Loading…
Loading…
| # | Company | Amount | Rank | Status |
|---|---|---|---|---|
| 1 | L1₹5.4 LAccepted-Finance | L1 | Accepted-Finance Lowest Bid | |
| 2 | L2₹5.4 L+₹1,630 (0.30%)Rejected-Finance 4 4 FAIRLIE PLACE ROOM NO 630A HMP HOUSE KOLKATA 700001 700001 CALCUTTA CENTRAL DIVISION WEST BENGAL 700001 | KOLKATA | WEST BENGAL | 700001 | L2 | Rejected-Finance Higher Bid | |
| 3 | L3₹5.7 L+₹31,800 (5.89%)Rejected-Finance 230 S N ROY ROAD SAHAPUR COLONY KOLKATA WEST BENGAL 700038 | KOLKATA | WEST BENGAL | 700038 | L3 | Rejected-Finance Higher Bid | |
| 4 | L4₹5.9 L+₹48,401 (8.96%)Rejected-Finance 270 D 3RD FLOOR RABINDRA SARANI BURRABAZAR KOLKATA WEST BENGAL 700007 | KOLKATA | WEST BENGAL | 700007 | L4 | Rejected-Finance Higher Bid | |
| 5 | L5₹7.0 L+₹1.6 L (29.9%)Rejected-Finance H 144 358 N L CHATTERJEE ROAD RAMNAGAR P O RAIPUR MAHESHTALA KOLKATA 700141 | KOLKATA | 24 PARAGANAS SOUTH | WEST BENGAL | 700141 | L5 | Rejected-Finance Higher Bid |
Tender Value
Refer Docs
EMD Value
₹12,000
Closing Date
23 Jul 2025, 1:00 pmClosed
EE, South 24 Parganas Electrical Division
57/2 Diamond Harbour Road, Kolkata - 700 023
Construction of new G plus 1 storied building in the campus of CFTC Budge Budge -- Electrical Installation, Lift, AC, UPS, DG Set, Solar System, Fire Detection and allied works - SITC of Solar System (10 KW).
2025_WBPWD_877534_1
WBPWD/EE/S24PED/eNIT21_2nd Call/25-26
Open Tender
Solar Street Lights
Item Rate
30 days
Budge Budge
Please refer Tender documents.
4 documents required · 4 mandatory
₹12,000
South 24 Parganas Electrical Division
11 Sept 2025
11 Jul 2025
25 Jul 2025
11 Jul 2025
23 Jul 2025
19 Jul 2025
18 Jul 2025
Amount
Supply of Solar Photovoltaic Panels.Mono Crystalline of capacity minimum 550Wp (Each) to generate 10 KWp Power. (Make:Waaree/APS/Sova/Vikram/TATA Solar/Adani/OSWAL) All materials used in the Solar PV module shall have a proven history of reliability and stable operation in external applications. It shall perform satisfactorily in relative humidity up to 100% with temperatures between +10° C and +50° C and should have lowest temperature coefficient and shall withstand wind pressure up to 200 km/hr on the surface of the panel. Each and every SPV module shall be checked for conformity with relevant standard and no negative tolerance shall be accepted Solar PV Peak power rating of the module shall be more than or equal to 540 Wp. The module conversion efficiency shall be minimum 20.3 % and above with mono/crystalline silicon half Cut technology under standard test conditions. The cell should have minimum fill factor of 0.75. It shall be made of high transitivity glass and front surface shall give high encapsulation gain.
Each PV module used in solar power project must use an RF identification tag. The following information must be mentioned in the RFID used on each module (a)Name of the manufacturer of Solar cells. b)Name of the manufacturer of PV Module.c)Month and year of the manufacture (separately for solar cells and modules).d)Country of origin (separately for solar cells and module).e)I-V curve for the module.e)Wattage, Im, Vm and FF for the module. f)Unique Serial No. and Model No of the module.g)Date and year of obtaining IEC PV module qualification certificate. h)Name of the test lab issuing IEC certificate. i)Other relevant information on traceability of solar cells and module as per ISO 9000. The PV modules used must qualify to the latest edition of IEC 61215 & IEC 61730 (Edition I and II) for safety qualification testing, Salt Mist Corrosion Resistant (IEC 61701, IEC 62716), Sand Storm Test (IEC 60068-2), Fire Resistance (EN 13501-1 class E, IEC 61730 class C) & Ammonia Corrosion Resistant: IEC 62716. The module shall be provided with a junction box with either provision of external screw terminal connection or sealed type and with arrangement for provision of by-pass diode. The box shall have hinged, weather proof lid with captive screws and cable gland entry points or may be of sealed type and IP-65 rated with test certificate.
Supply of Module Mounting Structure: The PV modules shall be mounted on fixed metallic structures having adequate strength and appropriate design, which can withstand the load of the modules and high wind velocities. The array structure will be made of hot dip galvanized MS Angles of size not less than 50mm x 50 mm x 6 mm size / Aluminium (L Angle – 50 mm x 50 mm x 5 mm, U Channel – 33 mm x 30 mm x 33 mm x 3 mm). The Support structure shall be hot dip galvanized steel or aluminium. Detailed specifications for the mounting structure are given below: Wind velocity withstanding capacity: 150 km / hour Structure material: Hot dip galvanised steel with a minimum galvanisation thickness of 120 microns or aluminium alloy. Bolts, nuts,fasteners, panel mounting clamps:Stainless steel SS 304.
Mounting arrangement for metal sheet roofs:Mounting directly on the sheet metal, ensuring stability and wind withstanding capacity, or penetrating the sheet metal and fixing to the sub-structure, ensuring that the roof remains water proof and ensuring stability and wind withstanding capacity. Installation:The structures shall be designed for simple mechanical on-site installation. There shall be no requirement of welding or complex machinery at the installation site. Minimum distance between roof edge and mounting structure:0.6m Access for panel cleaning and maintenance:All solar panels must be accessible from the top for cleaning and from the bottom for access to the module-junction box. Panel tilt angle: North – south orientation with a fixed tilt angle of 15 – 22 degrees (depending on location), south facing. The mounting structure steel shall be as per latest IS 2062: 1992 and galvanization of the mounting structure shall be in compliance of latest IS 4Structural material shall be corrosion resistant and electrolytically compatible with the materials used in the module frame, its fasteners, nuts and bolts. Aluminium structures also can be used which can withstand the wind speed of respective wind zone. Necessary protection towards rusting need to be provided either by coating or anodization. [Design to be approved by EIC before fabrication].(Make: SAIL/TATA/Durgapur Steel)
Supply of 1 Nos. PV DC Distribution Box: [Make: Hensel/Spielberg/ABB/L & T/AVO]. a) An DC distribution box shall be mounted close to the solar grid inverter. The DC distribution box shall be of the thermo-plastic IP65 DIN-rail mounting type and shall comprise the following components and cable terminations: ▪ Incoming positive and negative DC cables from the DC Combiner Box; ▪ DC circuit breaker, 2 pole (the cables from the DC Combiner Box will be connected to this circuit breaker on the incoming side); ▪ DC surge protection device (SPD (Make:CITEL/ABB/L & T/Phonex)), as per IEC 60364-5-53; ▪ Outgoing positive and negative DC cables to the solar grid inverter. b) As an alternative to the DC circuit breaker a DC isolator may be used inside the DC Distribution Box or in a separate external thermoplastic IP 65 enclosure adjacent to the DC Distribution Box. If a DC isolator is used instead of a DC circuit breaker, a DC fuse shall be installed inside the DC Distribution Box to protect the DC cable that runs from the DC Distribution Box to the Solar Grid Inverter. The Junction Boxes shall have suitable arrangement monitoring and disconnection for each of the groups.Voltage: Max. 1000V DC with all test certificate.
Supply of Grid interfacing Pannel(GIP) 1 In 1 Out : Designed for 10KWp solar power plant with all protections as per MNRE guidelines. AC DPBs shall have sheet from enclosure of dust & vermin proof conform to IP 65 protection. The bus bars are made of copper of suitable size. Suitable capacity fuse & MCBs/MCCB shall be provided for controlling the DC power output to the PCU along with necessary surge arrestors . AC Distribution Panel Board (DPB) shall control the AC power from PCU/ inverter, and should have necessary surge arrestors. Interconnection from ACDB to mains at LT Bus bar while in grid tied mode.All switches and the circuit breakers, connectors should conform to IEC 60947, part I, II and III/ IS60947 part I, II and III. All the Panel’s shall be metal clad, totally enclosed, rigid, floor mounted, air - insulated, cubical type suitable for operation on three phase / single phase, 415 or 230 volts, 50 Hz.All indoor panels will have protection of IP54 or better. All outdoor panels will have protection of IP65 or better. ▪This is contain MFM (Make: Schineder/L&T/Scure)with CT (make: KAPPA/gupat Engineer/Equivalent) with all Test Certificate. ▪ Incoming 3.5 (three-phase) cable from the solar grid inverter ▪ AC circuit breaker, 3-pole / 4-pole ▪ AC surge protection device (SPD), class 2 as per IEC 60364-5-53 ▪ Outgoing cable to the building electrical distribution board. [Make: Hensel/Spielberg/Citel/ABB/L & T/schneider/Elmax]
Supply of Inverter Interfacing pannel (IIP) 1 In 1 Out : Designed for 10KWp solar power plant with all protections as per MNRE guidelines. AC DPBs shall have sheet from enclosure of dust & vermin proof conform to IP 65 protection. The bus bars are made of copper of suitable size. Suitable capacity fuse & MCBs/MCCB shall be provided for controlling the DC power output to the PCU along with necessary surge arrestors . AC Distribution Panel Board (DPB) shall control the AC power from PCU/ inverter, and should have necessary surge arrestors. Interconnection from ACDB to mains at LT Bus bar while in grid tied mode.All switches and the circuit breakers, connectors should conform to IEC 60947, part I, II and III/ IS60947 part I, II and III. All the Panel’s shall be metal clad, totally enclosed, rigid, floor mounted, air - insulated, cubical type suitable for operation on three phase / single phase, 415 or 230 volts, 50 Hz.All indoor panels will have protection of IP54 or better. All outdoor panels will have protection of IP65 or better. ▪ Incoming 3.5 (three-phase) cable from the solar grid inverter ▪ AC circuit breaker, 3-pole / 4-pole ▪ AC surge protection device (SPD), class 2 as per IEC 60364-5-53 ▪ Outgoing cable to the building electrical distribution board. [Make: Hensel/Spielberg/Citel/ABB/L & T/schneider/Elmax]
Supply of Grid Connected Solar Inverter Rating: 10KW, 3Ph Inverter, Make: ABB/Sungro/Solis . The detailed specifications of the solar grid inverter are given below. Total output power (AC):10kW. Input DC voltage range:250 - 850 VDC. Maximum power point (MPPT): tracking Shall be incorporated as mentioned above. Number of independent MPPT inputs: 1 or more Operation AC voltage: Single phase 230V or Three phase 415V (+ 12.5%, -20%) Output Voltage Range - 320V - 480V AC. Operating Frequency: range 47.5 – 52.5 Hz Nominal frequency: 50 Hz Power factor of the inverter:>0.98 at nominal power Total harmonic distortion:Less than 3% Built-in Protection: AC high / low voltage; AC high /low frequency Anti-islanding protection: As per VDE 0126-1-1, IEC 60255.5 / IEC 60255.27 Operating ambient temperature range: -10 oC - +60 oC Humidity: 0 – 95% Rh Inverter efficiency:>=95% Inverter weighted efficiency:>=94% Protection degree:IP 65 for outdoor mounting, IP 54 for indoor mounting
Communication interface: RS 485 / RS 232 / RJ45 Safety compliance ;IEC 62109-1, IEC 62109-2 Cooling:Convection Display type : LCD for data display. LCD / LED for status display Display parameters to include : Output power (W), cumulative energy (Wh), DC voltage (V), DC current (A), AC voltage (V), AC frequency (Hz), AC current (A), cumulative hours of operation (h). Compliance with standards and codes : IEC61683 ,IEC60068-2(1,2,14,30) All above IEC’s should be from NABL/ IEC Accredited Testing Laboratories or MNRE Approved Test Centers/ International laboratories with all test certificate..
Supply of Earthings System : a) The Earthing for array and LT power shall be made as per the provisions of IS:3043-2018 “Code of practice for earthing (Second Revision),” that governs the earthing practices of a PV system and IS 732:2019 “Code of practice for electrical wiring installations (Fourth Revision). In any case, the cross-section area or the earthing conductor for PV equipment should not be less than 6.0 mm2 if copper, 10 mm2 if aluminium or 70 mm2 if hot-dipped galvanized iron. For the earthing of lightning arrestor, cross-section of the earthing conductor should not be less than 16 mm2 of copper or 70 mm2 if hot-dipped galvanized iron. The complete Earthing system shall be mechanically & electrically connected to provide independent return to earth. b) Unprotected aluminium or copper-clad aluminium conductors shall not be used for final underground connections to earth electrodes. c) A Dedicated earth electrode must be used for the earthing of DC side and AC side separately. d) The PV module structure components shall be electrically interconnected and shall be grounded. e) A minimum of two separate dedicated and interconnected earth electrodes must be used for the earthing of the solar PV system support structure with a total earth resistance not exceeding 5 Ohm.
f) The earth electrodes shall have a precast concrete enclosure with a removable lid for inspection and maintenance. The entire earthing system shall comprise non-corrosive components. g) Earth pit shall be constructed as per IS: 3043-2018. Electrodes shall be embedded below permanent moisture level. Earth pits shall be treated with salt and charcoal if average resistance of soil is more than 20 ohm meter. [Make: SGI/OBO/JMV/Gmax/TRUE POWER].
Supply of Remote Monitoring System (GPRS Type): The RMS system is integrated or External unit. The following parameters are accessible via the operating interface display in real time separately for solar power plant: AC Voltage., AC Output current, Output Power, DC Input Voltage, DC Input Current, Power produce, Protective function limits (Viz-AC Over voltage, AC Under voltage, Over frequency, Under frequency ground fault.. The data shall be recorded in a common work sheet chronologically date wise. The data file shall be MS Excel compatible. The data shall be represented in both tabular and graphical form. Simultaneous monitoring of DC and AC electrical voltage, current, power, energy and other data of the plant for correlation with solar and environment data shall be provided. (Make:ABB/Sungro/Solis)
Supply of DC Cables ( 4 Sqmm Single Core Copper Tinned Solar DC Cable): All DC cables shall be unarmored sunlight resistive halogen free in accordance with IEC 60754-1, Ozone resistance in accordance with EN 50396. Conductor shall be Electrolytic tinned copper Class 5, according to EN60228 or IEC 60228. Core insulation & outer sheath of the cable shall be as per XLPO (Electron beam cross linked polymer), fine wired in accordance to VDE 295 class5/IEC 60228 class 5, rated voltage shall be 1100/1500V & maximum permissible operating voltage shall be 1800V DC. Normal Operating temperature range shall be -40 deg C to +90 deg C with maximum permissible operating temperature 120 deg C, maximum short circuit temperature shall be 280 deg C. DC test voltage 15kV, type of insulation shall be according to IEC 605021, EN 50363-1. DC Cable shall be weather/UV resistive according to the HD 650/A1, Acid /brine resistance as per EN 60811-2-1, Flame resistance according to IEC 60323-1-2. Cable shall be rodent resistive. The DC cables shall be TUV/UL/equivalent certified. All cable/wires shall be marked with good quality letter and number ferrules of proper sizes so that the cables can be identified easily. The IS 5578:1984 (First revision-2011)/ IEC 60391- 1972 shall be adhered to for guidelines for marking. [Make: DC PolyCab/Sterlite/Finolex/Havells/Anchor].
Supply of AC Cables(6 Sqmm 4 Core Copper Flexiable cable ): All 1100 V AC cables shall be Electrolytic tinned copper Class 5,according to IEC 60228. Insulation shall be as per IEC 60502-1 and IS 1554. Cables shall also confirm to IEC 60189 for test and measuring methods. Make of cable shall be approved by RSTCH and Consultant. Contractor shall submit the GTP (Guaranteed Technical Parameters) and QAP for the approval of RSTCH and Consultant. All wires used for connecting the modules and array shall conform to the NEC standards. Modules shall be connected with USE-2/RHW-2 cables or plug connectors within the array. Array to string combiner box conductors and between string combiner boxes conductors shall be THHN/THWN-2 sunlight resistant with 90°C wet rated insulation cable. Wiring size of PV array shall be designed such that maximum voltage drop at full power from the PV modules to inverter shall be less than 3% (including diode voltage drop). All Tees, Bends etc. shall be approved make. All cable/wires shall be marked with good quality letter and number ferrules of proper sizes so that the cables can be identified easily. The IS 5578:1984 (First revision-2011)/ IEC 60391- 1972 shall be adhered to for guidelines for marking. [Make of AC cable: PolyCab/Sterlite/Finolex/Havells/Anchorr].
Installation, Testing & Commissioning of all items of this BOQ should comply to the detailed Technical Specification given. SOW :Installation of PV Module holding structure on RCC roof with Base,Supply and installation saddle and screw,Installation of PV Module, Installation of complete earthing including earth pit, earth rod and earth strip,Laying of DC cable from PV Module Array to Array,Junction Box and Array Junction Box to Inverter, Laying of AC cable from the inverter to ACDB & ACDB to existing LT Panel, Supply and installation of all wiring material including,cable tie, cable lux, UPVC pipe and their accessories as required,Supply and installation of Lighting Arrester, installation of AJB, ACDB and Inverter, Loading and Unloading of Material
Module cleanning system - SITC of plumbing material with accessories for module cleaning system The Approved Bidder shall provide permanent arrangement for module washing in the SPV Plant. Water lines may be drawn to feed water from the available resources. The Approved Bidder has to provide additional facility including pipeline, motor for pumping to the additional overhead tank, if required.
Note: 1) All the above rates should be quoted inclusive of all taxes, duties and all ancilery charges with cost of maintenance, servicing, supply & replacement of spares for 03 (Three) year from the date of commissioning. 2) Total is rounded off to the nearest rupees.
Sohum Industrial Sales Corporation (BID ID -6756112)
switching avo Electro Power Ltd (BID ID -6744250)
Sunbird Power Pvt. Ltd. (BID ID -6758284)
M/S INSILICA (BID ID -6752252)
tech_bid_open.pdf
tech_eval.pdf
fin_bid_open.pdf
boq_comp_chart.xlsx
xlsx
fin_eval.pdf
Download all tender documents and submit your bid
Disclaimer: TenderKart has made every reasonable effort to ensure that the information on this page is accurate and authentic, however it cannot be held liable for any third-party claims or losses or any damages. TenderKart makes no warranty, expressed or implied, as to the results obtained from the use of this information. If you notice any error or omission, please let us know at .