C8051F300/1/2/3/4/5
26
Rev. 2.9
I
DD
Supply Sensitivity (Note 3)
F = 25 MHz
—
47
—
%/V
F = 1 MHz
—
59
—
%/V
I
DD
Frequency Sensitivity
(Note 3, Note 5)
V
DD
= 3.0 V, F <= 1 MHz, T = 25
°
C
—
0.27
—
mA/MHz
V
DD
= 3.0 V, F > 1 MHz, T = 25
°
C
—
0.10
—
mA/MHz
V
DD
= 3.6 V, F <= 1 MHz, T = 25
°
C
—
0.35
—
mA/MHz
V
DD
= 3.6 V, F > 1 MHz, T = 25
°
C
—
0.12
—
mA/MHz
Digital Supply Current
(Stop Mode, shutdown)
Oscillator not running,
V
DD
Monitor Disabled
—
< 0.1
—
µA
Notes:
1.
Given in Table 9.2 on page 86.
2.
SYSCLK must be at least 32 kHz to enable debugging.
3.
Based on device characterization data; Not production tested.
4.
Normal IDD can be estimated for frequencies <= 15 MHz by simply multiplying the frequency of interest by
the frequency sensitivity number for that range. When using these numbers to estimate I
DD
for >15 MHz, the
estimate should be the current at 25 MHz minus the difference in current indicated by the frequency sensitivity
number.
For example: V
DD
= 3.0 V; F = 20 MHz, I
DD
= 6.6 mA – (25 MHz – 20 MHz) x 0.16 mA/MHz = 5.8 mA.
5.
Idle IDD can be estimated for frequencies <= 1 MHz by simply multiplying the frequency of interest by the
frequency sensitivity number for that range. When using these numbers to estimate Idle I
DD
for >1 MHz, the
estimate should be the current at 25 MHz minus the difference in current indicated by the frequency sensitivity
number.
For example: V
DD
= 3.0 V; F = 5 MHz, Idle I
DD
= 3.3 mA – (25 MHz – 5 MHz) x 0.10 mA/MHz = 1.3 mA.
Table 3.1. Global Electrical Characteristics (Continued)
–40 to +85 °C, 25 MHz system clock unless otherwise specified.
Parameter
Conditions
Min
Typ
Max
Units
Summary of Contents for C8051F300
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