High Voltage Power Capacitors (Vishay ESTA)

V I S H AY I N T E R T E C H N O L O GY, I N C .
INTERACTIVE
data book
HIGH VOLTAGE POWER CAPACITORS
VISHAY ESTA
VSE-DB0053-1303
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One of the World’s Largest Manufacturers of
Discrete Semiconductors and Passive Components
POWER CAPACITORS
Vishay Intertechnology, Inc.
Vishay ESTA
High Voltage Power Capacitors
Data Book
• Scope
• Standards
• Fields of Application
• General Data
One of the World’s Largest Manufacturers of
Discrete Semiconductors and Passive Components
VSE-DB0053-1303
POWER CAPACITORS
Vishay ESTA
SEMICONDUCTORS
MOSFETs
Low-Voltage TrenchFET® Power MOSFETs
Medium-Voltage Power MOSFETs
High-Voltage Planar MOSFETs
High-Voltage Super Junction MOSFETs
Automotive-Grade MOSFETs
ICs
Power Management and Power Control ICs
Smart Load Switches
Analog Switches and Multiplexers
DIODES SEGMENT
PRODUCT LISTINGS
Vishay Intertechnology, Inc.
MOSFETS SEGMENT
Rectifiers
Schottky Rectifiers
Ultra-Fast Recovery Rectifiers
Standard and Fast Recovery Rectifiers
High-Power Rectifiers/Diodes
Bridge Rectifiers
Small-Signal Diodes
Schottky and Switching Diodes
Zener Diodes
Tuner/Capacitance Diodes
Bandswitching Diodes
RF PIN Diodes
Protection Diodes
TVS Diodes or TRANSZORB®
(uni-directional, bi-directional)
ESD Protection Diodes (including arrays)
Thyristors/SCRs
Phase-Control Thyristors
Fast Thyristors
Power Modules
Input Modules
(diodes and thyristors)
Output and Switching Modules
(contain MOSFETs, IGBTs, and diodes)
Custom Modules
OPTOELECTRONIC COMPONENTS
SEGMENT
Infrared Emitters and Detectors
Optical Sensors
Infrared Remote Control Receivers
Optocouplers
Phototransistor, Photodarlington
Linear
Phototriac
High-Speed
IGBT and MOSFET Driver
Solid-State Relays
LEDs and 7-Segment Displays
Infrared Data Transceiver Modules
Custom Products
PASSIVE COMPONENTS
RESISTORS AND INDUCTORS SEGMENT
Film Resistors
Metal Film Resistors
Thin Film Resistors
Thick Film Resistors
Metal Oxide Film Resistors
Carbon Film Resistors
Wirewound Resistors
Vitreous, Cemented, and Housed Resistors
Braking and Neutral Grounding Resistors
Custom Load Banks
Power Metal Strip® Resistors
Chip Fuses
Variable Resistors
Cermet Variable Resistors
Wirewound Variable Resistors
Conductive Plastic Variable Resistors
Contactless Potentiometers
Networks/Arrays
Non-Linear Resistors
NTC Thermistors
PTC Thermistors
Varistors
Magnetics
Inductors
Transformers
Coils
Connectors
CAPACITORS SEGMENT
Tantalum Capacitors
Molded Chip Tantalum Capacitors
Coated Chip Tantalum Capacitors
Solid Through-Hole Tantalum Capacitors
Wet Tantalum Capacitors
Ceramic Capacitors
Multilayer Chip Capacitors
Disc Capacitors
Film Capacitors
Power Capacitors
Heavy-Current Capacitors
Aluminum Capacitors
VSE-DB0053-1303
High Voltage Power Capacitors
Vishay ESTA
Vishay Electronic GmbH
Division ESTA
Hofmark-Aich-Strasse 36
D-84030 Landshut
Germany
Phone: +49 871 860
Fax: +49 871 862550
www.vishay.com
Disclaimer
ALL PRODUCT, PRODUCT SPECIFICATIONS AND DATA ARE SUBJECT TO CHANGE WITHOUT NOTICE TO IMPROVE
RELIABILITY, FUNCTION OR DESIGN OR OTHERWISE.
Vishay Intertechnology, Inc., its affiliates, agents, and employees, and all persons acting on its or their behalf (collectively,
“Vishay”), disclaim any and all liability for any errors, inaccuracies or incompleteness contained in any datasheet or in any other
disclosure relating to any product.
Vishay makes no warranty, representation or guarantee regarding the suitability of the products for any particular purpose or
the continuing production of any product. To the maximum extent permitted by applicable law, Vishay disclaims (i) any and all
liability arising out of the application or use of any product, (ii) any and all liability, including without limitation special, consequential or incidental damages, and (iii) any and all implied warranties, including warranties of fitness for particular purpose,
non-infringement and merchantability.
Statements regarding the suitability of products for certain types of applications are based on Vishay’s knowledge of typical
requirements that are often placed on Vishay products in generic applications. Such statements are not binding statements
about the suitability of products for a particular application. It is the customer’s responsibility to validate that a particular product with the properties described in the product specification is suitable for use in a particular application. Parameters provided in datasheets and/or specifications may vary in different applications and performance may vary over time. All operating
parameters, including typical parameters, must be validated for each customer application by the customer’s technical
experts. Product specifications do not expand or otherwise modify Vishay’s terms and conditions of purchase, including but
not limited to the warranty expressed therein.
Except as expressly indicated in writing, Vishay products are not designed for use in medical, life-saving, or life-sustaining
applications or for any other application in which the failure of the Vishay product could result in personal injury or death.
Customers using or selling Vishay products not expressly indicated for use in such applications do so at their own risk. Please
contact authorized Vishay personnel to obtain written terms and conditions regarding products designed for such applications.
No license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted by this document or by
any conduct of Vishay. Product names and markings noted herein may be trademarks of their respective owners.
Table of Contents
www.vishay.com
Vishay ESTA
High Voltage Power Capacitors
General Information ..............................................................................................................................................................
2
Bushings ..............................................................................................................................................................................
6
Request for Quotation ..........................................................................................................................................................
7
Pha... Power Capacitors .......................................................................................................................................................
9
Capacitor Assembly..............................................................................................................................................................
11
Revision: 15-Mar-13
1
General Information
www.vishay.com
Vishay ESTA
High Voltage Power Capacitors
SCOPE
that system if the capacitors are suitably positioned.
Single phase capacitor units from 1 kV up to maximum
24 kV, 50 Hz or 60 Hz, 20 kvar up to maximum 1000 kvar for
indoor or outdoor use.
- With dead casing, open terminal IP00 (2 bushings)
- With dead casing, type of enclosure IP55 (2 bushings)
- With live casing, open terminal IP00 (1 bushing)
INDIVIDUAL POWER FACTOR CORRECTION
Three phase capacitor units from 1 kV up to maximum
12 kV, 50 Hz or 60 Hz, 20 kvar up to max. 800 kvar with
pressure monitoring device.
- With dead casing (3 bushings), open terminal IP00 (indoor
use only)
- With dead casing (3 bushings), protected terminals, type of
enclosure IP55 (indoor or outdoor)
STANDARDS
- VDE 0560/4 Bestimmungen für Leistungskondensatoren
- IEC 60871 Shunt capacitors for AC power systems
having a rated voltage above 1000 V
- IEC 60143 Series capacitors for power systems
Capacitors in accordance with other standards like AS,
ANSI IEEE, BS, CSA, IS, etc... are also available upon
request.
QUALITY MANAGEMENT SYSTEM
ISO 9001, ISO 14001, IRIS
QUALIFICATIONS
- EDF (HN 54-S-05)
- CSA std. C22.2 no. 190-M1985
SAFETY REGULATIONS
When installing the equipment, relevant IEC or VDE
recommendations shall be observed, in particular VDE 0101
and 0111, as well as VDE 0560 part 4 section C.
FIELDS OF APPLICATION
POWER FACTOR CORRECTION
The active power produced by the active current can alone
be turned into an effective use for the consumer; while the
reactive power produced by the reactive current does not
yield usable power, and consequently, is not registered on
the active performance meter. The reactive power
has, however, a negative effect on generators, transformers,
and conductor lines, while causing voltage drops
and financial losses due to additional electric heating.
The reactive power required for the creation of the magnetic
field around motors, transformers, and conducter lines
continiously oscillates between the current generators and
the consumers. A more cost effective way to provide this
reactive power is to produce it by placing capacitors close
to the consumers of reactive power (motors, transformers),
thus relieving the line between generator and consumer of
the transport of the reactive current portion. This way,
several more current consumers can be connected to an
existing supply system without having to extend or amplify
Revision: 19-Mar-10
The power factor correction capacitor is connected directly
to the terminals of the consumer and will be switched
together with it. The advantages of this method are: Relief of
the conductor lines and switches, no capacitor switches or
discharge resistors are needed, and the installation
is simple and cheap. The individual compensation is the
best solution for large consumers (e.g. motors), particularly
if they are in continuous operation.
INDIVIDUAL POWER FACTOR CORRECTION OF
3-PHASE MOTORS
The motor and the capacitor are connected in parallel. They
are both switched in and out by means of one and the same
switchgear and also monitored by a common protective
device. A discharge device is not required, because
discharging takes place through the motor windings.
The switchgear must be rated to be capable of withstanding
the inrush current of the capacitor and the connection lines
must be capable of withstanding the full load current of the
motor. The capacitor, in this case, has to be installed in
close proximity to the motor.
INDIVIDUAL POWER FACTOR CORRECTION OF
POWER TRANSFORMERS
The direct connection of the capacitor to a power
transformer, which is jointly switched in and out, is feasible
and permissible both at the H.V. side and the L.V. side.
In cases where harmonics exist in the line, the line should be
checked to determine whether the capacitors and the power
transformer are connected in series and create a resonance.
Care should be taken not to overcompensate the power
transformer during low load operation in order to avoid an
unacceptable rise in voltage.
INDIVIDUAL POWER FACTOR CORRECTION OF
WELDING MACHINES
The output of capacitors for welding transformers
and resistance welding machines only needs to be in the
range of 30 % to 50 % of the nominal transformer capacity.
For welding rectifiers, a capacitor output of about 10 % of
the nominal capacity of the transformer/rectifier is sufficient.
GROUP POWER FACTOR CORRECTION
The power factor correction capacitor is connected to
the secondary distribution system which feeds a number of
individual motors, operating either continuously or
at intervals.
The motors and the capacitors are each switched in
and out separately and are monitored by separate
protective devices. The capacitors can be switched in or
out individually or in groups.
Document Number: 13107
2
For technical questions, contact: [email protected]
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
General Information
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CENTRAL POWER FACTOR CORRECTION
CURVE 1
In large installations where many individual electrical
appliances of various size (motors etc.) operate at different
times and for different periods, the power factor correction
capacitors are centrally connected to the main bus bar. The
capacitors can be switched either manually or, by means of
power factor control relays, automatically.
Losses as a function of dielectric temperature
W/kvar
Losses = f (t)
0.2
0.15
Advantage:
Automatic control and optimal matching of the
capacitor output to the specified requirements for reactive
power insures that the specified cos phi is maintained in the
most cost effective way.
0.1
0.05
GENERAL DATA
0
0
3
6
DIELECTRIC
An all film dielectric is used and consists of polypropylene in
the form of biaxially oriented film, hazy on both side, and in
2 or 3 layers with a laser cut aluminum foil for the electrodes.
IMPREGNATING AGENT
9
Losses variation of a representative capacitor unit
CURVE 2
Losses as a function of dielectric temperature
The capacitors are impregnated with a NON-PCB base fluid.
Dielectric losses in new state are approx. 0.1 W/kvar and
reduce after 500 h operating to a stable state of approx.
0.02 W/kvar to 0.05 W/kvar (see curve 1 and curve 2).
Losses = f (t)
W/kvar
DIELECTRIC LOSSES AND TOTAL LOSSES
12
Operating time in months
0.2
0.15
0.1
The dielectric losses, depending on capacitor design, shall
be added to the losses caused by:
0.05
- Discharge resistors
- Internal connections
0
- 20
- Internal fuses
Total losses will reach values from 0.07 W/kvar to approx.
0.15 W/kvar.
0
20
40
60
80
100
Temperature (°C)
CURVE 3
Capacitance as a function dielectric temperature
TESTING
Capacitance = f (T)
Cn/C20 °C (%)
Capacitors are tested in accordance with IEC-standard
60871.
Other standards upon request.
104
102
100
98
96
- 20
Revision: 19-Mar-10
0
20
40
60
80
100
Document Number: 13107
3
For technical questions, contact: [email protected]
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
General Information
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TEMPERATURE RANGE
Capacitors are classified in temperature categories, with each category being specified by a number followed by a letter
SYMBOL
MAXIMUM
AMBIENT AIR TEMPERATURE (°C)
HIGHEST MAN OVER ANY PERIOD OF
24 h
1 YEAR
A
40
30
0
B
45
35
25
C
50
40
30
D
55
45
35
The number represents the lowest ambient air temperature at which the capacitor may operate. - 50 °C, - 40 °C, - 25 °C,
- 15 °C, - 5 °C
The letters represent upper limits of temperature variation ranges, having maximum values specified in above table.
OVERLOADS
a) Maximum permissible voltage (continuous)
Capacitor units shall be suitable for operation at voltage levels according to the following table.
The amplitudes of the over voltages that may be tolerated without significant deterioration of the capacitor depends on the
duration, the total number and the capacitor temperature.
TYPE
VOLTAGE
FACTOR (VRMS)
MAXIMUM DURATION
1.0 UN
Continuous
1.1 UN
1.15 UN
1.2 UN
1.3 UN
12 h in every 24 h
30 min in every 24 h
5 min
1 min
Power frequency
OBSERVATION
Highest average value during any period of
capacitor energization. For energization periods
less than 24 h, exceptions apply in accordance with
the value below
System voltage regulation and fluctuations
System voltage regulation and fluctuations
Voltage rise at light load
b) Maximum permissible current
Capacitor units shall be suitable for continuous operation at an rms current of 1.30 times the current that occurs at rated
sinusoidal voltage and rated frequency, excluding transients.
DISCHARGING
Following may be used as discharge device:
- discharge resistors
- discharge coils
- discharge transformers
- windings of motors or transformers
Each capacitor unit shall be provided with means for discharging to 75 V or less in 10 minutes.
CORROSION PROTECTION
Case material:
- stainless steel
Pre-treatment:
- pickling with acid
- washing with water
- alkalinous degreasing
- washing with water
- washing with distilled water
Primer coating:
DEDELAN wash primer, two-component wash primer based on acrylic resin
Top coating:
2C-PUR HIGH-SOLID TOPCOAT low solvent two component topcoat based on acrylic resin
Total thickness:
CORO 1: 75 μm to 85 μm
CORO 2: 115 μm to 130 μm
Revision: 19-Mar-10
Document Number: 13107
4
For technical questions, contact: [email protected]
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
General Information
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Vishay ESTA
PROTECTION DEVICES FOR POWER
CAPACITORS
Detailed information is provided in IEC 60871-3
“Protection of shunt capacitors and shunt capacitor banks.”
a) INTERNAL FUSES
Detailed information is provided in IEC 60871-4 “Internal
fuses.”
Internal fuses are designed to isolate faulty elements in
order to allow further operation of the capacitor unit and the
bank in which the capacitor is connected.
Complete protection is obtained when using internal fuses
together with an unbalance protection device.
EXAMPLES OF MOUNTING
The pressure inside the capacitor casing is monitored by
means of an over pressure sensor. In the event that the
setting (critical value) is exceeded, a change-over contact
initiates disconnection of the capacitor. Such an early
disconnection from the source of supply after an internal
breakdown can stop gas evolution in the capacitor casing,
avoiding the bursting of it. Complete protection is obtained
when using the pressure monitoring device together with
H.R.C. fuses.
80
35
b) PRESSURE MONITORING DEVICE
2
120
Important!
If the pressure monitoring device has operated, the
capacitor must not be placed back into service, but
returned together with the device to our factory for
examination.
1
4
TECHNICAL DATA
Revision: 19-Mar-10
=
=
85
75
2
1
4
Electrical connection: AMP-plug type lugs 6.35 mm
Contacts:
1 change-over contact 15 A/250 VAC
Insulation test voltage: 1500 V
Setting range:
0.2 bar to 0.9 bar
Standard setting:
0.6 bar to 0.8 bar
Pressure limit:
6.0 bar
Accessory:
Rubber protective cap
Temperature range:
- 40 °C up to + 85 °C
Dimension:
See dimension
Fitting:
R 1/4" and mechanical protection
Mounting position:
Dependant on design of capacitor
Testing:
Functional test and leakage test
Pg 9
35
Casing: Polycarbonat
55
65
=
=
Document Number: 13107
5
For technical questions, contact: [email protected]
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
Bushings
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High Voltage Power Capacitors
BUSHINGS
Porcelain bushings for indoor and outdoor
TYPE
IMPULSE
WITHSTAND BIL
(kV)
MIN.
CREEPAGE
(mm)
INSTALLATION
HEIGHT
(mm)
THREAD
MAX.
TORQUE
N/m
D-197
D-199
D-401
D-404
D-406
D-341
0
75
95
125
150
170
90
189
317
472
658
810
Indoor
Indoor
In/outdoor
In/outdoor
In/outdoor
In/outdoor
75
159
240
270
290
415
M12
M12
M16
M16
M16
M16
16
20
40
40
40
40
DRAWINGS OF BUSHINGS
42 ± 3
M16
159 ± 2
75 ± 2
27 ± 2
M12
193 ± 7
31± 2
M12
D-197
D-199
D-401
42 ± 3
M16
M16
223 ± 7
245 ± 7
370 ± 10
42 ± 3
42 ± 3
M16
D-404
Revision: 19-Mar-10
D-406
D-341
Document Number: 13108
6
For technical questions, contact: [email protected]
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
Request for Quotation
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High Voltage Power Capacitors
REQUEST FOR QUOTATION
PRODUCT GROUP
CAPACITOR UNIT
Request for quotation
Reference for inquiry
Quotation number
TECHNICAL SPECIFICATION
REQUESTED
Rated voltage
(1)
kV
Frequency (1)
Hz
Rated output (1)
Connection
kvar
Single phase/three phase
Number of bushings (1)
Installation
OFFERED
1/2/3
(1)
Indoor/outdoor
Capacitance
μF
Element fuse
Yes/no
Discharge resistor
Yes/no
Standard
Temperature class
-....../+......°C
Insulation level
kV/kVp
Enclosure
Protection
IP...
Dimension L x W x H
(mm)
Replacement
Yes/no
If yes, what to replace
Dimensions
L x W x H (mm)
Pressure monitoring
Yes/no
CONDITIONS
Quantity
Delivery
(Ex works/FOB/CIF...)
Terms of payment
Requested validity
Requested delivery
Note
No quotation possible without this info
(1)
Revision: 17-Mar-10
Document Number: 13049
7
For technical questions, contact: [email protected]
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
Request for Quotation
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REQUEST FOR QUOTATION
PRODUCT GROUP
CAPACITOR BANK
Request for quotation
Reference for inquiry
Quotation number
TECHNICAL SPECIFICATION
REQUESTED
Rated voltage
Frequency
(1)
kV
(1)
Rated output
Installation
Connection
OFFERED
Hz
(1)
Mvar
(1)
(1)
Indoor/outdoor
Single phase, star, delta
Capacitance
μF
Unbalance protection
Yes/no
Element fuse
Yes/no
Discharge resistor
Yes/no
Standard
Temperature class
-....../+......°C
Insulation level
kV/kVp
Enclosure
Protection
IP...
Replacement
Yes/no
If Yes, what to replace
CONDITIONS
Quantity
Delivery
(Ex works/FOB/CIF...)
Terms of payment
Requested validity
Requested delivery
Note
No quotation possible without this info
(1)
Revision: 17-Mar-10
Document Number: 13049
8
For technical questions, contact: [email protected]
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
Pha... Power Capacitors
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High Voltage Power Capacitors
FORM OF CONSTRUCTION
In the case of single phase capacitor units with
dead casings, both polarities are led out through the casing
in an insulated condition by means of porcelain bushings
(fig. 1).
In the case of single phase capacitor units with one bushing
only, the second polarity is connected to the casing (fig. 2).
Three-phase capacitors are provided with three bushings
for connection to the phases and have dead casings with
grounding connection point (fig. 3). They are connected
either in star or in delta.
In cases where protection against an accidental touch is
required, the capacitors can be supplied as IP55 version
(fig. 4).
Revision: 26-Oct-12
Document Number: 13045
9
For technical questions, contact: [email protected]
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
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CAPACITOR - DIMENSION AND WEIGHT
• Three-phase capacitor up to 7.2 kV, 50 Hz, IP00
OUTPUT QN
kvar
WEIGHT
kg
CASING DIMENSIONS
LxIxH
50
21
345 mm x 110 mm x 300 mm
75
21
345 mm x 110 mm x 300 mm
100
22
133
• Three-phase capacitor up to 12 kV, 50 Hz, IP55
WEIGHT
kg
CASING DIMENSIONS
LxIxH
50
24
345 mm x 135 mm x 300 mm
75
24
345 mm x 135 mm x 300 mm
345 mm x 110 mm x 300 mm
100
24
345 mm x 135 mm x 300 mm
24
345 mm x 110 mm x 350 mm
133
29
345 mm x 135 mm x 330 mm
150
27
345 mm x 110 mm x 410 mm
150
30
345 mm x 135 mm x 360 mm
167
29
345 mm x 110 mm x 430 mm
167
29
345 mm x 135 mm x 380 mm
200
32
345 mm x 135 mm x 430 mm
200
32
345 mm x 135 mm x 430 mm
250
37
345 mm x 135 mm x 500 mm
250
37
345 mm x 175 mm x 400 mm
300
41
345 mm x 175 mm x 450 mm
300
43
345 mm x 175 mm x 480 mm
350
47
345 mm x 175 mm x 520 mm
350
48
345 mm x 175 mm x 540 mm
400
53
345 mm x 175 mm x 600 mm
400
52
345 mm x 175 mm x 590 mm
450
56
345 mm x 175 mm x 640 mm
450
57
345 mm x 175 mm x 650 mm
500
62
345 mm x 175 mm x 710 mm
500
61
345 mm x 175 mm x 700 mm
550
67
345 mm x 175 mm x 770 mm
550
69
345 mm x 175 mm x 810 mm
600
71
345 mm x 175 mm x 820 mm
600
74
345 mm x 175 mm x 870 mm
650
78
345 mm x 175 mm x 910 mm
650
78
345 mm x 175 mm x 920 mm
700
81
345 mm x 175 mm x 950 mm
700
83
345 mm x 175 mm x 980 mm
750
101
345 mm x 270 mm x 810 mm
750
105
345 mm x 270 mm x 840 mm
800
106
345 mm x 270 mm x 850 mm
800
109
345 mm x 270 mm x 880 mm
• Three-phase capacitor up to 12 kV, 50 Hz, IP00
OUTPUT QN
kvar
WEIGHT
kg
CASING DIMENSIONS
LxIxH
50
25
450 mm x 110 mm x 300 mm
75
25
450 mm x 110 mm x 300 mm
100
27
133
OUTPUT QN
kvar
• Single-phase capacitor up to 7.2 kV, 50 Hz
OUTPUT QN
kvar
WEIGHT
kg
CASING DIMENSIONS
LxIxH
200
31
345 mm x 110 mm x 490 mm
300
41
345 mm x 175 mm x 450 mm
450 mm x 110 mm x 320 mm
400
50
345 mm x 175 mm x 575 mm
30
450 mm x 110 mm x 400 mm
500
60
345 mm x 175 mm x 698 mm
150
35
450 mm x 110 mm x 430 mm
600
70
345 mm x 175 mm x 820 mm
167
37
450 mm x 110 mm x 470 mm
700
80
345 mm x 175 mm x 950 mm
200
43
450 mm x 110 mm x 540 mm
800
90
345 mm x 175 mm x 1090 mm
250
49
450 mm x 110 mm x 620 mm
900
99
345 mm x 270 mm x 810 mm
300
58
450 mm x 110 mm x 750 mm
1000
108
345 mm x 270 mm x 950 mm
• Single-phase capacitor up to 12 kV, 50 Hz
OUTPUT QN
kvar
Revision: 26-Oct-12
WEIGHT
kg
CASING DIMENSIONS
LxIxH
200
31
345 mm x 175 mm x 325 mm
300
40
345 mm x 175 mm x 450 mm
400
50
345 mm x 175 mm x 570 mm
500
60
345 mm x 175 mm x 705 mm
600
70
345 mm x 175 mm x 830 mm
700
80
345 mm x 175 mm x 950 mm
800
90
345 mm x 175 mm x 1090 mm
900
99
345 mm x 270 mm x 810 mm
1000
109
345 mm x 270 mm x 895 mm
Document Number: 13045
10
For technical questions, contact: [email protected]
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
Capacitor Assembly
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Vishay ESTA
High Voltage Power Capacitors
HT
75
H
HB
85
TYPICAL ARRANGEMENTS
450
1635
Type: G00S31
Maximum voltage: 24 kV
Installation: Indoor or outdoor
Connection: Double star with unbalance protection device
Protection level: IP00
H
H
c.t.
3900
H + 430
Terminal
L1, L2,L3
Y1
Y2
1250
Type: G00S12
Voltage: > 24 kV
Installation: Indoor or outdoor
Connection: Double star with unbalance protection device
Protection level: IP00
Revison: 18-Mar-10
Document Number: 13110
11
For technical questions, contact: [email protected]
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
Capacitor Assembly
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Vishay ESTA
TYPICAL ARRANGEMENTS
L3
L3
L2
3630
L2
Y1
Y2
L1
445
740
L1
1350
75
1300
Type: G00L11
Voltage: > 24 kV
Installation: Indoor or outdoor
Connection: Double star
Protection level: IP00
L3
L3
Y1
Y2
3330
L2
L2
Y1/Y2
L1
75
445
640
L1
ca.2150
ca. 2500
Type: G00L12
Voltage: > 24 kV
Installation: Indoor or outdoor
Connection: Double star
Protection level: IP00
Revison: 18-Mar-10
Document Number: 13110
12
For technical questions, contact: [email protected]
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
Capacitor Assembly
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Vishay ESTA
TYPICAL ARRANGEMENTS
525
674
510
890
280
890
M12
75
75
H
H
M12
Type: H55S31-3/D/K1PG68
Maximum voltage: 7.2 kV
Installation: indoor or outdoor
Connection: star or delta with pressure monitoring device
Protection level: IP55
Type: H55S31-3/D/G1PG68
Maximum voltage: 12 kV
Installation: indoor or outdoor
Connection: star or delta with pressure monitoring device
Protection level: IP55
674
ESTApact
Danger
High Voltage
100
M12
2200
510
1730
75
H
C.T.
Type: H55S31-6/U/G1PG68
Maximum voltage: 12 kV
Installation: indoor or outdoor
Connection: double star with unbalance protection device
Protection level: IP55
Revison: 18-Mar-10
800
1600
Type: S43S31
Maximum voltage: 12 kV
Installation: indoor only
Protection level: IP43
Document Number: 13110
13
For technical questions, contact: [email protected]
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000
Notes
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Vishay ESTA
14
POWER CAPACITORS
Vishay Intertechnology, Inc.
Vishay ESTA
VSE-DB0053-1303
POWER CAPACITORS
Vishay ESTA
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© Copyright 2013 Vishay Intertechnology, Inc.
® Registered trademarks of Vishay Intertechnology, Inc.
All rights reserved. Printed in Germany. Specifications subject to change without notice.
VSE-DB0053-1303
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO
SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000