MN101LR05D/04D/03D/02D
8-bit Single-chip Microcontroller
Publication date: October 2014 22
PubNo. 21705-019E
Figure:1.5.3 OSC1 timing diagram
V
DD30
= 1.8 V to 3.6 V, V
SS
= 0 V
V
RSTL
= 1.1 V at auto reset function
Ta = -40 C to +85 C
Parameter Symbol Condition
Limits
Unit
MIN TYP MAX
External clock input 1 OSC1 (OSC2 is open.) (MN101LR02D is not applicable.)
B18 Clock frequency
f
HOSCCLK
1.0 -- 10.0 MHz
B19 High period time *12
t
wh1
Figure:1.5.3
45 -- --
ns
B20 Low period time *12
t
wl1
45 -- --
B21 Rise time
t
wr1
Figure:1.5.3
-- -- 5.0
B22 Fall time
t
wf1
-- -- 5.0
*12 Set the clock duty ratio to the value from 45 % to 55 %.
twh1 twl1
0.9VDD30
twf1
twc1
twr1
0.1VDD30
MN101LR05D/04D/03D/02D
8-bit Single-chip Microcontroller
Publication date: October 2014 23
PubNo. 21705-019E
1.5.3 DC Characteristics
C. DC Characteristics
V
SS
= 0 V
Ta = -40 C to +85C
Parameter Symbol Condition
Limits
Unit
MIN TYP MAX
Supply current *13
C1
*14
Operating supply
current
I
DD1
f
HOSCCLK
= 10 MHz
V
DD30
= 3.0 V, V
DD18
= 1.8 V
[f
SYSCLK
= f
HOSCCLK
]
-- 2.1 3.1
mA
C2
I
DD2
f
HRCCLK
= 10 MHz
V
DD30
= 3.0 V, V
DD18
= 1.8 V
[f
SYSCLK
= f
HRCCLK
]
-- 2.1 3.0
C3
I
DD3
f
HRCCLK
= 8 MHz
V
DD30
= 3.0 V, V
DD18
= 1.8 V
[f
SYSCLK
= f
HRCCLK
]
-- 1.72 2.5
C4
I
DD4
f
HRCCLK
= 8 MHz
V
DD30
= 3.0 V, V
DD18
= 1.8 V
[f
SYSCLK
= f
HRCCLK
/2]
-- 0.94 1.5
C5
*14
I
DD5
f
HOSCCLK
= 4 MHz
V
DD30
= 3.0 V, V
DD18
= 1.8 V
[f
SYSCLK
= f
HOSCCLK
]
-- 0.84 1.3
C6
I
DD6
f
HRCCLK
= 1 MHz
V
DD30
= 3.0 V, V
DD18
= 1.3 V
[f
SYSCLK
= f
HRCCLK
]
-- 0.22 0.36
C7
I
DD7
f
SOSCCLK
= 32.768 kHz
V
DD30
= 3.0 V, V
DD18
= 1.1 V
[f
SYSCLK
= f
SOSCCLK
]
-- 5.6 9.5
A
C8
I
DD8
f
SRCCLK
= 40 kHz
V
DD30
= 3.0 V, V
DD18
= 1.1 V
[f
SYSCLK
= f
SRCCLK
]
-- 6.7 11.6
*14 MN101LR02D is not applicable.
MN101LR05D/04D/03D/02D
8-bit Single-chip Microcontroller
Publication date: October 2014 24
PubNo. 21705-019E
C9
Supply current in
HALT
I
DD9
HALT0 mode
f
HRCCLK
= 8 MHz
V
DD30
= 3.0 V, V
DD18
= 1.1 V
-- 0.24 0.33 mA
C10
I
DD10
HALT2 mode
f
SOSCCLK
= 32.768 kHz
V
DD30
= 3.0 V, V
DD18
= 1.1 V
Ta = 25 C
(HOSCCLK/HRCCLK/SRCCLK are stopped)
-- 0.2 0.4
A
C11
I
DD11
HALT3 mode
f
SOSCCLK
= 32.768 kHz
V
DD30
= 3.0 V, V
DD18
= 1.1 V
Ta = 25 C, HALTMOD = 1
(HOSCCLK/HRCCLK/SRCCLK are stopped)
-- 0.5 0.7
C12
I
DD12
HALT3 mode
f
SOSCCLK
= 32.768 kHz
V
DD30
= 3.0 V, V
DD18
= 1.1 V
Ta = 85 C, HALTMOD = 1
(HOSCCLK/HRCCLK/SRCCLK are stopped)
-- -- 2.9
C13
Supply current in
STOP
I
DD13
V
DD30
= 3.0 V, V
DD18
= 1.1 V
Ta = 25 C
(HOSCCLK/HRCCLK/
SOSCCLK/SRCCLK are stopped)
-- 0.06 0.24
C14
I
DD14
V
DD30
= 3.0 V, V
DD18
= 1.1 V
Ta = 85 C
(HOSCCLK/HRCCLK/
SOSCCLK/SRCCLK are stopped)
-- -- 2.6
*13 The supply current is measured with Ta = 25 C, no-load, and all the analog part in the power-down state. (The pull-up/down resis-
tors are not connected.) Each supply current is measured with the following conditions.
I
DD1, 5
(Operating supply current): After setting all input and output pins to the input mode, V
DD18
(the Logic supply voltage) to 1.8 V,
the oscillation mode to NORMAL (the external oscillation), hold the input pins to V
DD30
level and input the 10/4 MHz square wave,
which has the amplitude from V
DD30
to V
SS
, from OSC1 pin.
I
DD2, 3, 4
(Operating supply current): After setting all input and output pins to the input mode, V
DD18
(the Logic supply voltage) to 1.8
V, the oscillation mode to NORMAL (the internal high-oscillation: 10/8 MHz), hold the input pins to V
DD30
level.
I
DD6
(Operating supply current): After setting all input and output pins to the input mode, V
DD18
(the Logic supply voltage) to 1.3 V,
the oscillation mode to NORMAL (the internal high-oscillation: 1 MHz), hold the input pins to V
DD30
level.
I
DD7
(Operating supply current): After setting all input and output pins to the input mode, V
DD18
(the Logic supply voltage) to 1.1 V,
the oscillation mode to SLOW (the external oscillation), hold the input pins to V
DD30
level and input the 32.768 kHz square wave,
which has the amplitude from V
DD11
to V
SS
, from XI pin.
I
DD8
(Operating supply current): After setting all input and output pins to the input mode, V
DD18
(the Logic supply voltage) to 1.1 V,
the oscillation mode to SLOW (the internal low-oscillation: 40 kHz), hold the input pins to V
DD30
level.
I
DD9
(Supply current in HALT): After setting all input and output pins to the input mode, the oscillation mode to HALT0 (the internal
high-oscillation), hold the input pins to V
DD30
level.
I
DD10
(Supply current in HALT): After setting all input and output pins to the input mode, the oscillation mode to HALT2 (the external
low-oscillation), hold the input pins to V
DD30
level and input the 32.768 kHz square wave, which has the amplitude from V
DD11
to
V
SS
, from XI pin.
I
DD11,12
(Supply current in HALT): After setting all input and output pins to the input mode, the oscillation mode to HALT3 (the exter-
nal low-oscillation), hold the input pins to V
DD30
level and input the 32.768 kHz square wave, which has the amplitude from V
DD11
to
V
SS
, from XI pin.
I
DD13,14
(Supply current in STOP): After setting V
DD18
(the Logic supply voltage) to 1.1 V and the oscillation mode to STOP, hold the
input pins to V
DD30
level and make OSC1 and XI pins open.
C. DC Characteristics
V
SS
= 0 V
Ta = -40 C to +85C
Parameter Symbol Condition
Limits
Unit
MIN TYP MAX

MN101LR05DXW

Mfr. #:
Manufacturer:
Panasonic
Description:
8-bit Microcontrollers - MCU ROM 64KB, RAM 4KB 80-TQFP ReRAM MCU
Lifecycle:
New from this manufacturer.
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