MB96F387RSBPMC-GSE2 Fujitsu, MB96F387RSBPMC-GSE2 Datasheet - Page 142

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MB96F387RSBPMC-GSE2

Manufacturer Part Number
MB96F387RSBPMC-GSE2
Description
IC, 16BIT MCU, F2MC-16FX, 56MHZ LQFP-120
Manufacturer
Fujitsu
Datasheet

Specifications of MB96F387RSBPMC-GSE2

Controller Family/series
F2MC-16FX
No. Of I/o's
96
Ram Memory Size
16KB
Cpu Speed
56MHz
No. Of Timers
7
No. Of Pwm Channels
8
Core Size
16 Bit
Program Memory Size
416KB
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MB96F387RSBPMC-GSE2
Manufacturer:
Fujitsu Semiconductor America Inc
Quantity:
10 000
Part Number:
MB96F387RSBPMC-GSE2
Manufacturer:
FUJITSU/富士通
Quantity:
20 000
142
MB96300 Series
Note: Certain devices of MB96F348 have a higher current consumption than stated in the table above:
4. AC Characteristics
(1) Clock timing
(2) External Reset timing
Clock frequency
Input clock pulse width
Input clock rise and falltime
Internal CPU clock frequen-
cy (Clock CLKB), internal
peripheral clock frequency
(Clock CLKP1)
Internal peripheral clock fre-
quency (Clock CLKP2)
Internal operating clock cy-
cle time
* The power supply current is measured with a 4MHz external clock connected to the Main oscillator and a
32kHz external clock connected to the Sub oscillator, low voltage detector disabled.
Input/output voltages of high current ports depend on DV
• MB96F348HSA and MB96F348TWA: additional ~
• MB96F348HWA: additional ~280 A in all operation modes
(T
TBD
A
FME/EMDC- 2007-02-12
= -40˚C to 125˚C, V
Parameter
CC
= AV
P
f
CLKB
P
Symbol
WHL
t
WH
CC
CR
f
CLKP2
f
t
f
, f
f
= 3.0V to 5.5V, DV
CR
CL
, P
, P
, t
CP
C
CLKP1
CF
WL
WLL
X0A, X1A
X0, X1
X0, X1
X0A
Pin
X0
X0
-
-
-
-
CC
16.125
= 3.0V to 5.5V, V
Preliminary Specification
Min
3.5
3.5
50
10
3
3
1
5
-
-
-
-
CC,
A in all operation modes
of other ports on V
32.768
Value
Typ
100
2
-
-
-
-
-
-
-
-
-
-
SS
Max
100
200
= AV
16
16
32
32
56
32
4
5
-
-
-
SS
CC.
Unit
MHz
MHz
MHz
MHz
MHz
MHz
MHz
kHz
kHz
= DV
ns
ns
ns
s
MB96300_shortspec.fm
SS
When using an oscilla-
tion circuit, PLL off
When using an oscilla-
tion circuit, PLL on
When using an external
clock, PLL off
When using an external
clock, PLL on
When using slow fre-
quency of RC oscillator
When using fast fre-
quency of RC oscillator
Duty ratio is about 30%
to 70%
When using external
clock
= 0V)
Remarks

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