150% of rated voltage for voltage rating of < 1,000 V
120% of rated voltage for voltage rating of ≥ 1,000 V
(5 ±1 second and charge/discharge not exceeding 50 mA)
2.5%
See Insulation Resistance Limit Table
(500 VDC applied for 120 ±5 seconds @ 25°C)
Parameters/Characteristics
Regarding aging rate: Capacitance measurements (including tolerance) are indexed to a referee time of 1,000 hours.
To obtain IR limit, divide MΩ-µF value by the capacitance and compare to GΩ limit. Select the lower of the two limits.
Capacitance and dissipation factor (DF) measured under the following conditions:
1 kHz ±50 Hz and 1.0 ±0.2 Vrms if capacitance ≤ 10 µF
120 Hz ±10 Hz and 0.5 ±0.1 Vrms if capacitance > 10 µF
Note: When measuring capacitance it is important to ensure the set voltage level is held constant. The HP4284 and Agilent E4980 have a feature known as
Automatic Level Control (ALC). The ALC feature should be switched to "ON."
Product Availability and Chip Thickness Codes - See Table 2 for Chip Thickness Dimensions
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
500
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
DG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EG
EG
EG
EG
EG
EG
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EG
EG
EG
EG
500
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EG
EG
EG
EG
EG
EG
EG
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EG
EG
EG
EJ
630
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EG
EG
EG
EG
EG
EG
EG
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EF
EG
EG
EG
EJ
1000
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EF
EF
EF
EF
EF
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
EG
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FG
FG
FG
FG
FG
FG
FG
FG
FG
FG
FG
FM
FM
FK
FK
FK
FK
FS
FS
FL
FL
FL
FL
FL
FL
FL
500
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FG
FG
FG
FG
FG
FG
FG
FM
FM
FM
FM
FM
FK
FS
FS
FL
FL
FL
FL
FL
FL
FL
FL
FL
FL
FL
630
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FG
FG
FG
FG
FG
FG
FG
FM
FM
FM
FM
FM
FK
FS
FS
FL
FL
FL
FL
FL
FL
FL
FL
FL
FL
FL
1000
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FK
FK
FK
FS
FS
FS
FL
FL
FL
FL
FL
FL
FL
FL
FL
FL
FL
FM
FM
FK
FK
FK
1500
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FM
FK
FK
FS
FS
FL
FL
FL
FL
FM
FM
FM
FM
FM
FM
FM
FK
FK
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LA
LA
LA
LA
LA
LA
LA
LA
LA
LA
LB
LB
LB
LC
LC
LC
LC
LC
LC
LA
LA
LA
LA
LA
LA
LA
LA
500
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LA
LA
LA
LA
LA
LA
LA
LA
LB
LB
LB
LB
LB
LC
LC
LC
LA
LA
LA
LA
LA
LA
LB
LB
LB
LB
LC
630
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LA
LA
LA
LA
LA
LA
LA
LA
LB
LB
LB
LB
LB
LC
LC
LC
LA
LA
LA
LA
LA
LA
LB
LB
LB
LB
LC
1000
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LA
LA
LA
LA
LA
LB
LB
LB
LC
LC
LA
LA
LA
LB
LB
LB
LB
LB
LB
LB
LB
LB
LC
LC
LC
LC
1500
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LC
LC
LC
LC
LB
LB
LB
LB
LB
LB
LC
LC
LC
LC
LC
LC
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LC
LC
LC
LC
LC
LC
LC
LC
LC
LB
LB
LB
LC
LC
LC
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LB
LC
LC
LC
LC
LC
LC
LC
LC
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GH
GH
GH
GK
GK
GH
GH
GH
GH
GH
GK
GK
GK
GK
GK
GK
GK
GH
GH
GH
GH
GH
GH
500
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GH
GH
GH
GK
GK
GH
GH
GH
GH
GK
GK
GK
GK
GK
GH
GH
GH
GH
GH
GH
GH
GH
GK
630
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GH
GH
GH
GK
GK
GH
GH
GH
GH
GK
GK
GK
GK
GK
GH
GH
GH
GH
GH
GH
GH
GH
GK
1000
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GH
GH
GH
GK
GK
GK
GK
GK
GH
GH
GH
GH
GH
GH
GH
GH
GH
GH
GK
GK
GK
GK
GK
1500
F
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GK
GH
GH
GH
GK
GK
GH
GH
GH
GH
GH
GH
GH
GH
GH
GK
GK
GK
2000
3000
2000
2000
Capacitance
Cap
Code
Voltage Code
C
B
D
C
B
D
F
G
C
B
D
F
G
C
B
D
F
G
Z
H
C
B
D
Series
C0805
C1206
C1210
C1808
C1812
KEMET reserves the right to substitute product with an improved temperature characteristic, tighter capacitance tolerance and/or higher voltage capability within
the same form factor (configuration and dimensions).
__asm void JUMP_TO_APP(unsigned long address)
{
// __ASM("LDR SP, ;Load new stack pointer address");
// __ASM("LDR PC, ;Load new program counter address");
LDR S ......
LED 是light emitting diode (发光二极管)的缩写,是一种由半导体技术制成的电光源。LED的核心部分是由P型半导体和N型半导体组成的晶片,在P型半导体和N型半导体之间有一个过渡层,称为P2N结。在正向导通时,半导体中的多数载流子和少数载流子复合,释放出的能量以光子或部分以光子的形式发射出来,大量的光子形成光子流,即发光。P2N结加反向电压时,少数载流子难以注入,故不发...[详细]