03028-BX272AKZ AVX Corporation, 03028-BX272AKZ Datasheet - Page 189

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03028-BX272AKZ

Manufacturer Part Number
03028-BX272AKZ
Description
CAPACITOR CERAMIC, 2700PF, 50V, 0603
Manufacturer
AVX Corporation
Datasheet

Specifications of 03028-BX272AKZ

Capacitance
2700pF
Capacitance Tolerance
± 10%
Voltage Rating
50VDC
Capacitor Case Style
0603
No. Of Pins
2
Capacitor Mounting
SMD
Operating Temperature Range
-55°C To +125°C
188 | www.avx.com
Medium Power Film Capacitors
FPX/FPY (RoHS Compliant)
PROTECTION
DIMENSIONS
Plastic Case Style M6 / 6 or M8 / 8
Plastic Case Style M8 / 10
MARKING
Logo
Withstanding surge voltage
Capacitance and tolerance in clear
Nominal DC voltage in clear
RMS current in clear
Date of manufacture (IEC coding)
HOW TO ORDER
FPX = Standard
FPY = RoHS Compliant
M8 (0.315)
/10 (0.394)
H ±0.5
(0.020)
Max Torque: 8.5Nm (M8)
h ±2 (0.079)
h ±2 (0.079)
Max Torque: 8.5Nm
The positions of the connections
of each side are not indexed
FPX
Series
http://www.avx.com/docs/catalogs/filmcaps.pdf
6.00 (0.236)
4.5Nm (M6)
H ≥ 79 +0 -3.0mm
(3.11 +0 -0.12)
ØDmax
Ød
TPC
Check for up-to-date CV Tables at
6.00 (0.236)
M6/6 or M8/8
H ≤ 62
Case Size 6
Case Size 8
Case Size
(See Case
M8 (0.315)
/10 (0.394)
Style)
6
Tinned Output
Ø4 (0.16) A
Ø4 (0.16) A
Tinned Output
Dimensions: millimeters (inches)
General tolerance: ±2
A
Dimensions: millimeters (inches)
General tolerance: ±2
A
6 = Polypropylene
Dielectric
6
Ø28 (1.103) ±0.1 (0.004)
23 (0.906) ±0.50 (0.020)
Plastic Case or
(Resin Molding)
Resin
Plastic Case
Resin
D Max
N = 2000V
P = 2500V
X = 3500V
Z = 4500V
Y = 4600V
Voltage
Code
N
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 induc-
tance and to provide rigid mechanical mounting.
PACKAGING MATERIAL
Cylindrical in plastic case filled with thermosetting resin.
Outputs: threaded inserts either M6 or M8.
HOT SPOT TEMPERATURE CALCULATION
See Hot Spot Temperature page 3.
with
where
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.
In the case where the series diodes are screwed to the capacitor,
cooling of the diodes must be taken in account.
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 differ-
ent components. We would be pleased to advise you on specific
problems.
WORKING TEMPERATURE
(according to the power to be dissipated)
0105 = 1.0μF
0335 = 3.5μF
0504 = 0.5μF
I
Capacitance
R
rms
C
0 + pF code
R
P
P
V in Volts
th
θ in °C
n
s
d
t
f in Hertz
0105
Code
(Thermal losses) = R
(Dielectric losses) = Q x tgδ
etc.
θ
⇒ [
in Farads
in Amperes
in Ohms
in °C/W
hot spot
1
2
x C
= θ
n
terminals
x (V
Capacitance
Tolerances
K = ±5%
peak
J
+ (P
to
s
x (I
peak
d
rms
+ P
)
2
)
0
2
x f ] x (2 x 10
t
Terminal Code
) x R
– – = Standard
th
– –
-40°C to +85°C
-4
)

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