TEAPO ELECTRONIC CORPORATION
FILM CAPACITORS
Film Capacitors
XG-H
For Interference Suppression and Across-The-Line, Class X2
ELECTRICAL CHARACTERISTICS
Climate Category : In Accordance with IEC 68-1 (40/100/21)
(a) The first letter or number represents the Lower Category temperature.
(b) The second letter or number represents the Upper Category temperature.
(c) The third letter or number represents the number of days relevant to the damp heat test.
Rated Voltage : 250/275 V.AC, 50 ~ 60 Hz
Capacitance Range : 0.0047 ~ 4.7µF
DESCRIPTION
XG-G type is self-healing flat and wide
operating temprang (-40 ~ +100°C) style
capacitor, which is wound with polypropylene
film dielectric, flame retardant plastic case and
epoxy resin end seal. Following styles belong
to this type :
1) XG-HS : Tinned Copper Clad Steel Wire
Radial Leads
2) XG-HP : UL 1015 or UL 1007 AWG#20
~ 22 Solid PVC Insulation Wire Radial
Leads
This type especially is designed for radio
interference suppression and across-the line
capacitors in :
1) Business Machines Appliances, such as :
Typewriters, Adding Machines, Computer
Displays and Monitors
2) Household Appliances, such as : Mixers,
Fans, Coffee Grinders, Audio and TV
Circuits
3) Thyristor and Triac Appliances, such as :
Dimmers
Capacitance Tolerance : J (± 5%), K (± 10%), M (± 20%)
Withstand Voltage :
(a) Between Terminals : 1500 V.AC, 60 Hz or 2200 V.DC 1Sec.
(b) Between Terminals and Case : 2000 V.AC, 60 Hz 60 Sec.
Dissipation Factor :
(a)
≤
0.1% at 1 KHz and 20ºC
(b)
≤
0.3% at 10 KHz and 20ºC
Insulation Resistance :
(a) Between Terminals :
≥
3 x 10
4
MΩ for C
≤
0.33µF
≥
1 x 10
4
MΩ•µF for C > 0.33µF
(b) Between Terminals and Case :
≥
3 x 10
4
MΩ
Measured at 100
±
15V.DC, 60 Sec. and 20ºC
DIAGRAM OF DIMENSIONS
5±1
Dimensions : mm
W
S
ød
W
18
≥
26.5
13.0 18.0 26.5 31.5 37.0 45.0 53.0
10.0 15.0 22.5 27.5 32.5 40.0 47.5
0.6
0.8
0.8
0.8
0.8
1.0
1.0
30 Min.
W Max.
W Max.
H Max.
T Max.
Insulated Rigid Leads
w
5.5±0.5
e
4.2±0.3
PVC WIRE
AWG22#
AWG20#
S±1
20 Min.
S±0.5
ød
W Max.
H Max.
T Max.
68
APPROVAL DATA
COUNTRY
UL = USA
CSA = Canada
SPECIFICATIONS
UL 1414
C 22.2 No. 1-98
C22.2 No. 8-M1986
VDE = Germany
SEMKO = Sweden
DIN EN132400 (VDE 0565 Teil 1-1) : 1995-03, Tabelle 3
EN 132400 : 1994/IEC 384-14, Second Edition, Including
Amendment 1. 1995
NEMKO = Norway
DEMKO = Denmark
FI = Filand
EN 132400 : 1994/IEC 384 ed. 2 : 1993 Including Am. 1 : 1995
IEC 384-14/EN 132400
IEC 384-14 2nd Edition (1993) Including Am. 1 (1995) /
EN 132400 (1994)
SEV = Switzerland
IEC 384-14 2nd Edition (1993) Including Am. 1 (1995) /
EN 132400 (1994)
CB Test Certificate
IEC 384-14 2nd Edition (1993) Including Am. 1 (1995) /
EN 132400 (1994)
FI 781 (0.0047µF ~ 4.7µF, 275V.AC)
97, 7 70454, 01 (0.0047µF ~ 4.7µF, 275 V.AC)
P97101318 (0.0047µF ~ 4.7µF, 275 V.AC)
306704 (0.0047µF ~ 4.7µF, 275 V.AC)
194913-01 (0.0047µF ~ 4.7µF, 275. AC)
FILE AND REF. NO.
E 81959 (N) (0.0047µF ~ 1.0µF, 250V.AC)
LR57384-10 (0.0047
µF
~ 1.0µF, 250V. AC)
LR57384-11 (0.0047µF ~ 1.0µF, 250V. AC)
101341 (0.0047µF ~ 4.7µF, 275 V.AC)
9722105/01 (0.0047µF ~ 4.7µF, 275 V.AC)
TEMPERATURE AND FREQUENCY CHARACTERISTICS
Capacitance Change vs. Temperature (Typical Values)
Dissipation Factor vs. Temperature at 10 KHz (Typical Values)
2
+10
10
+5
0
5
∆C/C
(%)
tan∂ (%)
-40
-20
0
20
40
50
80
Temperature (˚C)
100
2
0
-5
-10
10
-1
5
2
10 -40
-2
-20
0
20
40
50
80
Temperature (˚C)
100
Insulation Resistance vs. Temperature (Typical Values)
Capacitance Change vs. Frequency (Typical Values)
3
2
1
10
6
5
IR (MΩ)
10
5
5
2
∆C/C
(%)
2
0
-1
10
4
20
40
60
80
100
Temperature (˚C)
-2
10
1 2
5
10
2 2
5
10
3 2
5
10
Frequency (Hz)
4
10
5
Dissipation Factor vs. Temperature (Typical Values)
10
0
5
tan∂ (%)
2
10
-1
5
2
10
-2
10
1
2
5
10
2
2
5
10
3
2
10
Frequency (Hz)
5
4
10
5