HD6417034B RENESAS [Renesas Technology Corp], HD6417034B Datasheet - Page 502

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HD6417034B

Manufacturer Part Number
HD6417034B
Description
32-Bit RISC Microcomputer
Manufacturer
RENESAS [Renesas Technology Corp]
Datasheet

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Section 20 Electrical Characteristics
Usage Notes:
1. If the A/D converter is not used, do not leave the AV
2. Current dissipation values are for V
3. ICC depends on V
4. When the A/D converter is not used, and in standby mode, AV
5.
Table 20.3 Permitted Output Current Values
Case A: V
Case B: V
Note: * Regular-specification products; for wide-temperature-range products, Ta = –40 to +85°C
Item
Output low-level permissible
current (per pin)
Output low-level permissible
current (total)
Output high-level
permissible current (per pin)
Output high-level
permissible current (total)
Caution: To ensure reliability of the chip, do not exceed the output current values given in table
Rev. 7.00 Jan 31, 2006 page 476 of 658
REJ09B0272-0700
AV
pins unloaded and the on-chip pull-up transistors in the off state.
I
I
connected to the power supply (V
CC
CC
The ZTAT and mask versions have the same functions, and the electrical characteristics of
both are within specification, but characteristic-related performance values, operating
margins, noise margins, noise emission, etc., are different. Caution is therefore required in
carrying out system design, and when switching between ZTAT and mask versions.
CC
max = 1.0 (mA) + 1.29 (mA/MHz · V)
max = 1.0 (mA) + 1.00 (mA/MHz · V)
and AV
V
V
20.3.
CC
SS
CC
SS
= AV
= AV
= 3.0 to 5.5 V, AV
= 5.0 V ±10%, AV
ref
to V
SS
SS
CC
= 0 V, Ta = –20 to +75°C * )
= 0 V, Ta = –20 to +75°C * )
CC
and f as follows:
, and connect AV
Symbol
I
∑ I
–I
–∑ I
OL
OH
OL
CC
CC
OH
= 5.0 V ±10%, AV
= 3.0 to 5.5 V, AV
CC
IH
).
min = V
Min
SS
to V
V
V
12.5 MHz
Case A
CC
CC
CC
SS
Typ
- 0.5 V and V
.
f [ordinary operation]
f [sleep]
CC
CC
CC
, V
= V
= V
Max
10
80
2.0
25
ref
CC
CC
, and AV
±10%, AV
±10%, AV
CC
IL
Min
max = 0.5 V with all output
and AV
SS
Case B
20 MHz
pins open. Connect
Typ
ref
ref
ref
must still be
= 4.5 V to AV
= 3.0 V to AV
Max
10
80
2.0
25
Unit
mA
mA
mA
mA
CC
CC
,
,

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