102S43W103MV4E Johanson Dielectrics Inc, 102S43W103MV4E Datasheet

CAP CER 0.01UF 1KV X7R 1812

102S43W103MV4E

Manufacturer Part Number
102S43W103MV4E
Description
CAP CER 0.01UF 1KV X7R 1812
Manufacturer
Johanson Dielectrics Inc
Datasheets

Specifications of 102S43W103MV4E

Capacitance
10000pF
Voltage - Rated
1000V (1kV)
Tolerance
±20%
Temperature Coefficient
X7R
Mounting Type
Surface Mount, MLCC
Operating Temperature
-55°C ~ 125°C
Features
High Voltage
Applications
General Purpose
Package / Case
1812 (4532 Metric)
Size / Dimension
0.180" L x 0.125" W (4.57mm x 3.18mm)
Thickness
2.80mm Max
Dielectric Characteristic
X7R
Capacitance Tolerance
± 20%
Voltage Rating
1000VDC
Capacitor Case Style
1812
No. Of Pins
2
Capacitor Mounting
SMD
Operating Temperature Range
-55°C
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Ratings
-
Lead Spacing
-
Other names
709-1300-2
H
6
IGH
R15/0805
R18/1206
R29/1808
S41/1210
Mechanical Characteristics
V
OLTAGE
L
W
T
E/B .020 ±.010
L
W
T
E/B .020 ±.010
L
W
T
E/B .020 ±.010
L
W
T
E/B .020 ±.010
Available capacitance values include the following significant retma values and their multiples:
S
Inches
.080 ±.010
.050 ±.010
.055 Max.
Inches
.125 ±.010
.062 ±.010
.067 Max.
Inches
.125 ±.010
.095 ±.010
.080 Max.
Inches
.189 ±.010
.080 ±.010
.085 Max.
URFACE MOUNT
1.0 1.2 1.5 1.8 2.2 2.7 3.3 3.9 4.7 5.6 6.8 8.2 ( 1.0 = 1.0, 10, 100, 1000, etc.)
Consult factory for non-retma values and sizes or voltages not shown.
(mm)
(2.03 ±.25)
(1.27 ±.25)
(1.40)
(0.51±.25)
(mm)
(3.17 ±.25)
(1.57 ±.25)
(1.70)
(0.51±.25)
(mm)
(3.18 ±.25)
(2.41 ±.25)
(2.03)
(0.51±.25)
(mm)
(4.80 ±.25)
(2.03 ±.25)
(2.16)
(0.51±.25)
www.johanson dielectrics.com
MLCC
1000 VDC
1000 VDC
2000 VDC
3000 VDC
1000 VDC
2000 VDC
3000 VDC
1000 VDC
2000 VDC
3000 VDC
4000 VDC
5000 VDC
6000 VDC
Voltage
250 VDC
500 VDC
630 VDC
250 VDC
500 VDC
630 VDC
250 VDC
500 VDC
630 VDC
500 VDC
630 VDC
demanding environments & processes. Visit our website for full details.
Rated
These high voltage capacitors feature a special internal
electrode design which reduces voltage concentrations by
distributing voltage gradients throughout the entire capacitor.
This unique design also affords increased capacitance values
in a given case size and voltage rating. The capacitors are
designed and manufactured to the general requirement of
EIA198 and are subjected to a 100% electrical testing making
them well suited for a wide variety of telecommunication,
commercial, and industrial applications.
A
• Analog & Digital Modems
• Lighting Ballast Circuits
• DC-DC Converters
NOW AVAILABLE
PPLICATIONS
S
250 - 6,000 VDC
Minimum
1.0 pF
1.0 pF
1.0 pF
1.0 pF
1.0 pF
1.0 pF
10 pF
10 pF
10 pF
10 pF
10 pF
10 pF
10 pF
10 pF
10 pF
10 pF
10 pF
10 pF
10 pF
10 pF
10 pF
-
-
-
NPO Dielectric
Available Capacitance
with Polyterm
1500 pF
1200 pF
1000 pF
3900 pF
2700 pF
1800 pF
4700 pF
3300 pF
2200 pF
Maximum
680 pF
560 pF
390 pF
220 pF
560 pF
220 pF
820 pF
470 pF
180 pF
82 pF
75 pF
75 pF
-
-
-
• LAN/WAN Interface
• Voltage Multipliers
• Back-lighting Inverters
®
1000 pF
1000 pF
1000 pF
1000 pF
1000 pF
1000 pF
1000 pF
1000 pF
1000 pF
1000 pF
1000 pF
soft termination option for
Minimum
100 pF
100 pF
100 pF
100 pF
100 pF
100 pF
100 pF
100 pF
100 pF
100 pF
100 pF
47 pF
47 pF
X7R Dielectric
0.022 µF
0.010 µF
0.068 µF
0.027 µF
0.010 µF
0.120 µF
0.047 µF
0.027 µF
0.010 µF
0.056 µF
0.039 µF
0.018 µF
3900 pF
2700 pF
5600 pF
1000 pF
2200 pF
6800 pF
3300 pF
Maximum
220 pF
560 pF
270 pF
120 pF
100 pF

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102S43W103MV4E Summary of contents

Page 1

... This unique design also affords increased capacitance values in a given case size and voltage rating. The capacitors are designed and manufactured to the general requirement of EIA198 and are subjected to a 100% electrical testing making them well suited for a wide variety of telecommunication, commercial, and industrial applications ...

Page 2

... Meets the standard NPO & X7R dielectric specifications listed on page 20 Dielectric Withstanding Voltage T E/B NOTE: Capacitors may require a surface coating to prevent external arcing. Solder mask should not be used beneath capacitors. For more information see JDI Tech Note “Surface Arc Season” ...

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