MEMD (CL21X) 尺寸標示圖

TYPE: MEMD (CL21X)

Metallized Polyester Film Capacitor (Epoxy Dip Coated Radial Leads, Mini Size)

工作溫度-40 ~ +105°C
額定電壓50V, 63V, 100V.D.C
電容量範圍0.01 ~ 1.0 μF

特點 / Features

1

自愈性特質

Self healing characteristics.

2

體積小,重量輕

Miniature size, light in weight.

3

電容量與損耗角面對溫度變化穩定性高

High stability of temperature vs. Cap. and tan δ.

4

高密度熱固化環氧包封以提高本體強度

High density thermosetting epoxy resin enhance mechanical strength.

5

用于旁路、偶合和射頻電路有優異的表現

Excellent result obtained from use in coupling, by pass, R.F. filtering and solidstate application, where dimension is critical.

技術參數 / Specifications

工作溫度
OPERATING TEMPERATURE
-40 ~ +105°C
額定電壓
RATED VOLTAGE
50V, 63V, 100V.D.C
電容量範圍
CAPACITANCE RANGE
0.01 ~ 1.0 μF
耐電壓
DIELECTRIC STRENGTH
150% of rated voltage for 5 sec.
電容量誤差
CAPACITANCE TOLERANCE
±5% (J) ±10% (K)
絕緣電阻
INSULATION RESISTANCE
C ≤ 0.33μF R ≥ 30,000MΩ C > 0.33μF RC ≥ 10,000MΩ·μF
損耗角
DISSIPATION FACTOR
1% MAX. at 1KHz

規格尺寸表 / Dimensions

(Unit: mm)

共 74 筆規格

μF0.001
V(VDC)50/63
W7.5
H7
T3.5
P5
de0.5
μF0.0012
V(VDC)50/63
W7.5
H7
T3.5
P5
de0.5
μF0.0015
V(VDC)50/63
W7.5
H7
T4
P5
de0.5
μF0.0018
V(VDC)50/63
W7.5
H7.5
T4
P5
de0.5
μF0.0022
V(VDC)50/63
W7.5
H7.5
T4
P5
de0.5
μF0.0027
V(VDC)50/63
W7.5
H7.5
T4
P5
de0.5
μF0.0033
V(VDC)50/63
W7.5
H7.5
T4
P5
de0.5
μF0.0039
V(VDC)50/63
W7.5
H7.5
T4
P5
de0.5
μF0.0047
V(VDC)50/63
W7.5
H7.5
T4
P5
de0.5
μF0.0056
V(VDC)50/63
W7.5
H7.5
T4
P5
de0.5
μF0.0068
V(VDC)50/63
W7.5
H7.5
T4
P5
de0.5
μF0.0082
V(VDC)50/63
W7.5
H7.5
T4
P5
de0.5
μF0.01
V(VDC)50/63
W7.5
H7
T4
P5
de0.5
μF0.012
V(VDC)50/63
W7.5
H7
T4
P5
de0.5
μF0.015
V(VDC)50/63
W7.5
H7.5
T4
P5
de0.5
μF0.018
V(VDC)50/63
W7.5
H7.5
T4
P5
de0.5
μF0.022
V(VDC)50/63
W7.5
H7.5
T4
P5
de0.5
μF0.027
V(VDC)50/63
W7.5
H7.5
T4
P5
de0.5
μF0.033
V(VDC)50/63
W7.5
H7.5
T4
P5
de0.5
μF0.039
V(VDC)50/63
W7.5
H7.5
T4
P5
de0.5
μF0.047
V(VDC)50/63
W7.5
H7.5
T4
P5
de0.5
μF0.056
V(VDC)50/63
W7.5
H7.5
T4
P5
de0.5
μF0.068
V(VDC)50/63
W7.5
H7.5
T4
P5
de0.5
μF0.082
V(VDC)50/63
W7.5
H8
T4
P5
de0.5
μF0.1
V(VDC)50/63
W7.5
H9.5
T4
P5
de0.5
μF0.12
V(VDC)50/63
W10.5
H7.5
T4
P7.5
de0.5
μF0.15
V(VDC)50/63
W10.5
H9
T4
P7.5
de0.5
μF0.18
V(VDC)50/63
W10.5
H9
T4
P7.5
de0.5
μF0.22
V(VDC)50/63
W10.5
H9.5
T4.5
P7.5
de0.5
μF0.27
V(VDC)50/63
W10.5
H10
T5
P7.5
de0.5
μF0.33
V(VDC)50/63
W10.5
H8
T4.5
P7.5
de0.5
μF0.39
V(VDC)50/63
W10.5
H8.5
T4.5
P7.5
de0.5
μF0.47
V(VDC)50/63
W10.5
H9
T5
P7.5
de0.5
μF0.56
V(VDC)50/63
W10.5
H9
T5.5
P7.5
de0.5
μF0.68
V(VDC)50/63
W10.5
H9.5
T6
P7.5
de0.5
μF0.82
V(VDC)50/63
W10.5
H10
T6.5
P7.5
de0.5
μF1
V(VDC)50/63
W10.5
H10.5
T7
P7.5
de0.5
μF0.001
V(VDC)100
W7.5
H7
T3.5
P5
de0.5
μF0.0012
V(VDC)100
W7.5
H7
T3.5
P5
de0.5
μF0.0015
V(VDC)100
W7.5
H7
T4
P5
de0.5
μF0.0018
V(VDC)100
W7.5
H7.5
T4
P5
de0.5
μF0.0022
V(VDC)100
W7.5
H7.5
T4
P5
de0.5
μF0.0027
V(VDC)100
W7.5
H7.5
T4
P5
de0.5
μF0.0033
V(VDC)100
W7.5
H7.5
T4
P5
de0.5
μF0.0039
V(VDC)100
W7.5
H7.5
T4
P5
de0.5
μF0.0047
V(VDC)100
W7.5
H7.5
T4
P5
de0.5
μF0.0056
V(VDC)100
W7.5
H7.5
T4
P5
de0.5
μF0.0068
V(VDC)100
W7.5
H7.5
T4
P5
de0.5
μF0.0082
V(VDC)100
W7.5
H7.5
T4
P5
de0.5
μF0.01
V(VDC)100
W7.5
H7
T4
P5
de0.5
μF0.012
V(VDC)100
W7.5
H7
T4
P5
de0.5
μF0.015
V(VDC)100
W7.5
H7.5
T4
P5
de0.5
μF0.018
V(VDC)100
W7.5
H7.5
T4
P5
de0.5
μF0.022
V(VDC)100
W7.5
H7.5
T4
P5
de0.5
μF0.027
V(VDC)100
W7.5
H7.5
T4
P5
de0.5
μF0.033
V(VDC)100
W7.5
H7.5
T4
P5
de0.5
μF0.039
V(VDC)100
W7.5
H7.5
T4
P5
de0.5
μF0.047
V(VDC)100
W7.5
H7.5
T4
P5
de0.5
μF0.056
V(VDC)100
W7.5
H7.5
T4
P5
de0.5
μF0.068
V(VDC)100
W7.5
H7.5
T4
P5
de0.5
μF0.082
V(VDC)100
W7.5
H8
T4
P5
de0.5
μF0.1
V(VDC)100
W7.5
H9.5
T4
P5
de0.5
μF0.12
V(VDC)100
W10.5
H7.5
T4
P7.5
de0.5
μF0.15
V(VDC)100
W10.5
H9
T4
P7.5
de0.5
μF0.18
V(VDC)100
W10.5
H9
T4
P7.5
de0.5
μF0.22
V(VDC)100
W10.5
H9.5
T4.5
P7.5
de0.5
μF0.27
V(VDC)100
W10.5
H10
T5
P7.5
de0.5
μF0.33
V(VDC)100
W10.5
H10.5
T5.5
P7.5
de0.6
μF0.39
V(VDC)100
W10.5
H11
T6
P7.5
de0.5
μF0.47
V(VDC)100
W10.5
H11.5
T6.5
P7.5
de0.6
μF0.56
V(VDC)100
W10.5
H11.5
T7
P7.5
de0.6
μF0.68
V(VDC)100
W10.5
H12
T8
P7.5
de0.6
μF0.82
V(VDC)100
W10.5
H13
T9
P7.5
de0.6
μF1
V(VDC)100
W10.5
H14
T9.5
P7.5
de0.6