參數(shù)資料
型號: SAK-C167SR-LM
廠商: SIEMENS A G
元件分類: 微控制器/微處理器
英文描述: 16-Bit CMOS Single-Chip Microcontroller
中文描述: MICROCONTROLLER, MQFP144
文件頁數(shù): 56/80頁
文件大?。?/td> 1151K
代理商: SAK-C167SR-LM
C167CS-4R
C167CS-L
Data Sheet
52
V2.0, 2000-06
8)
The minimum current must be drawn in order to drive the respective signal line active.
9)
This specification is only valid during Reset, or during Hold- or Adapt-mode. During Hold mode Port 6 pins are
only affected, if they are used (configured) for CS output and the open drain function is not enabled.
10)
Not 100% tested, guaranteed by design and characterization.
Power Consumption C167CS
(Operating Conditions apply)
Parameter
Symbol
Limit Values
min.
max.
20 +
3.2
×
f
CPU
15 +
1.4
×
f
CPU
500 +
50
×
f
OSC
Unit Test Condition
Power supply current (active)
with all peripherals active
Idle mode supply current
with all peripherals active
Idle mode supply current
with all peripherals deactivated,
PLL off, SDD factor = 32
Sleep and Power-down mode
supply current with RTC running
Sleep and Power-down mode
supply current with RTC disabled
I
DD
mA
RSTIN =
V
IL2
f
CPU
in [MHz]
1)
RSTIN =
V
IH1
f
CPU
in [MHz]
1)
RSTIN =
V
IH1
f
OSC
in [MHz]
1)
1)
The supply current is a function of the operating frequency. This dependency is illustrated in
Figure 10
.
These parameters are tested at
V
DDmax
and maximum CPU clock with all outputs disconnected and all inputs
at
V
IL
or
V
IH
.
2)
This parameter is determined mainly by the current consumed by the oscillator (see
Figure 9
). This current,
however, is influenced by the external oscillator circuitry (crystal, capacitors). The values given refer to a typical
circuitry and may change in case of a not optimized external oscillator circuitry.
3)
This parameter is tested including leakage currents. All inputs (including pins configured as inputs) at 0 V to
0.1 V or at
V
DD
– 0.1 V to
V
DD
,
V
REF
= 0 V, all outputs (including pins configured as outputs) disconnected.
I
IDX
mA
I
IDO2)
μ
A
I
PDR2)
200 +
25
×
f
OSC
50
μ
A
V
DD
=
V
DDmax
f
OSC
in [MHz]
3)
V
DD
=
V
DDmax3)
I
PDO
μ
A
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