ........... coincidence with compare register
0
Timer counter
1
:
8-bit
×
1
(square-wave output, event count, synchronous output event, serial clock output)
Clock source................
1/2, 1/8
of system clock frequency;
1/1, 1/4, 1/16, 1/64, 1/128
of OSC oscillation clock frequency;
1/1
of
XI oscillation clock frequency; external clock input
Interrupt source ........... coincidence with compare register
1
Timer counter
0, 1
can be cascade-connected.
Timer Counter
Timer counter
2
:
8-bit
×
1
(square-wave output, PWM output, event count, pulse width measurement, synchronous timer, serial clock output)
Clock source................
1/2, 1/4
of system clock frequency;
1/1, 1/4, 1/16, 1/32, 1/64
of OSC oscillation clock frequency;
1/1
of
XI oscillation clock frequency; external clock input
Interrupt source ........... coincidence with compare register
2
Timer counter
0, 1, 2
can be cascade-connected.
Timer counter
3
:
8-bit
×
1
(square-wave output, event count, serial clock output)
Clock source................
1/2, 1/8
of system clock frequency;
1/1, 1/4, 1/16, 1/64, 1/128
of OSC oscillation clock frequency;
1/1
of
XI oscillation clock frequency; external clock input
Interrupt source ........... coincidence with compare register
3
Timer counter
2, 3
can be cascade-connected.
Timer counter
0, 1, 2, 3
can be cascade-connected.
Timer counter
4
:
8-bit
×
1
(square-wave/8-bit PWM output, event count, pulse width measurement, real-time output control, serial clock output)
Clock source................
1/2, 1/4
of system clock frequency;
1/1, 1/4, 1/16, 1/32, 1/64
of OSC oscillation clock frequency;
1/1
of
XI oscillation clock frequency;
1/1
of external clock input frequency
Interrupt source ........... coincidence with compare register
4
Timer counter
5
:
8-bit
×
1
(square-wave/8-bit PWM output, event count, pulse width measurement, serial clock output)
Clock source................
1/2, 1/8
of system clock frequency;
1/1, 1/4, 1/16, 1/64, 1/128
of OSC oscillation clock frequency;
1/1
of
XI oscillation clock frequency; external clock input
Interrupt source ........... coincidence with compare register
5
Timer counter
4, 5
can be cascade-connected.
MAD00054CEM
MN101CF96D, MN101CF96F
Timer counter
6
:
8-bit
freerun timer
Clock source................
1/1
of system clock frequency;
1/1, 1/128, 1/8192
of OSC oscillation clock frequency;
1/1, 1/128, 1/8192
of XI oscillation clock frequency
Interrupt source ........... coincidence with compare register
6
Timer counter
7
:
16-bit
×
1
(square-wave/16-bit PWM output, cycle / duty continuous variable, event count, synchronous output evevt, pulse width
measurement, input capture, real-time output control)
Clock source................
1/1, 1/2, 1/4, 1/16
of system clock frequency;
1/1, 1/2, 1/4, 1/16
of OSC oscillation clock frequency;
1/1,
1/2, 1/4, 1/16
of external clock input frequency
Interrupt source ........... coincidence with compare register
7
(2 lines)
Timer counter
8
:
16-bit
×
1
(square-wave output, PWM output (duty continuous variable), event count, pulse width measurement, input capture)
Clock source................
1/1, 1/2, 1/4, 1/16
of system clock frequency;
1/1, 1/2, 1/4, 1/16
of OSC oscillation clock frequency;
1/1,
1/2, 1/4, 1/16
of external clock input frequency
Interrupt source ........... coincidence with compare register
8
(2 lines)
Time base timer (one-minute count setting)
Clock source................
1/1
of OSC oscillation clock frequency;
1/1
of XI oscillation clock frequency
Interrupt source ...........
1/128, 1/256, 1/512, 1/1024, 1/8192, 1/32768
of clock source frequency
Watchdog timer
Interrupt source ...........
1/65536, 1/262144, 1/1048576
of system clock frequency
Serial interface
Serial
0
: synchronous type / UART (full-duplex)
×
1
Clock source................
1/2, 1/4
of system clock frequency; pulse output of timer counter
1, 2; 1/2, 1/4, 1/16, 1/64
of OSC
oscillation clock frequency
Serial
1
: synchronous type / UART (full-duplex)
×
1
Clock source................
1/2, 1/4
of system clock frequency; pulse output of timer counter
2, 3; 1/2, 1/4, 1/16, 1/64
of OSC
oscillation clock frequency
Serial
2
: synchronous type / multi-master I²C
×
1
Clock source................
1/2, 1/4
of system clock frequency; pulse output of timer counter
3, 4; 1/2, 1/4, 1/16, 1/32
of OSC
oscillation clock frequency
Serial
3
: synchronous type / single-master I²C
×
1
Clock source................
1/2, 1/4
of system clock frequency; pulse output of timer counter
4, 5; 1/2, 1/4, 1/16, 1/32
of OSC
oscillation clock frequency
DMA controller
Max. Transfer cycles :
255
Starting factor : various types of interrupt, software
Transfer mode :
1-byte
transfer, word transfer, burst transfer
I/O Pins
I/O
51
Common use , Specified pull-up resistor available, Input/output selectable (bit unit)
A/D converter
Special Ports
10-bit
×
7-ch.
(with S/H)
Buzzer output, remote control carrier signal output, high-current drive port
In-circuit Emulator
PX-ICE101C/D+PX-PRB101C96-LQFP064-P-1414
Development tools
MAD00054CEM
Pin Assignment
P70, SDO0, SBO1B
P72, SDO2, SBT1B
P71, SDO1, SBI1B
P74, SDO4, TM7B
P53, TM0A, RMC
33
32
31
30
29
28
27
26
P54, TM1, TM0B
34
P75, SDO5, TM8
P67, KEY7
P66, KEY6
P65, KEY5
P64, KEY4
P63, KEY3
P62, KEY2
37
P61, KEY1
36
P60, KEY0
35
P73, SDO3
46
48
47
45
44
43
42
41
40
39
TM4, SDO6, P76
TM5, SDO7, P77
LED7, P87
LED6, P86
SBO0A, LED5, P85
SBI0A, LED4, P84
SBT0A, LED3, P83
LED2, P82
LED1, P81
LED0, P80
VREF-
AN0, PA0
AN1, PA1
AN2, PA2
AN3, PA3
AN4, PA4
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
10
12
13
14
15
16
11
1
2
3
4
5
6
7
8
9
38
P25, IRQ5, TM7A
P24, IRQ4
P23, IRQ3
P22, IRQ2
P21, IRQ1
P20, IRQ0
P32, TM3
P31, TM2B
P30, TM2A
P15, SBT2, SBT0B
P14, SBI2, SBI0B
P13, SBO2, SBO0B
P12, SBT1A
P11, SBI1A
P10, SBO1A
P02, SBT3, BUZ
MN101CF96D
MN101CF96F
25
24
23
22
21
20
19
18
17
VREF+
XI
P27, NRST
LQFP064-P-1414
SBO3, P00
AN5, PA5
AN6, PA6
AN7, PA7
SBI3, P01
OSC2
OSC1
VPP
VDD33
VDD18
VSS
XO
MMOD
MAD00054CEM
Request for your special attention and preca
semiconductors de
(1)
If any of the products or technical information described in thi
regulations of the exporting country, especially, those with regar
(2) The technical information described in this book is intended onl
of the products, and no license is granted under any intellectua
company. Therefore, no responsibility is assumed by our comp
company which may arise as a result of the use of technical info
(3) The products described in this book are intended to be used for s
equipment, communications equipment, measuring instruments
Consult our sales staff in advance for information on the followi
–
Special applications (such as for airplanes, aerospace, automo
systems and safety devices) in which exceptional quality and
ucts may directly jeopardize life or harm the human body.
–
Any applications other than the standard applications intended.
(4) The products and product specifications described in this book
provement. At the final stage of your design, purchasing, or u
Standards in advance to make sure that the latest specifications s
(5) When designing your equipment, comply with the range of a
(operating power supply voltage and operating environment etc
maximum rating on the transient state, such as power-on, powe
defect which may arise later in your equipment.
Even when the products are used within the guaranteed values
mode, possible to occur to semiconductor products. Measures o
or preventing glitch are recommended in order to prevent physic
(6) Comply with the instructions for use in order to prevent breakd
thermal stress and mechanical stress) at the time of handling, m
damp-proof packing is required, satisfy the conditions, such as s
(7) This book may be not reprinted or reproduced whether wholl
Electric Industrial Co., Ltd. Industrial Co., Ltd.