RJ H Miniature Aluminum Electrolytic Capacitors
Series RJH High-Frequency, Extra Low-impedance Type
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Very high reliability, biodegradable..
High-frequency, Extra Low-impedanceType.
Guaranteed for 5000 hours at 105°C
(2000 hours for φ5 to φ6.3)
(3000 hours for φ8 to φ10)
Outline Drawing
Photo
φd ± 0.05 copper clad
steel wire (tinned)
Vent (except φ5)
Sleeve
L + α max.
15 min.
5 min.
Lead spacing and wire diameter
φD
5
6.3
2.5
0.5/0.6
1.0
8
10
12.5
16
18
F
φd
2.0
0.5
3.5
5.0
7.5
0.8
0.6
α
Specifications
No.
2.0
Unit: mm
Item
Performance
1
2
3
Temperature range (°C)
Leakage current (µA)
–55 to +105
Less than 0.01 CV + 2 (after two minutes)
C: Capacitance (µF), V: Voltage (V)
±20
Capacitance tolerance (%)
(20°C, 120 Hz)
Rated voltage (V)
tan δ
6.3
10
16
25
35
50
63
100
Tangent of loss angle
(20°C,
120 Hz)
4
5
6
0.22
0.19
0.16
0.14 0.12
0.10 0.08
0.07
(tan δ)
0.02 is added to each 1000µF increase over 1000µF
Rated voltage (V)
6.3
10
16
25
35
50
63
100
Stability at low
temperature
Z–25°C/Z+20°C
2
3
Impedance
ratio
Z–55°C/Z+20°C
(120 Hz)
Test time
5000 hrs (φ5 to φ6.3 2000 hrs, φ8 to φ10 is 3000 hrs)
Initial specified value or less
Endurance
Leakage current
(105°C)
Change in capacitance
Within ±20% of initial value
(Applied ripple current)
tan δ
200% or less of initial specified value
Test time
Leakage current
Change in capacitance
tan δ
1000 hrs
Max. storage temp.
(105°C)
Initial specified value or less
Within ±15% of initial value
150% or less of initial specified value
7
8
Applicable Standards
JIS C 5102 and JIS C5141
Coefficients of Frequency for Ripple Current
Frequency (Hz)
120
1 k
10 k
100 k
Capacitance (µF)
0.47 to 4.7
5.6 to 47
0.40
0.50
0.70
0.80
0.90
0.68
0.76
0.85
0.93
0.95
0.78
0.87
0.90
0.98
1
1
1
1
1
1
Coefficients of Temperature for Ripple Current
56 to 270
Temperature (°C)
Coefficients
+70 or less
1.96
+85
+105
1
330 to 1000
1200 to 15000
1.68
This catalog printed in U.S.A. on 1/98.
Specification and dimensions in this catalog are subject to change without notice.
If necessary, drawings can be provided.
7 6