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FFVI6A0189K7X Datasheet(PDF) 1 Page - AVX Corporation

Part # FFVI6A0189K7X
Description  Medium Power Film Capacitors
Download  4 Pages
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Manufacturer  AVX [AVX Corporation]
Direct Link  http://www.avx.com
Logo AVX - AVX Corporation

FFVI6A0189K7X Datasheet(HTML) 1 Page - AVX Corporation

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24
JUNE 2015
Medium Power Film Capacitors
FFVE/FFVI (FFWE/FFWI RoHS Compliant)
PACKAGING MATERIAL
Self-extinguishing plastic case (V0 = in
accordance with UL 94) filled thermosetting
resin.
Self-extinguishing thermosetting resin (V0
= in accordance with UL 94; I3F1 = in
accordance with NF F 16-101).
*Mounting with Thermal Interface Grease
Dimensions: millimeters (inches)
General Tolerance:
±0.5 (0.020)
Tightening Torque
3 N.m max
Ø16 (0.63)min
Ø84
(3.307) max
Ø5.5 (0.217)
Ø20 (0.787)
±1 (0.039)
Plastic Case
Resin
Tinned Output
22
(0.866)
0.6
(0.024)
20
(0.787)
71.7 (2.822)
84.5 (3.327) max
71.7 (2.822)
84.5 (3.327) max
5 (0.197)
5 (0.197)
1.0
(0.039)
H±1
(0.039)
5 (0.197)
5 (0.197)
H±1
(0.039)
45±1
(1.772±0.039)
101
(3.976)
Max Torque 8.5 N.m for M8
Max Torque 2.5 N.m for M5
– – Male Threaded
Terminal Code
JE or 7X
Female Threaded
M8
M5x7.5
LABEL
LABEL
DIMENSIONS
GENERAL DESCRIPTION
The FFV capacitor is specifically designed for DC filtering, low reactive power.
The series uses a non-impregnated metallized polypropylene or polyester dielectric, which
features a controlled self-healing process, specially treated to have a very high dielectric
strength in operating conditions up to 105°C.
The FFV special design gives this series a very low level of stray inductance (18 nH to 40 nH).
Furthermore, the performance levels of the FFVE capacitor makes them a very interesting
alternative to electrolytic technology, because they can withstand much higher levels of
surge voltage, very high rms current ratings, and longer lifetimes.
FFVE capacitors meet the Level 2 requirement of the fire behavior standard NF F 16-102.
Rs(f) = (Rs-a) + k a
H=34: a 0.20
H=40: a 0.21
H=51: a 0.23
H=64: a 0.24
3.5
3.0
2.5
2.0
1.5
1.0
110
Frequency (kHz)
100
1000
Rs(f) vs FREQUENCY
For frequency higher than 1 kHz
use following curve
Also available with
threaded female
connections -
M5 x 7.5mm max
Torque 2.5Nm
HOW TO ORDER
FFVE
Series
FFVE = Standard
FFVI
= Standard
FFWE = RoHS Compliant
FFWI = RoHS Compliant
4
Dielectric
4 = Polyester
6 = Polypropylene
H
Voltage Code
0187
Capacitance
Code
0 + pF code
0187 = 180μF
0356 = 35μF
etc.
K
Capacitance
Tolerances
K = ±10%
––
Terminal Code
– – or J7 = Male Threaded
JE or 7X = Female Threaded
See Ratings and Part
Reference Tables for details
H = 300V
I = 400V
J = 500V
K = 600V
A = 700V
B = 800V
C = 900V
L = 1000V
(FFVE/FFWE)
L = 1100V
(FFVI/FFWI)
U = 1200V
N = 1900V
HOT SPOT CALCULATION
See Hot Spot Temperature, page 3.
θhot spot = θcase + (Pd + Pt) x Rth
with
Pd (Dielectric losses) = Q x tg
δ0
Q x tg
δ0 ⇒ [ 12 x Cn x (Vpeak to peak)2 x f ] x tgδ0
tg
δ0 (tan delta)
For polypropylene, tg
δ0 = 2 x 10-4 for frequencies up to
1MHz and is independent of temperatures. For polyester,
tg
δ0 values are shown in graph 4 on page 3.
Pt (Thermal losses) = Rs x (Irms)2
where
Cn in Farad
Irms in Ampere
f in Hertz
Vin Volt
Rs in Ohm
θ in °C
Rth in °C/W
θcase = bottom center of case
Not RoHS Compliant
Please select correct termination style.


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