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AM1H228M25040HA 参数 Datasheet PDF下载

AM1H228M25040HA图片预览
型号: AM1H228M25040HA
PDF下载: 下载PDF文件 查看货源
内容描述: [Aluminum Electrolytic Capacitor, Polarized, Aluminum (wet), 50V, 20% +Tol, 20% -Tol, 2200uF, Through Hole Mount, ROHS COMPLIANT]
分类和应用: 电容器
文件页数/大小: 2 页 / 186 K
品牌: SAMWHA [ SAMWHA ELECTRIC ]
 浏览型号AM1H228M25040HA的Datasheet PDF文件第2页  
LARGE ALUMINUM ELECTROLYTIC CAPACITORS  
For Hi-Fi Component System  
Series  
AM  
For Audio Use Solvent Proof  
·For high grade audio equipment  
·High resonance frequency, low ESR and low impedance  
·Ideally suited for Hi-Fi VTR and CD players  
·Snap-in terminal type  
·Voltage range of 16~100V  
·Complied to the RoHS directive  
Item  
Characteristics  
Operating temperature range  
Capacitance tolerance  
Leakage current max.  
-40 ~ +85°C  
±20% at 120Hz, 20°C  
I = 3 CV (μA) (after 5 minutes)  
Dissipation factor max.  
(at 120Hz, 20°C)  
WV  
tanδ  
16  
0.25  
25 ~ 35  
0.22  
50 ~ 71  
0.20  
80 ~ 100  
0.15  
After charge and discharge for 5000 cycles at 70°C with application of the rated voltage,  
the capacitors shall be satisfied the following specifications.  
Appearance  
No visible damage and no leakage electrolyte  
Leakage current  
Capacitance change  
tanδ  
Less than specified value  
Charge and discharge  
characteristics  
Within ±15% of initial value  
Less than 150% of specified value  
Conditions  
Charge resistance  
Discharge resistance  
:
:
4Applied current  
100Charge and discharge time  
:
:
1A  
60sec. (each)  
Leakage current  
Capacitance change  
tanδ  
Less than specified value  
Load life  
(after application of the rated  
voltage for 2000 hours at 85°C)  
Within ±20% of initial value  
Less than 200% of specified value  
After 1000 hours no load test, leakage current, capacitance and tanδare same as load life value.  
The measurement shall be performed at 20°C by the KS C 6035 clause 5.4.  
Shelf life (at 85°C)  
Unit : mm  
DRAWING  
Terminal  
PC Board  
Insulating sleeve  
Terminal  
Mounting Holes  
0.8±0.1  
6.0±1  
22±0.1  
Safety vent  
6.0±1  
L+2 max.  
1.5±0.1  
225