FPX66P0504J [KYOCERA AVX]

CAPACITOR, METALLIZED FILM, POLYPROPYLENE, 1300 V, 0.5 uF, CHASSIS MOUNT;
FPX66P0504J
型号: FPX66P0504J
厂家: KYOCERA AVX    KYOCERA AVX
描述:

CAPACITOR, METALLIZED FILM, POLYPROPYLENE, 1300 V, 0.5 uF, CHASSIS MOUNT

电容器
文件: 总4页 (文件大小:77K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
Medium Power Film Capacitors  
FPX  
PROTECTION  
APPLICATIONS  
Protection of thyristors.  
Protection of gate turn-off thyristor (G.T.O.).  
Clamping (Secondary snubber).  
TECHNOLOGY  
Metallized polypropylene dielectric capacitor with controlled  
self-healing.  
Reinforced metallization developed for high impulse currents.  
Axial connections specially developed to reduce series  
inductance and to provide rigid mechanical mounting.  
PACKAGING  
Cylindrical in plastic case filled with thermosetting resin.  
Outputs: threaded inserts either M6 or M8.  
ELECTRICAL CHARACTERISTICS  
Capacitance range Cn  
0.5µF to 6µF  
Tolerance on Cn  
5ꢀ  
Rated DC voltage Vndc  
Peak voltage Vpeak  
Allowable overvoltage Vs (for 10 s/day)  
1000 to 3000 V  
1600 to 4000 V  
2000 to 4600 V  
Stray inductance  
RMS current  
5 to 20 nH  
I
rms max. = up to 160 A  
The currents shown in the tables are maximum.  
It is necessary to respect the thermal limits of the dielectric 85°C  
see “Hot spot temperature calculation”  
Insulation resistance  
Impulse current  
Ri x C 30,000 s  
I2.t maxi. = up to 729 A2.s  
Spikes or peak currents in the capacitors may cause a deterioration of the  
bonding between the metallization and the connections. These bonds are  
capable of withstanding only a limited amount of energy for each spike. The  
table shows the maximum energy permitted in the form (I2.t), where I is in  
Ampere, and t is in seconds.  
Note: The formula (I2.t) replaces dV/dt which is less easy to use as it is not an expression of energy (I = C.dV/dt).  
This type of capacitor has been designed to withstand high (I2.t) values.  
C  
Variation of capacitance with temperature  
2ꢀ between -40 and 85°C  
C
Climatic category  
Test voltage between terminals @ 25°C  
40/085/56 (IEC 68)  
Vs for 10s  
Test voltage between terminals  
and case @ 25°C  
@ 4 kVrms @ 50 Hz for 1 min.  
For higher power protection devices and further information  
please see PPX Series in Capacitor for High Power Electronics  
available on AVX website: www.avxcorp.com  
27  
Medium Power Film Capacitors  
FPX General Description / Application Notes  
PROTECTION  
G.T.O.  
Choice of voltage: V1 Vpeak  
V
V2 Vndc  
V
V
1
2
0
t
T - 1/fr  
Nominal DC voltage (Vndc) and peak voltage (Vpeak  
)
are given in the tables.  
THYRISTOR  
Choice of voltage: V1 Vpeak  
Note that V1 is the voltage peak to peak and cannot be  
symmetrical vs 0 V  
V
0V  
t
V
1
Peak voltage is given in the tables.  
CLAMPING  
Choice of voltage: V1 Vpeak  
V2 Vndc  
Nominal DC voltage (Vndc) and peak voltage (Vpeak) are  
given in the tables.  
For higher power protection devices and further information  
please see PPX Series in Capacitor for High Power Electronics  
available on AVX website: www.avxcorp.com  
28  
Medium Power Film Capacitors  
FPX Table of Values  
PROTECTION  
Dimensions: millimeters (inches)  
Dimensions  
I2.t  
Irms  
Cn  
H*  
h
±2  
d
Rs  
Rth  
max.  
max.  
(A)  
Case  
Type  
Part Number  
(µF)  
(m)  
(°C/W)  
±±.ꢀ  
D
±±.1  
(A2.s)  
(±±.±2±)  
(±±.±07)  
max.  
FPX 2±±± V  
V dc = 1±±± V  
n
Vpeak = 16±± V  
40 (1.575)  
60 (2.362)  
72 (2.835)  
72 (2.835)  
82 (3.228)  
82 (3.228)  
Vpeak = 2±±± V  
40 (1.575)  
60 (2.362)  
60(2.362)  
Vrms = ꢀ6± V  
Vs = 2±±± V  
1
2
3
Plastic case M6/6  
Plastic case M8/8  
Plastic case M8/8  
52 (2.072)  
52 (2.072)  
52 (2.072)  
52 (2.072)  
52 (2.072)  
52 (2.072)  
5 (0.197)  
5 (0.197)  
5 (0.197)  
5 (0.197)  
5 (0.197)  
5 (0.197)  
18 (0.709)  
22 (0.866)  
22 (0.866)  
22 (0.866)  
22 (0.866)  
22 (0.866)  
2
8
18  
25  
32  
50  
15  
30  
45  
50  
60  
70  
2.4  
1.2  
14  
6.1  
FPX66N0105J--  
FPX86N0205J--  
FPX86N0305J--  
FPX86N0355J--  
FPX86N0405J--  
FPX86N0505J--  
0.9  
4.5  
4.5  
3.5  
2.5  
3.5 Plastic case M8/8  
0.85  
0.75  
0.65  
4
5
Plastic case M8/8  
Plastic case M8/8  
FPX 2ꢀ±± V  
0.5 Plastic case M6/6  
V dc = 13±± V  
n
Vrms = 0±± V  
Vs = 2ꢀ±± V  
52 (2.072)  
52 (2.072)  
52 (2.072)  
52 (2.072)  
52 (2.072)  
52 (2.072)  
52 (2.072)  
5 (0.197)  
5 (0.197)  
5 (0.197)  
5 (0.197)  
5 (0.197)  
5 (0.197)  
5 (0.197)  
18 (0.709)  
22 (0.866)  
22 (0.866)  
22 (0.866)  
22 (0.866)  
22 (0.866)  
22 (0.866)  
1
3
7
12.7  
20  
28  
39  
15  
20  
30  
40  
60  
60  
65  
3
14  
FPX66P0504J--  
FPX86P0105J--  
FPX86P0155J--  
FPX86P0205J--  
FPX86P0255J--  
FPX86P0305J--  
FPX86P0355J--  
1
Plastic case M8/8  
1.5 Plastic case M8/8  
Plastic case M8/8  
2.5 Plastic case M8/8  
Plastic case M8/8  
2.3  
1.5  
1.1  
0.89  
0.85  
0.78  
10.5  
6.1  
4.5  
3.7  
3.2  
2.9  
2
72 (2.835)  
72(2.835)  
82 (3.228)  
82(3.228)  
3
3.5 Plastic case M8/8  
FPX 3ꢀ±± V  
V dc = 2±±± V  
n
Vpeak = 24±± V  
72 (2.835)  
92 (3.622)  
92 (3.622)  
92 (3.622)  
Vpeak = 32±± V  
72 (2.835)  
92 (3.622)  
Vpeak = 4±±± V  
72 (2.835)  
92 (3.622)  
97 (3.819)  
97 (3.819)  
97 (3.819)  
97 (3.819)  
97 (3.819)  
97 (3.819)  
97 (3.819)  
97 (3.819)  
97 (3.819)  
97 (3.819)  
97 (3.819)  
Vrms = 8ꢀ± V  
Vs = 3ꢀ±± V  
2
3
Plastic case M8/8  
Plastic case M8/8  
62 (2.441)  
62 (2.441)  
62 (2.441)  
62 (2.441)  
5 (0.197)  
5 (0.197)  
5 (0.197)  
5 (0.197)  
22 (0.866)  
22 (0.866)  
22 (0.866)  
22 (0.866)  
23  
50  
70  
85  
41  
62  
72  
80  
1.24  
0.92  
0.83  
0.78  
6.1  
FPX86X0205J-  
FPX86X0305J--  
FPX86X0355J--  
FPX86X0405J--  
3.9  
3.4  
3.1  
3.5 Plastic case M8/8  
Plastic case M8/8  
FPX 4ꢀ±± V  
4
V dc = 2ꢀ±± V  
n
Vrms = 113± V  
Vs = 4ꢀ±± V  
1
2
Plastic case M8/8  
Plastic case M8/8  
62 (2.441)  
62 (2.441)  
5 (0.197)  
5 (0.197)  
22 (0.866)  
22 (0.866)  
15  
70  
38  
75  
1.4  
0.85  
6.2  
3.1  
FPX86Z0105J--  
FPX86Z0205J--  
FPX 46±± V  
V dc = 3±±± V  
n
Vrms = 14±± V  
Vs = 46±± V  
0.68 Plastic case M8/8  
1.25 Plastic case M8/8  
1.5 Plastic case M8/10  
1.7 Plastic case M8/10  
62 (2.441)  
62 (2.441)  
79 (3.110)  
79 (3.110)  
79 (3.110)  
5 (0.197)  
5 (0.197)  
6 (0.236)  
6 (0.236)  
6 (0.236)  
6 (0.236)  
6 (0.236)  
6 (0.236)  
6 (0.236)  
6 (0.236)  
6 (0.236)  
6 (0.236)  
6 (0.236)  
22 (0.866)  
22 (0.866)  
14  
50  
35  
65  
60  
70  
80  
130  
140  
100  
110  
115  
120  
130  
160  
1.59  
1
6.2  
FPX86Y0684J--  
FPX86Y1254J--  
FPX86Y0155J--  
FPX86Y0175J--  
FPX86Y0205J--  
FPX86Y0255J--  
FPX86Y0275J--  
FPX86Y0305J--  
FPX86Y0355J--  
FPX86Y0405J--  
FPX86Y0455J--  
FPX86Y0505J--  
FPX86Y0605J--  
3.3  
8.3  
7.4  
6.3  
3.3  
3.2  
4.4  
4.2  
4.0  
5.0  
5.0  
5.0  
32  
40  
56  
1.4  
1.3  
1.1  
0.8  
0.7  
0.9  
0.8  
0.8  
0.6  
0.6  
0.5  
2
Plastic case M8/10  
2.5 Plastic case M8/10 118 (4.646)  
2.7 Plastic case M8/10 118 (4.646)  
200  
232  
128  
170  
224  
522  
600  
729  
3
Plastic case M8/10 143 (5.630)  
3.5 Plastic case M8/10 143 (5.630)  
Plastic case M8/10 143 (5.630)  
4.5 Plastic case M8/10 163 (6.417)  
4
5
6
Plastic case M8/10 163 (6.417)  
Plastic case M8/10 163 (6.417)  
* Tol: +0 / -3mm for H 118mm  
For higher power protection devices and further information  
please see PPX Series in Capacitor for High Power Electronics  
available on AVX website: www.avxcorp.com  
29  
Medium Power Film Capacitors  
FPX  
PROTECTION  
MARKING  
Nominal DC voltage in clear  
RMS current in clear  
Logo  
Withstanding surge voltage  
Capacitance and tolerance in clear  
Date of manufacture (IEC coding)  
DESIGN  
Plastic Case M6 / 6 or M8 / 8  
Plastic Case M8 / 1±  
Max Torque: 10Nm  
The positions of the connections  
of each side are not indexed  
Max Torque:10Nm (M8)  
6Nm (M6)  
H 79mm (3.11)  
h 2 (0.079)  
M6/6 or M8/8  
M8 (0.315)  
/10 (0.394)  
M8 (0.315)  
/10 (0.394)  
TPC  
H* 0.5  
(0.020)  
h 2 (0.079)  
6.00 (0.236)  
6.00 (0.236)  
Ød  
ØDmax  
Ø28 (1.103) 0.1 (0.004)  
*H = 52 for 2000 or 2500v M6/6 M8/8  
*H = 62 for 3500 or 4500v M8/8  
Ø4 (0.16) A  
Plastic Case  
Plastic Case or  
Resin Molding  
Ø4 (0.16) A  
A
A
D Max  
Tinned Output  
Resin  
Resin  
Tinned Output  
23 (0.906) 0.50 (0.020)  
Dimensions: millimeters (inches)  
Dimensions: millimeters (inches)  
General tolerance: 2  
General tolerance:  
2
Due to the design of the capacitor and its technology,  
the thermal impedance between the terminations and the  
core of the capacitor is low, it is necessary to take care that  
the capacitor is never overheated by use of incorrect sized  
connections.  
HOT SPOT TEMPERATURE CALCULATION  
θhot spot = θterminals + (Pd + Pt) x Rth  
with  
Pd (Dielectric losses) = Q x tgδ0  
In the case where the series diodes are screwed to the  
capacitor, cooling of the diodes must be taken in account.  
1
[ ⁄  
2
x Cn x (Vpeak peak)2 x f ] x (2 x 10-4)  
to  
2
Pt (Thermal losses) = Rs x (Irms  
where  
Cn in Farads  
)
Do not use the capacitor as a heat sink.  
Due to the complexity of the diode/capacitor thermal  
exchanges, we recommend that thermal measurements  
shall be made on the different components. We would be  
pleased to advise you on specific problems.  
V in Volts  
Irms in Amperes  
Rs in Ohms  
f in Hertz  
θ in °C  
Rth in °C/W  
WORKING TEMPERATURE  
(according to the power to be dissipated) -40°C to +85°C  
For higher power protection devices and further information  
please see PPX Series in Capacitor for High Power Electronics  
available on AVX website: www.avxcorp.com  
30  

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