Installation. Symmetra MW II kw 480 V. UPS Summary Normal Normal

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1 UPS Summary ~ ~ Normal Normal Installation Symmetra MW II 600 kw 480 V

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3 Contents Safety... IMPORTANT SAFETY INSTRUCTIONS SAVE THESE INSTRUCTIONS Symbols used in this guide Installation safety System Overview...3 UPS Sections Serial number Inverter Sections Control/Input/Output Section External Bypass Static Switch Serial number Electrical Installation...5 Typical UPS Wiring Principle Power wiring overview External disconnection switches Input/Output wiring precautions Ground, AC, and Battery Cables Ground and AC cable connections Battery cable connections Bypass Static Switch Wiring Top cable entry Bottom cable entry Communication cable overview Symmetra MW II 600 kw 480 V Installation 99094E00 i

4 Relay Boards Location of relay boards Communication cables with optional Relay Board Relay board connections Relay board connections Specifications... 7 LowImpedance/HighImpedance Grounding Lowimpedance grounding Highimpedance grounding Electrical Specification Installation Planning Data AC Input DC Input AC Output AC Input External Bypass SSW Heat Dissipation Notes Table Table 306 (National Electrical Code) Recommended cable, bolt, and lug sizes Torque specifications Required Breaker Settings Input and upstream breakers Output and downstream breakers General Specifications 480 V ii Symmetra MW II 600 kw 480 V Installation 99094E00

5 Safety IMPORTANT SAFETY INSTRUCTIONS SAVE THESE INSTRUCTIONS This guide contains important instructions for SYMF600KG that should be followed when handling the UPS, External Bypass Static Switch, Battery Enclosures, and Batteries. Symbols used in this guide Warning: Indicates an electrical hazard, which, if not avoided, could result in injury or death. Caution: Indicates a hazard, which, if not avoided, could result in injury or death. Note: Indicates important information. Indicates that more information is available in the subject. Primary safety ground symbol. Ground symbol. Installation safety EPO Press the EPO (Emergency Power Off) button to switch off all AC and DC power supply to connected equipment in the room. The EPO is typically located on a wall in the room in which the UPS is installed. See Communication cable overview section for information on how to wire the UPS to the EPO. Warning: Before you start the installation, verify that all AC and DC power source breakers are in the open position. Warning: Only personnel trained in the construction and operation of the equipment, and the electrical and mechanical hazards involved, must install or remove system components. Warning: Do not use high voltage testing equipment as it will destroy the electronic circuits in the units. Symmetra MW II 600 kw 480 V Installation 99094E00

6 Caution: The system is equipped with an optional autostart function enabling the system to start without any warning when power is applied. Caution: All wiring must be in accordance with applicable national and/or local electrical codes. This unit contains components that are sensitive to electrostatic discharge (ESD). Follow proper ESD procedures to avoid severe damage to electronic components. Note: This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to Part 5 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the Installation Manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference, in which case the user will be required to correct the interference at his own expense. Symmetra MW II 600 kw 480 V Installation 99094E00

7 UPS Summary ~ ~ Normal Normal System Overview UPS Sections The UPS system consists of two 800 kw Inverter Sections, a Control/Input/Output Section and an External Bypass Static Switch section. Serial number The serial number is stated on the type label behind the finishing panel above the display unit. Remove finishing panel to see serial number. Inverter Sections The Inverter Sections regulate the UPS output and operates from battery power in the event of utility input loss. Control/Input/Output Section The Control/Input/Output Section controls and monitors the UPS and contains the input/output terminations. 03 mm/ 80 in 067 mm/4 in Inverter Section Width: 690 mm/66.5 in Control/Input/Output Section Width: mm/83 in Inverter Section Width: 690 mm/66.5 in Total width of UPS sections: 549 mm/6 in Weight: Without Power Modules: 6375 kg/408 lb With Power Modules: 7740 kg/708 lb Symmetra MW II 600 kw 480 V Installation 99094E00 3

8 ~ ~ Normal External Bypass Static Switch The External Bypass Static Switch (External Bypass SSW) transfers the load (manually or automatically) from the UPS to an alternate source without interrupting the supply to the load. 03 mm/80 in 067 mm/4 in Serial number MW External Bypass Static Switch Width: 04 mm/39.9 in Weight: 636 kg/399 lb The serial number is stated on the type label behind the finishing panel above the display unit. Remove finishing panel to see serial number. 4 Symmetra MW II 600 kw 480 V Installation 99094E00

9 Electrical Installation Typical UPS Wiring Principle Power wiring overview See separate guide on parallel operation for wiring overview in parallel systems. AC Mains Input Lugs 480 V, 3PH, 3W & GND Q Q5 Battery Battery Breakers Q7 Battery Q8 5 UPS 7 SSW 7 External Battery Q Q6 KK 4 Q4 Q3 KK 4 4 LBB KK V, 3PH, 3W & GND Output Load Lugs SOURCE AND AC CABLING MUST BE 480 VOLT, WYE CONNECTED, 3 PHASE, 3 WIRE + GROUND (CONTACT APC IF OTHER). DASHED LINES BETWEEN UNITS ( ) REPRESENT AC/DC CABLING PROVIDED BY OTHERS. ALL AC CIRCUIT BREAKERS ARE 00% CONTINUOUS DUTY RATED WITH 4 VOLT DC SHUNT TRIPS AND A/B AUXILIARY CONTACTS. OPTIONAL COMPONENTS SEPARATE CONDUITS. TWO WIRE + GROUND UPS INPUT AND OUTPUT CONDUCTORS MUST BE IN SEPARATE AMPERE RATINGS. UPS AND STATIC BYPASS WITHSTAND 00,000 SYMMETRICAL AMPERES. INSTALLATION MUST COMPLY WITH ALL APPLICABLE NATIONAL AND LOCAL CODES. Symmetra MW II 600 kw 480 V Installation 99094E00 5

10 External disconnection switches Warning: The UPS has no builtin disconnect devices to switch off external AC (Q and Q5) and DC (Q7 and Q8) input power. Ensure that the disconnect devices are available as separate components for this installation. Note: The installer must provide each external disconnect device for this UPS system with labels displaying the following text: Isolate the Uninterruptible Power Supply (UPS) as instructed in the User Guide before working on the circuit. Input/Output wiring precautions Warning: Only personnel trained in the construction and operation of the equipment, and the electrical and mechanical hazards involved, must install or remove system components. Warning: Supply the UPS from a dedicated, grounded 3wire Wye service. Caution: All wiring must be in accordance with applicable national and/or local electrical codes. Note: Use only ULapproved cables and cable lugs. Use only stranded copper conductors. Refer to National Electrical Code for wiring and protection. See Recommended cable, bolt and lug sizes. 6 Symmetra MW II 600 kw 480 V Installation 99094E00

11 X008A X008B X00 X007 X0 X0 X0 X0 X03 X04A X405 X07 X04B Normal Normal Ground, AC, and Battery Cables Ground and AC cable connections Top view of top cover For battery conduits For AC and ground conduits For AC and ground conduits UPS Summary ~ ~ L IN L OUT L IN L OUT L3 IN L3 OUT Symmetra MW II 600 kw 480 V Installation 99094E00 7

12 Note: No drilling or cutting should take place over the top of the UPS.. Take the top covers that were put aside after the installation of Control Wires and drill holes for AC, ground and Battery conduits in areas shown.. Refit the covers and install the conduits. 3. Feed the AC and ground cables through the conduits in the Control/Input/Output Section. Hole distance DC Hole distance AC Hole distance grounding Cable lug Busbar Cable lug Busbar Cable lug Busbar.75 in / mm.38 in / 35.8 mm.75 in / mm fl 3.75 in / mm.8 in / 58 mm.75 in / mm fl 3.75 in / mm.64 in / 67 mm.75 in / mm fl 3 4. Connect the ground cables. 5. Connect AC IN cables to normal power and bypass power. 6. Connect AC OUT cables. Battery cable connections Warning: Make sure that the battery breakers are open (OFF) prior to running the cables. Caution: For battery installation and maintenance instructions, refer to the battery manufacturer s installation manual. Caution: Overcurrent protection for the battery circuit is required by code. The minimum DC voltage rating of the battery supply overcurrent protection device is 500 V. Note: Overcurrent protection for the battery circuit is required by code. Note: BAT and BAT cables MUST be run in separate conduits. 8 Symmetra MW II 600 kw 480 V Installation 99094E00

13 X008A X008B X00 X007 X0 X0 X0 X0 X03 X04A X405 X07 X04B Normal Normal UPS Summary ~ ~ BAT + BAT BAT BAT +. Feed the battery cables through the conduits.. Connect battery cables to Bat + and Bat. 3. Connect battery cables to Bat + and Bat. Note: The battery cable lugs can be installed on both sides of the busbar. Symmetra MW II 600 kw 480 V Installation 99094E00 9

14 Bypass Static Switch Wiring Warning: Use only manual reset protection as input overcurrent protection. Warning: Overcurrent protection required by code. Warning: The UPS has no builtin disconnect devices to switch off external AC (Q and Q5) and DC (Q7 and Q8) input power. Ensure that the disconnect devices are available as separate components for this installation. Caution: The External Bypass Static is not provided with builtin backfeed protection. Use suitable breakers with a minimum of 0.8 in/0 mm air gap and trip function. The breaker is controlled from the External Bypass SSW and will be tripped in case of backfeed. Note: The installer must provide each external disconnect device for this UPS system with labels displaying the following text: Isolate the Uninterruptible Power Supply (UPS) as instructed in the User Guide before working on the circuit. Note: The installation of the External Bypass Static Switch must comply with local and national codes. Note: Run matched set of phase cables in the same cable run(s). Do not separate phases into different cable runs. For information on cable lugs, cable ratings, overcurrent protection and the disconnection switches, refer to Specifications. 0 Symmetra MW II 600 kw 480 V Installation 99094E00

15 X008A X008B X00 X007 X0 X0 X0 X0 X03 X04A X405 X07 X04B Normal Normal Top cable entry Top view of top cover UPS Summary ~ ~ Top view of input and output L IN L OUT L IN L OUT L3 IN L3 OUT L IN L OUT L IN L OUT L3 IN L3 OUT Side view of grounding busbar.. Loosen the 8 bolts to remove top cover. Note: No drilling or cutting should take place over the top of the UPS.. Drill holes for conduits. 3. Refit the covers and install the conduits. 4. Feed cables through conduits. Connect cables at cable connection points as illustrated. 5. Connect grounding electrode conductor to busbar locations as shown. Symmetra MW II 600 kw 480 V Installation 99094E00

16 X008A X008B X00 X007 X0 X0 X0 X0 X03 X04A X405 X07 X04B UPS Summary ~ ~ Normal Normal Bottom cable entry Top view of bottom cable entry Top view of input and output bottom cable connections. L IN L OUT L IN L OUT L3 IN L3 OUT L IN L IN L3 IN L OUT L OUT L3 OUT.75 in / mm.3 in / 58 mm.75 in / mm. Loosen the 8 bolts to remove bottom cover. Note: No drilling or cutting should take place over the top of the UPS.. Drill holes for conduits. Refit the covers and install the conduits. 3. Feed cables through the conduits. Connect cables at cable connection points as illustrated. 4. Connect grounding electrode conductor to busbar locations as shown. Symmetra MW II 600 kw 480 V Installation 99094E00

17 Communication cable overview External Bypass Static Switch Terminator 0N0765 Maintenance Bypass Panel Relay output Connection plane 0P0957 X34A X77 X3 Q 6 Q 5 X34A X77 X8 X9 0 9 X34B X75 Norm.op 3 4 X70 MBP CAN I/O board 0P4533 X74 Earth fault sensor X C + C Note X6B X7B X6A X7A X30 X8 X9 EMO (Display) Q 4 Q 3 Q Q MBP Breakers X73 Lamps X7 X Note Terminator 0N0765 H3 H4 H5 H6 Q5 4VDC Q6 Shunt trip for back feed protection + External Lamp supply V DCor VDC Max. 50V AC 5A Connection plane 0P0957 X6B X7B X6A X7A UPS Backfeed protection X34A EPO out X77 X3 X30 X8 X9 EMO (Display) External EPO placed on wall Note X34B X34A X73 X77 MBP Breakers X X7 Lamps X9 Norm.op X75 MBP CAN I/O board 0P4533 Relay output Earth fault sensor X X70 X78 X Maintenance Bypass Panel C + C Note Q Q 4VDC Shunt trip X33A EPO out X85 Q7 Q8 3 4 X8 3 4 X80 Battery CAN I/O board X85 ID 0 0P45 X33A X86 X33B H7 3 X83 H X84 X8 Fuse Fuse Fuse3 Fuse Note UVR Q8 + UVR Q7 + Temp sensor NTC + Temp sensor NTC + Note : Contact APC Application Team for correct sizing. Note : H7, H8 = V LED Note 3: Q, Q4 and Q6 are optional. If Q is not present pins 3 and 4 must be shorted on both boards. If Q4 is not present pins 7 and 8 must be shorted on both boards. If Q6 is not present pins and must be shorted on both boards. Symmetra MW II 600 kw 480 V Installation 99094E00 3

18 UPS Summary ~ ~ Normal Relay Boards Location of relay boards Relay boards Communication cables with optional Relay Board Backplane X008A Fan CAN X008A 4 Symmetra MW II 600 kw 480 V Installation 99094E00

19 Relay board connections Relay Function Mode Special Comments Output Common alarm Fail safe Output Normal operation Active on Output 3 Bypass operation Active on Output 4 Battery operation Active on Output 5 V DC out of tolerance Fail safe Output 6 Battery conditon fault Fail safe Battery fault detected by battery monitor Output 7 Maintenance bypass operation Active on Output 8 Mains out of tolerance Fail safe Output 9 Bypass out of tolerance Fail safe Output 0 Output out of tolerance Fail safe Output MCCB open Fail safe Battery breakers open Output System overload Fail safe Output 3 Good utility Active on If UPS goes into bypass, this relay goes on without delay Output 4 Boost charge active Fail safe Output 5 Fan fault Fail safe Output 6 Temperature fault Fail safe Temperature switch active or faulty temperature sensor Input Generator active Master will handle signal Input for indicating that a generator is active. This will be used to reduce the charge power Input Battery room ventilation fault Individual Input for indicating that the ventilation in battery rooms is defect. This will be used to reduce the charge power Input 3 DC Ground Fault Detection Individual Input 4 Reserved for future use Master will handle signal Input 5 Plant clock synchronization Master will handle signal Input for real time clock synchronization Input 6 Power Tie detection Master will handle signal Input from PLC to detect if Power Tie is active Symmetra MW II 600 kw 480 V Installation 99094E00 5

20 Relay Function Mode Special Comments Input 7 Input 8 Reserved for future use Reserved for future use Relay board connections Relay Function Mode Special Comments Output Info level alarm Fail safe Output Warning level alarm Fail safe Output 3 Severe level alarm Fail safe Output 4 Input frequency too high Fail safe Output 5 Input frequency too low Fail safe Output 6 Output 7 Output frequency too high Output frequency too low Fail safe Fail safe Output 8 Bypass source fault Fail safe Output 9 Close Q7 pulse Active on No delay Output 0 Close Q8 pulse Active on No delay Output Power Tie mode active Active on No delay Output Close Q Fail safe No delay Output 3 Output 4 Output 5 Output 6 Input Input Input 3 Input 4 Input 5 Input 6 Input 7 Input 8 Reserved for future use Reserved for future use Reserved for future use Reserved for future use Reserved for future use Reserved for future use Reserved for future use Reserved for future use Reserved for future use Reserved for future use Reserved for future use Reserved for future use 6 Symmetra MW II 600 kw 480 V Installation 99094E00

21 Specifications LowImpedance/HighImpedance Grounding The Symmetra MW is easily integrated into either a lowimpedance (solidly) grounded Wye system, or a highimpedance grounded system. In a lowimpedance grounded system (most common), the power source (utility, generator, or UPS) is solidly grounded. In the event of a downstream ground fault, the fault current will have a path back to the source, and the overcurrent device feeding the faulted part of the installation will trip and isolate the fault. In a highimpedance grounded system, the source is grounded with an impedance (grounding resistor). In the event of a downstream fault, the fault current will be limited by the impedance of the grounding resistor. The value of a highimpedance system is its ability to maintain operation with a given system fault to ground, i.e. the overcurrent device will only trip at linetoline faults or double ground faults. For a highimpedance system to provide enhanced power system reliability and availability, a groundfault monitoring/alarm system is required. Lowimpedance grounding For lowimpedance grounding, verify the presence of the copper midpoint bonding jumper. For location of the jumper, see Ground and AC cable connection in Installation Manual. Connect the output circuit grounding electrode conductor to a grounding electrode in accordance with NEC 999, article 506. Note: Grounding electrode conductor to be supplied by the customer Highimpedance grounding For highimpedance grounding, remove the preinstalled copper midpoint bonding jumper. For location of the jumper, see Ground and AC cable connection in Installation Manual. Install groundfault detection circuit in accordance with NEC 999, article Note: For highimpedance grounding, the installation must include groundfault detection circuitry. From an external grounding resistor, and through a separate conduit, connect a cable to the output circuit grounding bar. Symmetra MW II 600 kw 480 V Installation 99094E00 7

22 Electrical Specification Installation Planning Data Maintenance Bypass Panel Q3 Q5 External Bypass SSW Q6 Optional Service (480V 3phase, 3 wire grounded Wye) Q UPS Q Optional Q4 Optional Output (480V 3phase, 3wire only) Battery Q7 Breaker Q8 Battery Breaker Note: The installation is a typical installation including ancillary equipment, which is available from APC. Note: UPS and External Bypass Static feed must be generated from synchronized sources. Warning: Supply the UPS from a dedicated, grounded, 3wire Wye service. Warning: The UPS has no builtin disconnect devices to switch off external AC (Q and Q5) and DC (Q7 and Q8) input power. Ensure that the disconnect devices are available as separate components for this installation. Caution: Ensure clockwise phase rotation (L, L, L3) of input voltages. Caution: AC and DC disconnect switches and overcurent protection must be included in the installation. Note: All wiring must comply with all applicable national and/or local electrical codes. Note: Max. prospective RMS shortcircuit current on input terminals: 00 ka. 8 Symmetra MW II 600 kw 480 V Installation 99094E00

23 Note: Max. prospective RMS shortcircuit current on battery terminals: 50 ka. AC Input AC Input Input Rating 600 kw/kva Power Factor Input Voltage 480 V Input Frequency 60 Hz Nominal Input Current (note ) 984 A Maximum Input Current (note ) 8 A Input Current Limitation (note 3) 50 A Recommended Cable per phase (notes 4, 6, 7, a, b, c) kcmil DC Input DC Input Nominal Voltage (note 5) I Nom Discharge (note 8) I Max Discharge (note 9) Recommended Cable per pole x 384 V 70 A 556 A kcmil Caution: Overcurrent protection for the battery circuit is required by code. The minimum DC voltage rating of the battery supply overcurrent protection device is 500 V. AC Output AC Output Voltage Current Nom Max (note ) Recommended cable (per phase) 480 V 95 A 406 A kcmil Symmetra MW II 600 kw 480 V Installation 99094E00 9

24 AC Input External Bypass SSW The External Bypass SSW is designed to accommodate a continuous overload of 5%. AC Input External Bypass SSW External Bypass SSW Max Input Current (00% load) 95 A Heat Dissipation Notes 68.8 kbtu/hr (note 0). Nominal (Nom): Input current based on rated load.. Maximum (Max): Input current based on full battery recharge + nominal input voltage + rated load. 3. Current limitation (A) through electronic current limiting is based on full battery recharge + nominal load and 5% input voltage (see Required Breaker Settings ). 4. Input, Output and Battery and Battery circuit cables shall be run in separate conduits or raceways. Cables shall be rated at 600 V as a minimum. 5. Nominal battery voltage at.0 volts/cell. 6. Recommendation: All cables shall be sized in accordance with 00 NEC 09 FPN No. 4 branch feeder voltage drop of 3%. Voltage drop not considered in above chart. Applicationspecific Input Cable Ampacity may vary from above chart. 7. Equipment Grounding Conductors shall be sized in accordance with Table 50 of the 00 NEC and shall be installed in accordance with Article 50 Section VI and Section VII of the 00 NEC. Grounding Electrode Conductors shall be sized in accordance with Article and Table of the 00 NEC and should be installed in accordance with Article 50 Section III of the 00 NEC. 8. Nominal Battery Discharge current based on rated load, and nominal battery voltage. 9. Maximum Battery Discharge current based on rated load at end of discharge. 0.Heat dissipation calculated at rated load capacity..this current is at 5% of rated load and is electronically currentlimited to a maximum of 0 minutes. This value is only provided so the engineer can ensure that the selected AC output circuit overcurrent device s timecurrent characteristic will support this condition. a. Temperature rating of conductors: 94 o F (90 o C). Reference: Table 306 of NEC, 75 o C column. Use only copper conductors. 67 o F (75 o C) cable terminal connectors assumed. b. Reference: NEC Handbook 00. Consult local codes for possible variations. c. All cable ratings are supplied as guidelines only. These guidelines are recommendations only, and should not be considered substitutes for review and compliance with NEC, national, or local codes. Consult with your licensed engineer for sitespecific applications. 86 o F (30 o C) assumed. Overcurrent protection provided by others. 0 Symmetra MW II 600 kw 480 V Installation 99094E00

25 Table Table 306 (National Electrical Code) National Electrical Code and NEC are registered trademarks of the National Fire Protection Association, Quincy, MA. Allowable Ampacities of Insulated Conductors rated 0 Through 000 Volts, 60 o C Through to 90 o C (40 o F Through 94 o F), Not More Than Three CurrentCarrying Conductors in Raceway, Cable, or Earth (Directly Buried), Based on Ambient Temperature of 30 o C (86 o F). Size Temperature Rating of Cables (See Table 303) Size 60 o C (40 o F) 75 o C (67 o F) 90 o C (94 o F) 60 o C (40 o F) 75 o C (67 o F) 90 o C (94 o F) AWG or kcmil Types TW,UF Types FEPW,RH,RH W,THHW, THW,THWN, XHHW, USE,ZW Types TBS,SA,SIS,FEP, FEPB,MI,RHH, RHW,THHN, THHW,THW, THWN,USE, XHH,XHHW,XH HW,ZW Types TW,UF Types RH,RHW,TH HW,THW, THWN, XHHW,USE Types TBS,SA,SIS,TH HN,THHW,TH W,THWN, RHH,RHW, USE,XHH, XHHW, XHHW,ZW AWG or kcmil Copper Aluminium or CopperClad Aluminium 8 6 4* * 0* * 0* /0 /0 3/0 4/ /0 /0 3/0 4/ CORRECTION FACTORS Ambient Temp. ( o C) For ambient temperatures other than 30 o C (86 o F), multiply the allowable Ampacities shown above by the appropriate factor shown below Ambient Temp. ( o F) Reprinted with permission from NFPA 70005, National Electrical Code, Copyright 004, National Fire Protection Association, Quincy, MA 069. This reprinted material is not the complete and official position of the NFPA on the referenced subject, which is represented only by the standard in its entirety. Symmetra MW II 600 kw 480 V Installation 99094E00

26 Size Temperature Rating of Cables (See Table 303) Size 60 o C (40 o F) 75 o C (67 o F) 90 o C (94 o F) 60 o C (40 o F) 75 o C (67 o F) 90 o C (94 o F) AWG or kcmil Types TW,UF Types FEPW,RH,RH W,THHW, THW,THWN, XHHW, USE,ZW Types TBS,SA,SIS,FEP, FEPB,MI,RHH, RHW,THHN, THHW,THW, THWN,USE, XHH,XHHW,XH HW,ZW Types TW,UF Types RH,RHW,TH HW,THW, THWN, XHHW,USE Types TBS,SA,SIS,TH HN,THHW,TH W,THWN, RHH,RHW, USE,XHH, XHHW, XHHW,ZW AWG or kcmil Copper Aluminium or CopperClad Aluminium Reprinted with permission from NFPA 70005, National Electrical Code, Copyright 004, National Fire Protection Association, Quincy, MA 069. This reprinted material is not the complete and official position of the NFPA on the referenced subject, which is represented only by the standard in its entirety. Recommended cable, bolt, and lug sizes Cable Size Bolt hole size Hole spacing Lug width Lug P/N ()() Crimping Tool and Dies 400 kcmil 0.5 in/.7 mm.75 in/44.45 mm.39 in/35.3 mm Panduit LCD4006 (or equivalent) 500 kcmil 0.5 in/.7 mm.75 in/44.45 mm.54 in/39. mm Panduit LCD5006 (or equivalent) 600 kcmil 0.5 in/.7 mm.75 in/44.45 mm.70 in/43.8 mm Panduit LCD6006 (or equivalent) Manufacturer recommended crimping tool and dies. Manufacturer recommended crimping tool and dies. Manufacturer recommended crimping tool and dies. Note: Cable lugs are not supplied. Symmetra MW II 600 kw 480 V Installation 99094E00

27 Torque specifications Torque specifications Bolt Size M8 Bolt Size M0 Bolt Size M Bolt Size M4 0 lbfft/3.5 Nm lbfft/30 Nm 37 lbfft/50 Nm 55 lbfft/75 Nm Required Breaker Settings The Symmetra MW is a faulttolerant system capable of handling and surviving overloads and internal/ external faults. The overload performances and fault clearings are possible when the system meets specified minimum requirements for breaker settings. A proper breaker coordination study is required to ensure the highest availability of the UPS. This breaker coordination study should be performed focusing on maintaining the fault tolerant characteristics of the Symmetra MW. The following tables provide the optimum settings for the input and output breakers. The settings are specified in the tables below, but some of them can also be found in the Electrical Specification section. See separate manual on parallel systems for information on required breaker settings in parallel systems. Input and upstream breakers Q, Q5, and any upstream breaker Duration [S] Current [A] Total load [%] Event/Operation < ka Internal fault clearing 490* 30 Overload online Online 9 0 Online + Max. Battery Charge * In the absence of a coordination study conducted by a professional engineer, the recommended instantaneous trip setting for breakers Q, Q, Q4, Q5, and Q6 is 8 ka ** Only applicable to Q Symmetra MW II 600 kw 480 V Installation 99094E00 3

28 Output and downstream breakers Q, Q4, Q6 Duration [S] Current [A] Total load [%] Event/Operation < ka Internal fault clearing * 00 Overload online * 5 Overload online Online * In the absence of a coordination study conducted by a professional engineer, the recommended instantaneous trip setting for breakers Q, Q, Q4, Q5, and Q6 is 8 ka ** Only applicable to Q and Q4 In the absence of a proper breaker coordination study and if only the actual Ip on the unit s input terminals is known, this table must be used to optimize the instantaneous trip setting or to choose a breaker with a usable fixed instantaneous trip value. Ip* [ka] I peak letthrough [ka] I setting [ka] * Ip = Abridgment for Prospective shortcircuit current. This is the current that would flow in the fault circuit is the fuse was replaced by a link with an infinitely small impedance 8 ka is the maximum peak letthrough current (including safety factor) present during clearing of an internal fault in a 00 kw section or a power module. This maximum peak letthrough current is based on and applicable to utility with prospective shortcircuit currents (Ip) up to 00 ka. During or after a controlled fault clearing, none of the breakers are allowed to trip on the instantaneous trip setting below the specified value. This is also applicable to the upstream breakers, and a check of the instantaneous trip setting in this part of the installation is required. The instantaneous trip setting calculated by a professional engineer in a breaker cooardination study must not disable the functionality of clearing and surviving an internal fault unless there is a written agreement between APC by Schneider Electric and the customer. By ensuring the unit s fault clearing ability (survival skills) i.e. using the correct instantaneous trip settings in the switch gear (installation), maximum power availability in normal operation is obtained for the critical load. Note: The instantaneous trip setting can be calculated when utility Ip is known. An incorrect trip setting can result in limiting the system functionality and jeopardize the load support. 4 Symmetra MW II 600 kw 480 V Installation 99094E00

29 Note: The instantaneous trip setting must not be derated even though the UPS system is derated in system output power. The system size has no influence on the instantaneous trip setting. Note: For derated systems, the APC Application Team can provide the correct breaker settings and breaker frame sizes. Note: For upstream breakers not mentioned in the table, the APC Application Team can provide the correct breaker settings for online, overload, and trip currents. The following diagram shows a dual utility system in which the upstream breakers are named Q. Correct settings of upstream breaker settings are mandatory. The system can also be configured as a single utility system. Dual Utility Installation Q3 T Q Q5 Q6 T Q Q Q Q4 General Specifications 480 V Backfeed protection Humidity Builtin in the UPS Max. 95% noncondensing Protection class NEMA Safety Emission and immunity UL 778 listed FCC part 5, sub part J Class A (conducted/radiated) Symmetra MW II 600 kw 480 V Installation 99094E00 5

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32 APC Worldwide Customer Support Customer support for this or any other APC product is available at no charge in any of the following ways: Visit the APC Web site to access documents in the APC Knowledge Base and to submit customer support requests. (Corporate Headquarters) Connect to localized APC Web sites for specific countries, each of which provides customer support information. Global support searching APC Knowledge Base and using esupport. Contact the APC Customer Support Center by telephone or . Local, countryspecific centers: go to for contact information. For information on how to obtain local customer support, contact the APC representative or other distributors from whom you purchased your APC product. Entire contents copyright 009 American Power Conversion Corporation. All rights reserved. Reproduction in whole or in part without permission is prohibited. APC, the APC logo, and Symmetra are trademarks of American Power Conversion Corporation. All other trademarks, product names, and corporate names are the property of their respective owners and are used for informational purposes only E00 *99094E00* 4/009

Installation. Symmetra MW. 400 kw 480 V. UPS Summary UPS Summary. Normal Normal X017 X012 X008A X014A X014B X013 X008B X011 X405 X010 X007 X021

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