B. Coefficient table for calculation of capacitance after rated voltage increase
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- Noah Hood
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3 Contents I. High voltage power capacitors A. High voltage internally fused capacitor B. Coefficient table for calculation of capacitance after rated voltage increase C. The selection of series reactor after increase of capacitor's rated voltage D. Instructions for the operations E. Maintenance guidelines II. A. Cylindrical self-healing low voltage shunt capacitor B. Oval-shaped self-healing low voltage shunt capacitor C. Dry type explosion proof capacitor D. Anti-harmonic capacitor E. Low voltage split-phase compensation capacitor F. Series reactor for capacitors G. SH-XD1 Type current-limiting inductor H. Contactors for capacitor switching I. Ultra-violet (UV) light capacitor J. Supplementary accessories K. Capacitors for AC motor & UPS L. Capacitance coefficient table
4 High voltage power capacitors I. High voltage power capacitors 2
5 A. High voltage internally fused capacitor Features & advantages (1) Allow operation continues even internal fuse are activated. Any failure on any one unit of the element, the internal fuse will be activated to cut off the power to prevent the fault current to flow into the failed unit, capacitor will continue operation without any impact from single element fault. Conventional no internal fused capacitor - Any failure on any one unit of the element will trigger the external fuse to activate and cut off the power. The failed capacitor need to be replaced with a new one. High voltage power capacitors Capacitor with internal fuse Conventional type External protective fuse. Discharge resistors Discharge resistors Only one unit of the element will be cut off the power if failure on one single element. Any failure on any one unit of the element, capacitor will not function anymore. Any failure on any one unit of the element, the internal fuse will be activated to cut off the power to prevent the fault current to flow into the failed unit, capacitor will continue operation. Any failure on any one unit of the element will trigger the external fuse to activate and cut off the power. The failed capacitor need to be replaced with a new one. (2) The decrease of capacitance is minor C/C N Number of internal units Capacitor with internal fuse If one element failed, only the capacitance of this element is lost. 3
6 High voltage power capacitors (3) Space saved for installation Installation space for the internal fused type capacitor is drastically decreased by using lead wire for connection in parallel, suitable for installation in the panel, saving cost in wiring accessories. Connecting to protective switches Lead wire wiring in U share Support insulator Bus bar Tension fuse (4) Comparison (internally fused vs conventional capacitor) Item Internal Fuse Type Conventional Type Installation space saving Yes No Operation continue after one element failed Excellent depends Reacitive power loss Low average level Imbalance protection Good average level Fuse Protection Good average level Tank rupture Low average level Fuse misoperation possibility Low average level 4
7 Specifications and Performances Installation Location Both indoor and outdoor Ambient Temperature -20 ~ +40 (24-hr average temperature, no more than 35 ) Max. Working Voltage 110% rated voltage (24-hr average voltage, no more than 110%) Max. Working current 135% rated current (including high harmonic wave and manufacturing tolerance) Capacity Tolerance -5% ~ +10% of rated value (phase-to-phase tolerance < 3%) Temperature Rise Lower than 25 when ambient temperature is lower than 40 High voltage power capacitors Sealing capability Dischargeability Safety Standards No oil leakage if heated in the tank with constant temperature (80 5 ) for four hour With discharge resistor build-in, residual voltage drops to lower than 50V after capacitor is disconnected from power for 5 minutes Excellent, due to individual fuse protection for every single unit inside the capacitor CNS 1372 / 3739, JIS C4902 Dimensions Fixing hole L20 W15 B 5 Fixing hole L20 W15 B 5 A 5 A±56 A±100 A±5 A±56 A±100 M12 E E M 12 E Bushing Bushing Nameplate Earthing terminal Nameplate Earthing terminal Lug Logo F C 5 D 10 Lug Logo F C 5 D 10 F (kvar) Capacity rating F (kvar) Capacity rating 5
8 High voltage power capacitors Any special requirements that are not indicated in the tables below, such as a group of capacitors with the rack design, switches or any of the protection devices, Shihlin electric is able to implement the design and custom-made the equipment as the requirements. 1Ø 50Hz, 6350V High Voltage Capacitors- Internal Fuse Type (applicable to 10kV system) Cat. No. Capacity Dimensions (mm) Current Fig (A) kvar µf A B C D E F SPF S B SPF S B SPF S B SPF S B SPF S B Approx. Weight (Kgs) 3Ø 50Hz, 12000V High Voltage Capacitors- Internal Fuse Type (applicable to 10kV system) Cat. No. Capacity Dimensions (mm) Current Fig (A) kvar µf A B C D E F Approx. Weight (Kgs) SPF T A SPF T A SPF T A SPF T A SPF T A Ø 50Hz, 12700V High Voltage Capacitors- Internal Fuse Type (applicable to 20kV system) Cat. No. Capacity Dimensions (mm) Current Fig (A) kvar µf A B C D E F Approx. Weight (Kgs) SPF S B SPF S B SPF S B SPF S B SPF S B Ø 50Hz, 22000V High Voltage Capacitors-Internal Fuse Type (applicable to 20kV system) Cat. No. Capacity Dimensions (mm) Current Fig (A) kvar µf A B C D E F Approx. Weight (Kgs) SPF T A SPF T A SPF T A SPF T A SPF T A
9 B. Coefficient table for calculation of capacitance after rated voltage increase System Voltage Intended increase of rated voltage for the capacitor (kv) Example of application High voltage power capacitors Example of application System voltage: 11.4 kv Rated voltage (intended to increase): 12.8 kv (voltage will increase if connected with series reactor or harmonic level is high) Required capacitance: 100 kvar Required capacitance after increase the voltage = (100% of the required capacitance before voltage-increase) (see the above table) = kvar The voltage intended to increase The capacitance after voltage increase Conversion formual ( ) 2 x100kvar=126.1kvar System voltage Required capacitance C. The selection of Reactor after Increase of capacitor rated Voltage Bad reactor voltage selection - 3.3kV OK Good reactor voltage selection - 3.6kV Series Reactor 3Ø 60Hz 3.3kV 114.3V 6kVAR(6%) Series Reactor 3Ø 60Hz 3.6kV 124.7V 6kVAR(6%) Capacitor 3Ø 60Hz 3.6kV 100kVAR Capacitor 3Ø 60Hz 3.6kV 100kVAR The rated voltage of reactor and capacitor are different, and, the ratio of resistance is 5.04% (not 6%) The rated voltage of capacitor and reactor are matched, the ratio of resistance is 6%. 7
10 High voltage power capacitors Calculation of the ratio of capacitance and reactance (3300V/ 3)x 6%=114.3V (3600V/ 3)x 6%=124.7V XL=V 2 /Q= /(6kVAR/3)=6.532 XL=V 2 /Q= /(6kVAR/3)=7.775 XC=V 2 /Q= /100kVAR=129.6 XC=V 2 /Q= /100kVAR=129.6 XL/XC=6.532/129.6=5.04% XL/XC=7.775/129.6=6% For selection of reactor rated voltage, the key is to make sure reactor rated voltage shall be matched with capacitor's. D. Instructions for the operations (1) Capacitor shall be operated with ambient temperature -25 ~ +40 (2) Lifting the capacitor by the bushing and use copper busbar for parallel connection is prohibited. (3) 8 cm space for side-by-side installation is needed for better heat dissipation. (4) Bushing and terminals should be well cleaned to keep in good insulation level; Maintenance is allowed after power has been cut-off for 5 min. (5) Harmonic level in the circuit shall be considered as a factor for decision on the voltage withstand of the capacitors. (6) Application in the automatic power factor correction panel with frequent switching, reactor is highly recommended to be connected in series with each step of capacitor switching and to raise the voltage withstand level of the capacitors. (7) To prevent the voltage overlap and damage to the capacitors, capacitor shall only be connected with power after 5 min. the capacitor switch- off. (8) Capacitor shall be connected in series with reactor to suppress the surge and harmonic. If reactor is connected, the capacitor terminal voltage will increase, a. If 6% reactor is connected, voltage increase on the capacitor is 6.4%. b. If 13% reactor is connected, voltage on the capacitor is 15%. (9) Shihlin capacitors is not using Non- flamable mineral oil. However, each element in Shihlin internal fused capacitor is protected by using individual fuse, which conform to international standard. For conventional type, capacitor shall be protected by using the external fuse to ensure the safety without any fire accident. 8
11 E. Maintenance guidelines (1) Capacitor shall be operated with ambient temperature no more than 40 ; In the beginning of capacitor start to operate, it is essential to well monitor the ambient temperature stability, ventilation, the heat dissipation of the adjacent and ambient temperature rise. That is, capacitors shall be installed in a location with good ventilation. (2) The connection of the protection devices/switches of the capacitors shall be maintained in good situation, the melt-down of the fuse because of the bad connection shall be avoided. (3) Monitor the voltage and current; the over-voltage will increase the capacitance of the capacitor and cause the temperature rise, damage the insulation of the capacitor, and, affect the capacitor service life to decrease. High voltage power capacitors (4) Check the bushing and the tank, if oil-leakage on the bushing (cracks on the bushing) is found, capacitor shall be well packed and send back for repair. Immediate repair is needed once oil-leakage is occurred to prevent moisture from flowing-in and cause the deterioration of the insulation oil. (5) Check if any spark/flash is caused by bad connection on the joint between the terminals and lead-wire, fuses are often melted down during the operation because of bad connection. (6) Check if there is anything is wrong with the capacitors. (7) After installation, thick dust may accumulate/cover on the surface of the bushing, and the earth-leakage may occur by the bad insulation if absorb the moisture from the air, and, even cause the protection device tripping. The clean-out of the dust only can be done after discharging for 5 min. through the earthing terminal to prevent the electrical shock. (8) Resistance (T-C ) between the terminal and the tank/case shall always keep greater than 1000M. Measurement of Capacitance (1) After capacitor fully dischaged, measured by using "direct reading capacitance meter". (2) Measurement method U-V= a, V-W= b, U-W= c measuring for 3 times. Total capacitance = ( a + b + c ) x 2 3 The calculated value shall be totally matched with the rated capacity. Direct reading capacitance meter 9
12 . Low Voltage Power Capacitors 10
13 Features Material - Metallized polypropylene film (MPP) with good voltage-withstand and with good dielectric properties, which is capable of self-healing is employed as an dielectric, if any damage is caused on the dielectric, the metallized electrode around the damage point will be immediately vaporized and, then, the ability of insulation is restored, capacitor will continue to operate functionally. Compact size with light weight, easy for installation and transportation. Low losses on the dielectric and low temperature rise with long service life which is cost efficient in the investment. Conform to GB, JIS, IEC standard, the individual subsidiary capacitor which built inside are all equipped with an internal safety devices (UL certified). The safety device will be activated if any fault is developed on the capacitor or the circuit to cut off the power, prevent the potential secondary damage to the equipment. Equipped with the discharge resistor, ensure the safety in all kind of application and the safety of maintenance. Sealed with the eco-friendly flame-resistant epoxy resin (UL-94V0), there is no possibility of oil-leakage during operation, avoid the environment pollution. Specifications and performances For power factor improvement used for Indoor application Operation environment: ambient temperature -25 ~ 45, humidity 95%, altitude below 4,000 m. Max. Working Voltage: 110% of rated voltage Max. Working current: 130% of rated current Capacity Tolerance: -5% ~ +10% of rated value Dielectric losses: less than 0.2 W/kVAR Temperature rise: lower than 25 when ambient temperature is lower than 40 Sealing capability: no oil leakage if heated in the tank with constant temperature 70 3 for two hours. Discharge characteristic: built-in internal discharge resistors, terminal voltage will drop to 50 volts or less within one minute after the capacitor has been disconnected. Meet the requirement of GB , JIS C4901 and IEC 831 standard 11
14 A. Cylindrical Self-healing Low Voltage Shunt Capacitors 12
15 Dimensions : Dimensions (mm) Wiring terminals A B C D E F M M ØB±2 Pressure protection device D±5 NP. C±2 ØE±1 ØA±1 ØF±1 Cat. No. Rated capacity (kvar) Rated current (A) Rated capacity (µf) Dimensions (mm) A C 1Ø, 50Hz, 250V SH-R250502R5S SH-R250503S SH-R250505S SH-R250507R5S SH-R250510S SH-R250512R5S
16 Cat. No. 3Ø, 50Hz, 250V Rated capacity (kvar) Rated current (A) Rated capacity (µf) Dimensions (mm) A C SH-R250505T SH-R250507R5T SH-R250510T SH-R250512R5T SH-R250515T SH-R250517R5T Ø, 50Hz, 440V SH-R440502R5S SH-R440503S SH-R440505S SH-R440507R5S SH-R440510S SH-R440512R5S SH-R440515S SH-R440520S SH-R440525S Ø, 50Hz, 440V SH-R440502R5T SH-R440503T SH-R440505T SH-R440507R5T SH-R440510T SH-R440512R5T SH-R440515T SH-R440516T SH-R440518T SH-R440520T SH-R440525T SH-R440530T
17 Cat. No. 3Ø, 50Hz, 480V Rated capacity (kvar) Rated current (A) Rated capacity (µf) Dimensions (mm) A C SH-R480502R5T SH-R480503T SH-R480505T SH-R480507R5T SH-R480510T SH-R480512R5T SH-R480515T SH-R480516T SH-R480518T SH-R480520T SH-R480525T SH-R480530T Ø, 50Hz, 525V SH-R525502R5S SH-R525503S SH-R525505S SH-R525507R5S SH-R525510S SH-R525512R5S SH-R525515S SH-R525516S SH-R525518S SH-R525520S SH-R525525S SH-R525530S Ø, 50Hz, 525V SH-R525502R5T SH-R525503T SH-R525505T SH-R525507R5T SH-R525510T SH-R525512R5T SH-R525515T SH-R525516T SH-R525518T SH-R525520T SH-R525525T SH-R525530T
18 B. Oval-shaped Self-healing Low Voltage Shunt Capacitors 16
19 Features Material - Metallized polypropylene film (MPP) with good voltage-withstand and with good dielectric properties, which is capable of self-healing is employed as an dielectric, if any damage is caused on the dielectric, the metallized electrode around the damage point will be immediately vaporized and, then, the ability of insulation is restored, capacitor will continue to operate functionally. Capacitor is sealed with aluminum case, due to the dielectric directly contact with the case, heat is transmitted out side of capacitor, temperature rise is relatively low with long service life. Employ the transparent protective cover, it is easy to check the connection of the terminal and lead wire, prevent spark/flash due to the bad connection. Double protection is ensured. Fuse is embedded into each unit of elements and the whole capacitor unit to ensure the safety and prevent the accident occurrance. Low losses on the dielectric and low temperature rise with long service life which is cost efficient in the investment. Equipped with the discharge resistor, ensure the safety in all kind of application and the safety of maintenance. Sealed with the eco-friendly flame-resistant epoxy resin, there is no possibility of oil-leakage during operation, avoid the environment pollution. Dimensions - SH-E series Figure 1 51±1 B C D 206±1 228±1 A 17
20 Figure 2 140±1 124±1 3Ø, 50Hz, 440V Cat. No. SH-E440510T System Voltage (VAC) 120±1 150±1 Rated Voltage (VAC) 30 B Capacity Current Dimensions (mm) kvar µf (A) A B C D A (Kg) C D Drawing Figure 1 SH-E440515T Figure 1 SH-E440516T Figure SH-E440520T Figure 1 SH-E440525T Figure 2 SH-E440530T Figure 2 Dimensions - SH-ES series Figure 3 228±2 210±2 B±5 76± 5 274± 2 C±2 D±5 L9.5 W7.0 A±2 Figure 4 60±0.5 40±1 B±2 274± 2 C±2 D±5 24±1 A±2 18 3Ø, 50Hz, 450V Cat. No. System Voltage (VAC) Rated Voltage (VAC) Capacity Current Dimensions (mm) kvar µf (A) A B C D (Kg) Drawing SH-ES450510T Figure 3 SH-ES450520T Figure 3 SH-ES450525T Figure 4 SH-ES450530T Figure 4 SH-ES450540T Figure 4
21 Nominal voltage 220V, 1 phase (2 terminals) Cat. No. SH-KMJ250502R5S Rated Voltage (VAC) Capacity Current Dimensions (mm) Terminal kvar µf (A) A B C D Drawing M Figure 1 SH-KMJ250505S M Figure 1 SH-KMJ250507R5S M Figure SH-KMJ250510S M Figure 1 SH-KMJ250512R5S M Figure 1 SH-KMJ250515S M Figure 1 Nominal voltage 220V, split-phase compensation capacitors (4 terminals) Cat. No. Rated Voltage (VAC) Capacity Current Dimensions (mm) Terminal kvar (*) µf (A) A B C D Drawing Note SH-KMJ250502R5S-3 2.5* M Figure kvar * 3 SH-KMJ250503R33S * M Figure kvar * 3 SH-KMJ250505S * M Figure 1 5 kvar * 3 SH-KMJ250506R67S * M Figure kvar * 3 SH-KMJ250507R5S-3 7.5* M Figure kvar * 3 * There are 3 individual capacitors are built in one split-phase compensation capacitors. Nominal voltage V, 3 phase compensation capacitors (3 terminals) Cat. No. Rated Voltage (VAC) Capacity Current Dimensions (mm) Terminal kvar µf (A) A B C D Drawing Application SH-KMJ440505T M Figure 1 System voltage: SH-KMJ440510T M Figure 1 380V or 440V; capacitor rated SH-KMJ440515T M Figure 1 voltage 440V or above SH-KMJ440518T M Figure 1 * SC controlled by APFR or parallel SH-KMJ440520T M Figure 1 connected SC or high harmonic in SH-KMJ440525T M Figure 2 the circuit * SR 6%/7% is SH-KMJ440530T M Figure 2 connected in series 19
22 C. Dry type explosion proof Capacitors 20
23 Features The housing of the capacitor is made of high-tensile steel and filled with fire-resistant vermiculite. In the event of any failure, the internal protection units will immediately activated to cut off the power. However, if the energy (heat) released is substantial when failure occurs, vermiculite will function to isolate the air from flow-in and prevent get on fire. And, moreover, being able to absorb the impact from the possible explosion, avoid the distortion of the steel housing and the possible accidence. Safety unit (protection device) is built in each of the individual capacitor inside Filled with vermiculite Each unit capacitor is protected by a aluminum case. sealed with epoxy resin Double secured protection Dimension Protective cover W11 x L15 W11 x L15 C D B A M8 21
24 3Ø, 50Hz, 260V Cat. No. SHS260510T System Voltage (VAC) Rated Voltage (VAC) Capacity Current Dimensions (mm) kvar µf (A) A B C D SH-S260530T (Kg) SH-S260515T SH-S260520T SH-S260525T SH-S260535T SH-S260540T SH-S260545T SH-S260550T Application System voltage: 220V * SC controlled by APFR or parallel connected SC * SR 6% is connected in series * High harmonic in the circuit causing voltage increase 3Ø, 50Hz, 440V Cat. No. System Voltage (VAC) Rated Voltage (VAC) Capacity Current Dimensions (mm) kvar µf (A) A B C D SH-S440535T (Kg) Application SH-S440505T System voltage: 380V or 440V SH-S440510T * SC controlled by APFR or parallel SH-S440515T connected SC * SR 6% is connected SH-S440520T in series * Low harmonic in SH-S440525T the circuit causing slight voltage SH-S440530T increase SH-S440540T SH-S440545T SH-S440550T SH-S440560T Connection with SR 6% is highly recommended SH-S440570T SH-S440575T
25 3Ø, 50Hz, 480V Cat. No. System Voltage (VAC) Rated Voltage (VAC) Capacity Current Dimensions (mm) kvar µf (A) A B C D (Kg) Application SH-S480510T System voltage: 380V or 440V SH-S480515T * SC controlled by APFR or parallel connected SC SH-S480520T * SR 7% is connected in series SH-S480525T * High harmonic in the circuit causing SH-S480530T voltage increase SH-S480535T SH-S480540T SH-S480545T SH-S480550T SH-S480560T SH-S480570T SH-S480575T Connection with SR 7% is highly recommended SH-S480580T SH-S480590T SH-S T Ø, 50Hz, 525V Cat. No. System Voltage (VAC) Rated Voltage (VAC) Capacity Current Dimensions (mm) kvar µf (A) A B C D (Kg) Application SH-S525510T System voltage: 380V or 440V * SC controlled by SH-S525515T APFR or parallel connected SC SH-S525520T * SR 7% is connected in series SH-S525525T * High-degree harmonic in the circuit causing SH-S525530T voltage increase SH-S525535T SH-S525540T SH-S525545T SH-S525550T SH-S525560T SH-S525570T SH-S525575T Connection with SR 7% is highly recommended SH-S525580T SH-S525590T SH-S T
26 D. Anti-harmonic Capacitor 24
27 Development Background With the rapid development of science technology and automation in the recent years, the electronic component is widely employed in the industrial which result in the generation of harmonics in the circuit. Harmonic distortion increase the interference with the communication and operation of the facilities and, furthermore, increase the risk of causing any accident during the operations. In view of the degradation of the power quality level and efficiency, the development of the capacitor is consequently presented with more care for the improvement of the capacitor failure. In order to reduce the impact of harmonic distortion, Shihlin has developed a new anti-harmonic capacitor to satisfy the customer's special requirement to avoid the risk of accident. Features of the anti-harmonic capacitors 1. Facilities are well protected from being affected by the harmonic distortion. 2. To keep the facility operating in good condition under the poor power supply level. 3. Ensure no damage is being made during the operation. High quality High safety Cost efficient 25
28 Dimension W11 L15 A A+30 A+60 B C D Earthing terminal 3Ø, 50Hz, 525 / 760 V Cat. No. SH-H525/760510T System Voltage (VAC) Rated Voltage (VAC) Capacity Current Dimensions (mm) kvar µf (A) A B C D SH-H525/760530T SH-H525/760535T (Kg) SH-H525/760515T SH-H525/760520T SH-H525/760525T SH-H525/760540T SH-H525/760545T SH-H525/760550T SH-H525/760560T
29 E. Low voltage split-phase compensation capacitor 27
30 Low voltage split-phase compensation capacitor 3Ø, 50Hz, 250V Ellipsoid capacitor Cat. No. SH-E S-3 System Voltage (VAC) Rated Voltage (VAC) Capacity (kvar) Split-phase capacity C1 C2 C3 Dimensions (mm) kvar (A) kvar (A) kvar (A) A B C D Note M kvar * 3 SH-E25053R33S M kvar * 3 SH-E250505S M kvar * 3 SH-E250506R67S M kvar * 3 SH-E250507R5S M kvar * 3 Dimension Protective cover M 6 screw B 5 C 5 D 5 A 2 Fastener 3Ø, 50Hz, 250V (High safety type) Cat. No. System Voltage (VAC) Rated Voltage (VAC)) Capacity (kvar) Split-phase capacity Dimensions (mm) C1 C2 C3 kvar (A) kvar (A) kvar (A) A B C D Note SH-S250505S M kvar * 3 SH-S25057R5S M kvar * SH-S250510S M kvar * 3 SH-S250515S M kvar * 3 Dimension Protective cover W11 x L15 B C A Earthing terminal 28
31 F. Series reactor for capacitors G. SH-XD1 type current-limiting inductor 29
32 F. Series reactor for capacitors Features Low loss dissipation Low noise High capability of suppress surge current Specification and performance Standard : Insulation : Phase : Rated frequency : System voltage : Rated voltage : Capacitor's capacity : Reactor capacity : Ambient temperature : Temperature rise : IEC H class (180 ) single phase, 3 phase 50/60Hz 220V / 380V 260V / 440V / 480V / 525V 2.5 ~ 100kVAR High capability of anti-harmonic Natural cooling Normal close temperature protector (optional offer) 6%, 7%, 13% and 14% of capacitor's capacity (according to customer's requirement) 50 or less; shall not operate over 24hr at an average ambient temperature % of rated continuous current, coil winding temperature rise shall not exceed 120 (resistance method) Capacity tolerance : -5% ~ +10%. Maximum permissible current : the 5th harmonics current shall not exceed 35% and the synthetic current shall not exceed 120% of the rated continuous current. Dimensions : (wiring terminal can be customized to be set at different point/side of the reactor) H E L 4-D hole F W H class dry type series reactor 30 Cat. No. 1Ø, 50Hz, 250V, 6% capacitor rated capacity (kvar) capacitor rated capacity (µf) Inductance (mh) Dimensions (mm) L x W x H Dimensions (mm) E F SH-SR25005S SH-SR25010S SH-SR25015S SH-SR25020S SH-SR25025S SH-SR25030S SH-SR25035S SH-SR25040S
33 Cat. No. 3Ø, 50Hz, 250V, 6% capacitor rated capacity (kvar) capacitor rated capacity (µf) Inductance (mh) Dimensions (mm) L W H Dimensions (mm) E F SH-SR25005T SH-SR25010T SH-SR25015T SH-SR25020T SH-SR25025T SH-SR25030T SH-SR25035T SH-SR25040T SH-SR25050T Ø, 50Hz, 440V, 6% SH-SR44005T SH-SR44010T SH-SR44015T SH-SR44020T SH-SR44025T SH-SR44030T SH-SR44035T SH-SR44040T SH-SR44045T SH-SR44050T SH-SR44060T SH-SR44070T SH-SR44075T Ø, 50Hz, 480V, 7% SH-SR48007R5T SH-SR48010T SH-SR48015T SH-SR48020T SH-SR48025T SH-SR48030T SH-SR48035T SH-SR48040T SH-SR48045T SH-SR48050T SH-SR48060T SH-SR48070T SH-SR48080T SH-SR480100T
34 Cat. No. 3Ø, 50Hz, 525V, 7% capacitor rated capacity (kvar) capacitor rated capacity ( F) Inductance (mh) Dimensions (mm) L W H Dimensions (mm) E F SH-SR52507R5T SH-SR52510T SH-SR52515T SH-SR52520T SH-SR52525T SH-SR52530T SH-SR52535T SH-SR52540T SH-SR52545T SH-SR52550T SH-SR52560T SH-SR52570T SH-SR52580T SH-SR525100T Ø, 50Hz, 525V, 7% SH-SR52508R6S SH-SR52510R4S SH-SR52512R9S SH-SR52515R5S SH-SR52517R3S SH-SR52520R7S SH-SR52525R8S SH-SR52531S SH-SR52534R5S SH-SR52541R3S SH-SR52551R7S SH-SR52562S SH-SR52568R9S SH-SR52582R7S SH-SR52586S SH-SR525103R3S SH-SR525124S SH-SR525137R8S SH-SR525165R4S SH-SR525172R3S SH-SR525206R7S
35 G. SH-XD1 type current-limiting inductor Applicable to suppress/limit the in-rush current when switch-on the capacitors in the reactive power compensation bank. One phase one current-limiting inductor for protection of the capacitor. During the wiring of the current-limit inductor in a three phase circuit, the way of the connection on the central phase shall be made reversely to the other two phases. For example, if X1 terminal of the current-limit inductor on the side is wiring the feeding line, then, wiring the feeding line for the one on the central shall be X2. 8 mm space for side-by-side installation is needed for better heat dissipation. Catalogue designation SH - X D 1 - Capacitor capacity Series Inductor Current limiting Catalogue designation SH = Shihlin Electric Cat. No. Capacitor Capacity (kvar) SH-XD Rated Voltage (V) Rated Current (A) SH-XD SH-XD SH-XD SH-XD SH-XD SH-XD SH-XD SH-XD SH-XD SH-XD SH-XD Current-limiting (In x) 50 Dimension (mm) L W H
36 H. Contactors for capacitor switching MEMORY :SING CH 1 LEV 200mV CH 1 CH 1 50ms X2 csr : Aor B A: B: B A:V= V MEMORY :SING CH 1 LEV 2. 5mV CH 1 CH 1 50ms X1 csr : Aor B A: B: B A : v= mV SHIFT 2V X1 3.0DIV 5V X1 3.0DIV 50mV SHIFT X2 3.0DIV 500mV X1 3.0D I V Current curve - use regular contactor Suppressed current = 6V / mV 355 (In x) Current curve - use capacitor-switching contactor Cat. No. Capacitor capacity (kvar / A) 220~240V 400~440V 660~690V SC-P12 6.7/ /16 18/15 SC-P16 8.5/ /22 24/20 SC-P20 10/26 20/26 30/25 SC-P25 15/39 25/33 36/30 SC-P33 20/ /44 48/40 34 SC-P45 25/66 45/59 58/49 SC-P60 35/92 60/86 75/63
37 I. Ultra-violet (UV) light capacitor Dimension F 5 E 2 L9.5 W7.0 B 2 COM C1 C2 C3 C4 C 2 D 5 COM A 2 Specification and performance Ambient temperature 25 ~ +45 Capacity tolerance -5% ~ +10% Loss dissipation tan( )% 0.3% or less Max. Working Voltage Max. Working current Altitude 110% of rated voltage 130% of rated current 2000m Voltage withstanding 3.5kVAC (Terminal - Case) Features - Pressure-sensitive safety device is built-in, ensure the high safety performance. - Each unit of the elements directly contact with the case, heat is transmitted out side of capacitor, temperature rise is relatively low. - Terminals are protected from short-circuit with the use of the insulation sleeve. Standard Conform to IEC831, GB12747, JISC4901, CNS1179 / 3738, UL 810 Specification Dimension (mm) A B C D E F Lead-wire terminal 1Ø 50/60Hz 1500VAC µF M8 1Ø 50/60Hz 1500VAC µF M8 1Ø 50/60Hz 1500VAC µF M8 1Ø 50/60Hz 1500VAC µF M8 1Ø 50/60Hz 1500VAC µF M8 1Ø 50/60Hz 1500VAC µF M8 1Ø 50/60Hz 1500VAC µF M8 35
38 Dimension N C1 C2 C3 C 5 B 5 D COM 30 C1 C2 C3 A 2 E 2 F 2 Specification and performance Ambient temperature -25 ~ +45 Capacity tolerance -5% ~ +10% Loss dissipation tan( )% Max. Working Voltage Max. Working current Altitude Automatic discharging 0.3% or less 110% of rated voltage 130% of rated current No more than 2000m above sea level No. However, customization available Voltage withstanding 3.5kVAC (Terminal - Case) Features - Pressure-sensitive safety device is built-in, ensure the high safety performance. - Each unit of the elements directly contact with the case, heat is transmitted out side of capacitor, temperature rise is relatively low. - Terminals are protected from short-circuit with the use of the insulation sleeve. Standard Conform to IEC831, GB12747, JISC4901, CNS1179 / 3738, UL 810 Specification Dimensions (mm) A B C D E F Lead-wire terminal 1Ø 50/60Hz 1400VAC µF M8 1Ø 50/60Hz 1400VAC µF M8 1Ø 50/60Hz 1600VAC µF M8 1Ø 50/60Hz 1600VAC µF M8 1Ø 50/60Hz 1800VAC µF M8 1Ø 50/60Hz 1800VAC µF M8 1Ø 50/60Hz 1800VAC µF M8 1Ø 50/60Hz 2000VAC µF M8 1Ø 50/60Hz 2000VAC µF M8 1Ø 50/60Hz 2000VAC µF M8 1Ø 50/60Hz 2000VAC µF M8 36 1Ø 50/60Hz 2800VAC µF M8
39 J. Supplementary accessories 37
40 Reactive power regulator Catalogue designation SH - JK W D Output mode - D: DC 12V output J: relay Output Output terminal #- 6/8/10/12/16/22 ways Function code Blank- basic type A: anti-harmonic type B: communication interface W: 3 - phases compensation JK series Catalogue designation SH = Shihlin Electric Category Relay output DC12V output Basic type SH-JKW-4J SH-JKW-6J SH-JKW-8J SH-JKW-10J SH-JKW-12J SH-JKW-16J SH-JKW-4D SH-JKW-6D SH-JKW-8D SH-JKW-10D SH-JKW-12D SH-JKW-16D Anti-harmonic type SH-JKWA-12J SH-JKWA-12D Communication interface available SH-JKWB-12J SH-JKWB-12D Technical parameters Rated working voltage AC 380V 20% class 0.5 Analogue voltage output AC 380V 20% class 0.5 Analogue current output AC 0 ~ 5A class 0.5 Rated frequency 50Hz 5Hz class 1.0 Sensitivity 100mA class 1.0 (reactive power ) Power consumption 12VA Frequency 0.1Hz Dimension Installation dimension Ambient temperature Altitude 144 x 144 x 110 mm 138 x 138 mm -25 ~70 No more than 2000m above sea level Relative humidity 90% Environment conditions No conductive particles 38
41 Split-phase Reactive Power Regulator Catalogue designation SH - JK F D Output mode - D: DC 12V output J: relay output Output terminal # - 15 /16 ways Function code Blank- basic type A: anti-harmonic type B: communication interface F: Phase-spliting compensation + 3 phase compensation JK series Catalogue designation SH = Shihlin Electric Category Relay output DC12V output Basic type SH-JKF-16J SH-JKF-16D Anti-harmonic type SH-JKFA-16J SH-JKFA-16D Communication interface available SH-JKFB-15J SH-JKFB-15D Technical parameters Rated working voltage AC 220V 20% class 0.5 Analogue voltage output AC 220V 20% class 0.5 Analogue current output AC 0~5A class 0.5 Rated frequency 50Hz 5Hz class 1.0 Sensitivity 100mA class 1.0 (reactive power ) Power consumption 12VA Frequency 0.1Hz Dimension Installation dimension Ambient temperature Altitude 144 x 144 x 110 mm 138 x 138 mm -25 ~70 No more than 2000m above sea level Relative humidity 90% Environment conditions No conductive particles 39
42 Low voltage Complex Switching Catalogue designation SH - SFK C D Control mode: D: DC 3: 3 phase compensation 2: phase-spliting compensation(phase A, B, C in one unit) C: for capacitor switching 55: rated current 55A 45: rated current 45A SFK: compound switch Catalogue designation SH = Shihlin Electric Category Cat. No. Rated current (A) Capacitor capacity (kvar) 3 phase compensation Phase-spliting compensation SH-SFK55C-3D 55 5~30 SH-SFK85C-3D 85 31~50 SH-SFK55C-2D 55 3 x 2~10 SH-SFK85C-2D 85 3 x 11~15 Technical parameters Rated working voltage AC 220V 20% (Independent power supply) Making time 3 sec Ambient temperature -25 ~70 System voltage AC 380V 20% Breaking time 2 sec Altitude No more than 2000m Rated current 45A / 55A Making time after breaking Rated frequency 50Hz 5Hz Dimension 164 x 114 x 88 mm Controlling voltage 5~12VDC/10mA Installation dimension 2 sec Relative humidity No more than 90% 150x96mm Power consumption 4 W Insulation level 10M Environment conditions Harmonic Mechanical life of magnetic latching relay No conductive particles Voltage harmonic distortion 8% 10 6 ops 40
43 Low voltage dynamic regulator Catalogue designation SH - STK - G G: 3 phase compensation F: phase-spliting compensation 55: rated current 55A 85: rated current 85A 120: rated current 120A STK: dynamic voltage regulator Catalogue designation SH = Shihlin Electric Category Cat. No. Rated current (A) 3 phase compensation Capacitor capacity (kvar) Capacitor connection SH-STK-55G ~ 30 SH-STK-85G ~ 50 SH-STK-120G ~ 75 Phase-spliting compensation SH-STK-55F 55 (3 x 7) ~ (3 x 10) Y SH-STK-85F 85 (3 x 7) ~ (3 x 17) Y SH-STK-120F 120 (3 x 15) ~ (3 x 20) Y Technical parameters Rated working voltage AC 220V 20% Making time 1 sec Ambient temperature -25 ~70 System voltage AC 380V 20% Breaking time 1 sec Altitude No more than 2000m Rated current 55A / 85A / 120A Making time after breaking 1 sec Relative humidity No more than 90% Rated frequency 50Hz 5Hz Dimension 216 x 120 x 178 mm Environment conditions Controlling voltage 5~12VDC/10mA Installation dimension Power consumption 4 W Insulation level 10M 198 x 36 mm Harmonic Mechanical life of magnetic latching relay No conductive particles Voltage harmonic distortion 8% 10 6 ops 41
44 K. Capacitors for AC motor & UPS MPP Motor running capacitor - RO series RATING AND DIMENSIONS: VAC Voltage range (VAC) F 180 ~ ~ ~ ~ ~ ~ ~ 550 µm µm µm µm µm µm µm A H A H A H A H A H A H A H N.P A±2 Max 15 H±2 42 Note: 1. Two terminal options is available for Capacitors with plastic case, a. wiring with lead-wire which is UL certified PVC wire or b. AMP quick-connect terminals. 2. Capacitor is filled out with flame retardant EPOXY resin. 3. RO series capacitors are cur & UL certified (File No. E202431)
45 MPP Motor running capacitor (Safety device built-in) - Power factor correction RATING AND DIMENSIONS: VAC Voltage range (VAC) F 180 ~ ~ ~ ~ ~ ~ ~ ~ 600 µm µm µm µm µm µm µm µm A H A H A H A H A H A H A H A H " quick connect terminal A±3 NP A±1 Max 15 H±2 Note: Capacitors with safety device built-in are certified 1. UL (fault current 10000AFC) 2. cur & UL certified (File No. E105535) 43
46 44 L. Capacitance coefficient table Cos 1 : Power factor before improvement Cos 2 : Power factor to be improved Cos 1 \ Cos Unity Example of application : factory load : 500kW Power factor before improvement : Cos 1 = Power to be improved : Cos 2 = Required capacitor capacity = 500 x = 500KVAR Conversion formula for KVAR and uf : C(µf)= KVAR x fe In the formula, C: KVAR = capacity value (At 50Hz) 2 f =314 F Hz (frequency value Hz) (At 60Hz) 2 f =377 E=V (rated voltage V) 0.143
47
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