R0K572030S000BE Renesas Electronics America, R0K572030S000BE Datasheet - Page 1557

KIT DEV FOR SH7203

R0K572030S000BE

Manufacturer Part Number
R0K572030S000BE
Description
KIT DEV FOR SH7203
Manufacturer
Renesas Electronics America
Series
Renesas Starter Kits (RSK)r
Type
MCUr
Datasheets

Specifications of R0K572030S000BE

Contents
CPU Board, LCD Module, E10A-Lite Emulator, Cable, QuickStart Guide and CD-ROM
Silicon Manufacturer
Renesas
Kit Contents
Board
Silicon Family Name
SH7203
Silicon Core Number
R5S72030W200FP
Tool / Board Applications
General Purpose MCU, MPU, DSP, DSC
Mcu Supported Families
SH7203
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
For Use With/related Products
SH7203
Lead Free Status / Rohs Status
Compliant
Caution:
Notes: 1. The supply current values are when all output pins and pins with the pull-up function are
Item
Input leakage
current
Three-state
leakage current
Input capacitance All pins
Analog power
supply current
Analog reference voltage current
USB power
supply current
2. I
3. I
4. I
When the A/D converter or D/A converter is not in use, the AV
not be open.
unloaded.
and USBDV
and USBDPV
CC
dstby
dstby
, I
(1.2-V current) represents the total currents supplied in the V
(3.3-V current) represents the total currents supplied in the PV
sleep
All input pins
All input/output
pins, all output
pins (except PB7
to PB0, and pins
with weak
keeper)
(off state)
PB7 to PB0
During A/D or
D/A conversion
Waiting for A/D
or D/A
conversion
USBAV
USBDV
USBAPV
USBDPV
, and I
CC
sstby
CC
CC
CC
.
CC
CC
.
+
represent the total currents supplied in the V
+
Symbol
|I
|I
C
AI
AI
I
I
USBCC
USBPCC
in
in
in
CC
ref
|
|
Min.
Typ.
2
1
2
15
40
Rev. 3.00 Sep. 28, 2009 Page 1525 of 1650
Max.
1.0
1.0
10
20
4
10
4
20
50
Section 31 Electrical Characteristics
mA
mA
Unit
μA
μA
μA
pF
mA
μA
mA
CC
CC
and PLLV
and AV
CC
CC
, PLLV
Test Conditions
V
0.5 to PV
V
0.5 to PV
USBAV
USBDV
USBAPV
USBDPV
, AV
in
in
=
=
REJ09B0313-0300
SS
CC
CC
CC
CC
, USBAPV
pins should
CC
, USBAV
CC
CC
CC
CC
systems.
=
= 1.2 V
=
– 0.5 V
– 0.5 V
= 3.3 V
CC
CC
,
,

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