|
|
Solar PV Modules
WHY
Primary power generation component converting solar radiation into electrical energy for the plant.
Primary power generation component converting solar radiation into electrical energy for the plant.
|
solar generation
Core photovoltaic panels that convert sunlight into electricity.
|
371.00
nos
Number of individual modules required for the 200 kWp plant.
|
Minimum 540 Wp per module, monocrystalline PERC or TOPCon, ≥21% efficiency, MNRE ALMM List-I, BIS IS 14286, 12-year product warranty, 25-year performance guarantee ≥80% rated power.
Minimum 540 Wp per module, monocrystalline PERC or TOPCon, ≥21% efficiency, MNRE ALMM List-I, BIS IS 14286, 12-year product warranty, 25-year performance guarantee ≥80% rated power.
|
|
|
|
|
Grid-Tied Inverters
WHY
Converts DC solar power to AC grid-compatible power and manages grid interconnection safely.
Converts DC solar power to AC grid-compatible power and manages grid interconnection safely.
|
power conversion
Devices that convert DC power from solar modules into AC power for grid connection.
|
1.00
lot
Complete inverter system (string or central type) sized for 200 kWp output.
|
3-phase 415V ±10%, ≥98% CEC weighted efficiency, IEC 62109-1/2 compliant, anti-islanding, FRT capability, DC arc-fault protection, MNRE type-test approved, PGVCL interconnection approved, 5-year on-site warranty.
3-phase 415V ±10%, ≥98% CEC weighted efficiency, IEC 62109-1/2 compliant, anti-islanding, FRT capability, DC arc-fault protection, MNRE type-test approved, PGVCL interconnection approved, 5-year on-site warranty.
|
|
|
|
|
Module Mounting Structure
WHY
Provides structural support and optimal tilt angle for solar modules on the rooftop.
Provides structural support and optimal tilt angle for solar modules on the rooftop.
|
structural support
Steel framework that securely holds solar modules on the rooftop at optimal angle.
|
1.00
lot
Complete mounting structure system for 200 kWp module array.
|
Hot-dip galvanized mild steel IS 2062 Grade B, ≥85 micron zinc coating, fixed tilt optimized for Rajkot latitude, withstands 180 km/h wind per IS 875 Part-3, SS 304 hardware, licensed structural engineer certificate required.
Hot-dip galvanized mild steel IS 2062 Grade B, ≥85 micron zinc coating, fixed tilt optimized for Rajkot latitude, withstands 180 km/h wind per IS 875 Part-3, SS 304 hardware, licensed structural engineer certificate required.
|
|
|
|
|
DC Solar Cables
WHY
Carries DC power from solar modules to inverter with minimal losses.
Carries DC power from solar modules to inverter with minimal losses.
|
electrical wiring
Specialized cables carrying direct current from solar modules to the inverter.
|
1.00
lot
Complete DC wiring system as per design, voltage drop ≤1.5%.
|
IEC 62930 / EN 50618 compliant, UV resistant, minimum 1.5 kV DC rated, sizing per contractor design, voltage drop ≤1.5% DC side, cable schedule approved by RMC.
IEC 62930 / EN 50618 compliant, UV resistant, minimum 1.5 kV DC rated, sizing per contractor design, voltage drop ≤1.5% DC side, cable schedule approved by RMC.
|
|
|
|
|
AC Power Cables
WHY
Distributes AC power from inverter to main board and grid with minimal losses.
Distributes AC power from inverter to main board and grid with minimal losses.
|
electrical wiring
Cables carrying alternating current from inverter to distribution board and grid connection.
|
1.00
lot
Complete AC wiring system as per design, voltage drop ≤1.0%.
|
IS 1554 Part-1 / IEC 60502-1 compliant, sizing per contractor design, voltage drop ≤1.0% AC side, cable schedule approved by RMC before installation.
IS 1554 Part-1 / IEC 60502-1 compliant, sizing per contractor design, voltage drop ≤1.0% AC side, cable schedule approved by RMC before installation.
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|
|
|
|
Earthing System
WHY
Provides electrical safety by grounding all metallic structures and equipment.
Provides electrical safety by grounding all metallic structures and equipment.
|
electrical safety
Safety system that grounds electrical equipment to prevent electric shock and equipment damage.
|
1.00
lot
Complete earthing installation for the entire plant.
|
Designed per IS 3043, each earth electrode ≤2 Ohms resistance when tested individually, complete bonding of metallic structures, inverter enclosures, and switchgear to main earth bus.
Designed per IS 3043, each earth electrode ≤2 Ohms resistance when tested individually, complete bonding of metallic structures, inverter enclosures, and switchgear to main earth bus.
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|
|
|
|
Lightning Protection System
WHY
Protects solar plant equipment and structures from lightning strike damage.
Protects solar plant equipment and structures from lightning strike damage.
|
electrical safety
System that protects equipment and structures from lightning strike damage.
|
1.00
lot
Complete lightning protection installation for the plant.
|
IS/IEC 62305 compliant, ESE type or conventional Franklin rod per risk analysis, complete bonding of all metallic structures to main earth bus.
IS/IEC 62305 compliant, ESE type or conventional Franklin rod per risk analysis, complete bonding of all metallic structures to main earth bus.
|
|
|
|
|
Remote Monitoring System
WHY
Enables real-time monitoring of plant performance and early fault detection.
Enables real-time monitoring of plant performance and early fault detection.
|
monitoring control
Web and mobile platform for real-time tracking of plant performance and fault detection.
|
1.00
lot
Single integrated monitoring system for the entire 200 kWp plant.
|
Web portal with Android/iOS app, minimum parameters: power (kW), energy (kWh), specific yield, performance ratio, irradiance, module temperature, per-inverter faults, 15-minute data logging, SMS/email alerts, 10-year data storage.
Web portal with Android/iOS app, minimum parameters: power (kW), energy (kWh), specific yield, performance ratio, irradiance, module temperature, per-inverter faults, 15-minute data logging, SMS/email alerts, 10-year data storage.
|
|
|
|
|
Generation Meter
WHY
Measures total solar energy generation for billing and performance verification.
Measures total solar energy generation for billing and performance verification.
|
metering equipment
Meter that measures total electrical energy generated by the solar plant.
|
1.00
nos
Single generation meter for the plant.
|
3-phase 4-wire, Class 0.5S, RS485 Modbus interface, PGVCL Net Metering Regulations 2023 compliant.
3-phase 4-wire, Class 0.5S, RS485 Modbus interface, PGVCL Net Metering Regulations 2023 compliant.
|
|
|
|
|
Net Meter (Bi-directional)
WHY
Measures net energy exchange with grid under net metering arrangement.
Measures net energy exchange with grid under net metering arrangement.
|
metering equipment
Meter that tracks both energy fed to grid and energy drawn from grid.
|
1.00
nos
Single bi-directional net meter for grid interconnection.
|
3-phase, bi-directional, PGVCL Net Metering Regulations 2023 compliant, to be procured and installed by PGVCL, contractor coordinates and bears all fees.
3-phase, bi-directional, PGVCL Net Metering Regulations 2023 compliant, to be procured and installed by PGVCL, contractor coordinates and bears all fees.
|
|
|
|
|
Protection and Switchgear
WHY
Protects circuits from overcurrent and enables safe equipment isolation.
Protects circuits from overcurrent and enables safe equipment isolation.
|
electrical safety
Devices that protect circuits and allow safe isolation of equipment for maintenance.
|
1.00
lot
Complete protection and switchgear system for the plant.
|
CEA Regulations 2010 (amended) compliant, includes DC and AC protection, main isolation switches, appropriate ratings for 200 kWp system, all hardware bonded to main earth bus.
CEA Regulations 2010 (amended) compliant, includes DC and AC protection, main isolation switches, appropriate ratings for 200 kWp system, all hardware bonded to main earth bus.
|
|
|
|
|
Detailed Project Report (DPR)
WHY
Provides detailed engineering design and performance projections for the plant.
Provides detailed engineering design and performance projections for the plant.
|
design engineering
Comprehensive technical document defining plant design, layout, and specifications.
|
1.00
nos
Single DPR document for the 200 kWp plant.
|
Includes PVsyst yield simulation (P50 and P90), single-line diagram, structural drawing, shadow analysis, load flow study, all drawings approved by RMC site engineer before work commencement.
Includes PVsyst yield simulation (P50 and P90), single-line diagram, structural drawing, shadow analysis, load flow study, all drawings approved by RMC site engineer before work commencement.
|
|
|
|
|
PVsyst Yield Simulation
WHY
Predicts plant energy generation under different weather probability scenarios.
Predicts plant energy generation under different weather probability scenarios.
|
design engineering
Software analysis predicting annual energy generation under different weather scenarios.
|
1.00
nos
Single simulation study with P50 and P90 scenarios.
|
P50 (50% probability) and P90 (90% probability) scenarios, accounts for Rajkot climate and site conditions, integrated into DPR.
P50 (50% probability) and P90 (90% probability) scenarios, accounts for Rajkot climate and site conditions, integrated into DPR.
|
|
|
|
|
Structural Design Certificate
WHY
Certifies structural design safety for wind loads and building code compliance.
Certifies structural design safety for wind loads and building code compliance.
|
design engineering
Professional certification that mounting structure meets wind load and safety standards.
|
1.00
nos
Single certificate from licensed structural engineer.
|
Certifies design compliance with IS 456, IS 875 Part-3 for 180 km/h wind loads, Rajkot zone conditions, submitted with technical bid.
Certifies design compliance with IS 456, IS 875 Part-3 for 180 km/h wind loads, Rajkot zone conditions, submitted with technical bid.
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|
|
|
|
Rooftop Structural Assessment
WHY
Verifies rooftop can safely support the solar plant weight and wind loads.
Verifies rooftop can safely support the solar plant weight and wind loads.
|
civil work
Engineering evaluation of existing rooftop capacity to support solar installation.
|
1.00
nos
Single assessment of WTP-II rooftop.
|
Evaluates load-bearing capacity, identifies reinforcement needs, confirms suitability for 200 kWp module array and mounting structure.
Evaluates load-bearing capacity, identifies reinforcement needs, confirms suitability for 200 kWp module array and mounting structure.
|
|
|
|
|
Mounting Structure Foundation Work
WHY
Provides secure foundation for mounting structure on the rooftop.
Provides secure foundation for mounting structure on the rooftop.
|
civil work
Civil construction work anchoring mounting structure to the rooftop.
|
1.00
lot
Complete foundation and anchoring work for mounting structure.
|
Designed per IS 456, appropriate for rooftop conditions, accounts for wind loads per IS 875 Part-3, all work conforms to RMC site engineer approval.
Designed per IS 456, appropriate for rooftop conditions, accounts for wind loads per IS 875 Part-3, all work conforms to RMC site engineer approval.
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|
|
|
|
DC Wiring Installation
WHY
Connects solar modules to inverter with proper protection and minimal losses.
Connects solar modules to inverter with proper protection and minimal losses.
|
electrical installation
Installation of DC cables from solar modules to inverter with proper routing and protection.
|
1.00
lot
Complete DC wiring system installation.
|
Modules to inverter, voltage drop ≤1.5%, cable schedule approved by RMC, includes conduits, clamps, and protection devices, CEA Regulations 2010 compliant.
Modules to inverter, voltage drop ≤1.5%, cable schedule approved by RMC, includes conduits, clamps, and protection devices, CEA Regulations 2010 compliant.
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|
|
|
|
AC Wiring Installation
WHY
Distributes AC power from inverter to main board and grid connection.
Distributes AC power from inverter to main board and grid connection.
|
electrical installation
Installation of AC cables from inverter to main distribution board and grid connection.
|
1.00
lot
Complete AC wiring system installation.
|
Inverter to main distribution board and grid, voltage drop ≤1.0%, cable schedule approved by RMC, includes conduits, clamps, and protection devices, IS 3043 compliant.
Inverter to main distribution board and grid, voltage drop ≤1.0%, cable schedule approved by RMC, includes conduits, clamps, and protection devices, IS 3043 compliant.
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|
|
|
|
Insulation Resistance Testing
WHY
Verifies electrical safety by confirming insulation integrity of all circuits.
Verifies electrical safety by confirming insulation integrity of all circuits.
|
testing commissioning
Electrical test verifying insulation integrity of cables and equipment.
|
1.00
nos
Single comprehensive insulation resistance test of entire system.
|
Tests DC and AC circuits, verifies insulation quality, test report in prescribed format submitted to RMC within 7 days of commissioning.
Tests DC and AC circuits, verifies insulation quality, test report in prescribed format submitted to RMC within 7 days of commissioning.
|
|
|
|
|
Polarity Check Testing
WHY
Confirms correct DC polarity to prevent equipment damage and safety hazards.
Confirms correct DC polarity to prevent equipment damage and safety hazards.
|
testing commissioning
Test confirming correct positive and negative connections in DC circuits.
|
1.00
nos
Single polarity verification test.
|
Verifies correct DC polarity at module strings and inverter inputs, test report in prescribed format submitted to RMC within 7 days of commissioning.
Verifies correct DC polarity at module strings and inverter inputs, test report in prescribed format submitted to RMC within 7 days of commissioning.
|
|
|
|
|
String Open-Circuit Voltage Testing
WHY
Verifies each solar module string produces expected voltage output.
Verifies each solar module string produces expected voltage output.
|
testing commissioning
Test measuring maximum voltage output of each solar module string.
|
1.00
nos
Single comprehensive string voltage test.
|
Tests each module string open-circuit voltage, verifies module performance and string integrity, test report in prescribed format submitted to RMC within 7 days of commissioning.
Tests each module string open-circuit voltage, verifies module performance and string integrity, test report in prescribed format submitted to RMC within 7 days of commissioning.
|
|
|
|
|
String Short-Circuit Current Testing
WHY
Verifies each solar module string produces expected current output.
Verifies each solar module string produces expected current output.
|
testing commissioning
Test measuring maximum current output of each solar module string.
|
1.00
nos
Single comprehensive string current test.
|
Tests each module string short-circuit current, verifies module performance and string integrity, test report in prescribed format submitted to RMC within 7 days of commissioning.
Tests each module string short-circuit current, verifies module performance and string integrity, test report in prescribed format submitted to RMC within 7 days of commissioning.
|
|
|
|
|
Earth Continuity Testing
WHY
Confirms earthing system provides continuous electrical path for safety.
Confirms earthing system provides continuous electrical path for safety.
|
testing commissioning
Test verifying electrical continuity of earthing system.
|
1.00
nos
Single earth continuity test.
|
Verifies complete bonding of all metallic structures and equipment to main earth bus, test report in prescribed format submitted to RMC within 7 days of commissioning.
Verifies complete bonding of all metallic structures and equipment to main earth bus, test report in prescribed format submitted to RMC within 7 days of commissioning.
|
|
|
|
|
Earth Resistance Testing
WHY
Confirms earthing electrodes meet resistance requirements for safety.
Confirms earthing electrodes meet resistance requirements for safety.
|
testing commissioning
Test measuring electrical resistance of earthing electrodes.
|
1.00
nos
Single earth resistance measurement test.
|
Verifies each earth electrode ≤2 Ohms resistance when tested individually, test report in prescribed format submitted to RMC within 7 days of commissioning.
Verifies each earth electrode ≤2 Ohms resistance when tested individually, test report in prescribed format submitted to RMC within 7 days of commissioning.
|
|
|
|
|
Performance Ratio Test
WHY
Verifies plant operates at expected efficiency on commissioning day.
Verifies plant operates at expected efficiency on commissioning day.
|
testing commissioning
Final test measuring actual plant efficiency compared to theoretical performance.
|
1.00
nos
Single performance ratio test on commissioning day.
|
Measures actual vs. expected performance, verifies plant meets design specifications, test report in prescribed format submitted to RMC within 7 days of commissioning.
Measures actual vs. expected performance, verifies plant meets design specifications, test report in prescribed format submitted to RMC within 7 days of commissioning.
|
|
|
|
|
PGVCL Interconnection Approval
WHY
Obtains official permission to connect solar plant to PGVCL grid.
Obtains official permission to connect solar plant to PGVCL grid.
|
grid connection
Official approval from power distribution company to connect plant to grid.
|
1.00
nos
Single interconnection approval from PGVCL.
|
Approval for 200 kWp grid-connected plant, net metering arrangement, all documentation prepared and submitted by contractor, PGVCL inspection and approval required.
Approval for 200 kWp grid-connected plant, net metering arrangement, all documentation prepared and submitted by contractor, PGVCL inspection and approval required.
|
|
|
|
|
Net Metering Agreement
WHY
Establishes legal framework for net metering energy exchange with grid.
Establishes legal framework for net metering energy exchange with grid.
|
grid connection
Contract with power company defining terms for net metering arrangement.
|
1.00
nos
Single net metering agreement with PGVCL.
|
Complies with PGVCL Net Metering Regulations 2023, Gujarat Solar Power Policy 2021, enables bi-directional energy flow, contractor coordinates and bears all fees.
Complies with PGVCL Net Metering Regulations 2023, Gujarat Solar Power Policy 2021, enables bi-directional energy flow, contractor coordinates and bears all fees.
|
|
|
|
|
PGVCL Inspection and Metering Activation
WHY
Enables final grid connection and net metering operation.
Enables final grid connection and net metering operation.
|
grid connection
PGVCL's final inspection and activation of net meter for grid operation.
|
1.00
nos
Single inspection and activation event.
|
PGVCL conducts final inspection, installs and activates net meter, contractor coordinates and bears all inspection charges and metering deposit.
PGVCL conducts final inspection, installs and activates net meter, contractor coordinates and bears all inspection charges and metering deposit.
|
|
|
|
|
As-Built Drawings (AutoCAD)
WHY
Provides accurate record of installed plant configuration for future reference.
Provides accurate record of installed plant configuration for future reference.
|
documentation
Technical drawings showing actual installed configuration of the plant.
|
1.00
set
Complete set of as-built drawings in AutoCAD format.
|
Includes single-line diagram, structural layout, electrical schematic, cable routing, equipment locations, submitted before final handover.
Includes single-line diagram, structural layout, electrical schematic, cable routing, equipment locations, submitted before final handover.
|
|
|
|
|
Operation Manuals
WHY
Provides instructions for safe operation and maintenance of the plant.
Provides instructions for safe operation and maintenance of the plant.
|
documentation
Instruction documents for operating and maintaining the solar plant.
|
1.00
set
Complete operation and maintenance manuals.
|
Covers system operation, monitoring, maintenance procedures, troubleshooting, safety protocols, submitted before final handover.
Covers system operation, monitoring, maintenance procedures, troubleshooting, safety protocols, submitted before final handover.
|
|
|
|
|
Warranty Certificates
WHY
Documents warranty coverage for all major plant components.
Documents warranty coverage for all major plant components.
|
documentation
Manufacturer certificates documenting warranty coverage for equipment.
|
1.00
set
Complete warranty documentation for all major components.
|
Includes module 12-year product and 25-year performance warranty, inverter 5-year on-site warranty, submitted before final handover.
Includes module 12-year product and 25-year performance warranty, inverter 5-year on-site warranty, submitted before final handover.
|
|
|
|
|
Test Reports
WHY
Documents all testing performed to verify plant safety and performance.
Documents all testing performed to verify plant safety and performance.
|
documentation
Official records of all electrical and performance tests conducted on the plant.
|
1.00
set
Complete set of test reports in prescribed format.
|
Includes insulation resistance, polarity, string voltage/current, earth continuity/resistance, performance ratio tests, submitted to RMC within 7 days of commissioning.
Includes insulation resistance, polarity, string voltage/current, earth continuity/resistance, performance ratio tests, submitted to RMC within 7 days of commissioning.
|
|
|
|
|
Training of RMC Personnel
WHY
Enables RMC staff to monitor and perform basic maintenance of the plant.
Enables RMC staff to monitor and perform basic maintenance of the plant.
|
training handover
Instruction provided to RMC staff on plant monitoring and basic maintenance.
|
2.00
persons
Two RMC personnel to be trained.
|
Training on system monitoring, basic maintenance procedures, troubleshooting, remote monitoring portal access, conducted before final handover.
Training on system monitoring, basic maintenance procedures, troubleshooting, remote monitoring portal access, conducted before final handover.
|
|
|
|
|
Scheduled Preventive Maintenance
WHY
Maintains plant performance and extends equipment life through regular upkeep.
Maintains plant performance and extends equipment life through regular upkeep.
|
operation maintenance
Regular planned maintenance to keep plant operating at peak efficiency.
|
5.00
years
Comprehensive preventive maintenance for 5 years post-commissioning.
|
Includes module cleaning minimum twice per year using RO/DM water, inverter health checks, structural inspection, electrical safety checks, as per O&M scope.
Includes module cleaning minimum twice per year using RO/DM water, inverter health checks, structural inspection, electrical safety checks, as per O&M scope.
|
|
|
|
|
Corrective Maintenance
WHY
Repairs equipment failures to restore plant operation quickly.
Repairs equipment failures to restore plant operation quickly.
|
operation maintenance
Repair and replacement of failed or faulty equipment during operation.
|
5.00
years
Corrective maintenance services for 5 years post-commissioning.
|
Repair or replacement of failed components, 48-hour response SLA for critical faults, all parts and labour included, as per O&M scope.
Repair or replacement of failed components, 48-hour response SLA for critical faults, all parts and labour included, as per O&M scope.
|
|
|
|
|
Remote Monitoring Service
WHY
Enables real-time plant performance tracking and early fault detection.
Enables real-time plant performance tracking and early fault detection.
|
operation maintenance
Continuous online monitoring of plant performance and fault detection.
|
5.00
years
Remote monitoring service for 5 years post-commissioning.
|
24/7 monitoring via web portal and mobile app, fault alerts via SMS/email, data logging at 15-minute intervals, 10-year data storage, as per O&M scope.
24/7 monitoring via web portal and mobile app, fault alerts via SMS/email, data logging at 15-minute intervals, 10-year data storage, as per O&M scope.
|
|
|
|
|
Module Cleaning Service
WHY
Removes dust and dirt to maintain solar module efficiency.
Removes dust and dirt to maintain solar module efficiency.
|
operation maintenance
Regular cleaning of solar modules to maintain light transmission and efficiency.
|
10.00
times
Minimum 10 cleaning cycles over 5 years (twice per year).
|
Using RO/DM water, minimum twice per year, maintains module cleanliness for optimal performance, included in O&M scope.
Using RO/DM water, minimum twice per year, maintains module cleanliness for optimal performance, included in O&M scope.
|
|
|
|
|
Inverter Health Checks
WHY
Ensures inverter operates reliably and detects issues early.
Ensures inverter operates reliably and detects issues early.
|
operation maintenance
Regular inspection and testing of inverter functionality and performance.
|
5.00
years
Inverter health checks throughout 5-year O&M period.
|
Periodic inspection, performance verification, firmware updates if needed, preventive maintenance, included in O&M scope.
Periodic inspection, performance verification, firmware updates if needed, preventive maintenance, included in O&M scope.
|
|
|
|
|
Quarterly Generation Performance Reports
WHY
Documents plant performance and energy generation for RMC tracking.
Documents plant performance and energy generation for RMC tracking.
|
operation maintenance
Regular reports documenting plant energy generation and performance metrics.
|
20.00
reports
20 quarterly reports over 5 years (4 per year).
|
Includes energy generation (kWh), specific yield, performance ratio, irradiance data, fault logs, submitted to RMC Energy Cell quarterly, as per O&M scope.
Includes energy generation (kWh), specific yield, performance ratio, irradiance data, fault logs, submitted to RMC Energy Cell quarterly, as per O&M scope.
|
|
|
|
|
Earnest Money Deposit (EMD)
WHY
Secures contractor's commitment to bid terms and conditions.
Secures contractor's commitment to bid terms and conditions.
|
financial security
Security deposit submitted with bid to ensure contractor's commitment.
|
|
Rs. 2,04,000 (2% of ECV), DD or BG in favour of Commissioner RMC, payable at Rajkot, valid for 180 days from bid submission.
Rs. 2,04,000 (2% of ECV), DD or BG in favour of Commissioner RMC, payable at Rajkot, valid for 180 days from bid submission.
|
|
|
|
|
Performance Bank Guarantee (PBG)
WHY
Secures contractor's performance of all contract obligations.
Secures contractor's performance of all contract obligations.
|
financial security
Bank guarantee securing contractor's performance of contract obligations.
|
5.00
percent
5% of final contract value.
|
Submitted within 15 days of work order, valid through defect liability period plus 60 days, secures performance of all contract obligations.
Submitted within 15 days of work order, valid through defect liability period plus 60 days, secures performance of all contract obligations.
|
|
|
|
|
Mobilisation Advance
WHY
Provides initial funding for project mobilization and material procurement.
Provides initial funding for project mobilization and material procurement.
|
payment milestone
Initial payment to contractor for project mobilization and material procurement.
|
10.00
percent
10% of EPC contract value.
|
Released against bank guarantee of equal value, enables contractor to mobilize resources and procure materials.
Released against bank guarantee of equal value, enables contractor to mobilize resources and procure materials.
|
|
|
|
|
Material Delivery Payment
WHY
Reimburses contractor for major equipment delivery to site.
Reimburses contractor for major equipment delivery to site.
|
payment milestone
Payment upon delivery of solar modules and inverters to site.
|
40.00
percent
40% of EPC contract value.
|
Released upon delivery of modules and inverters verified by RMC site engineer, against delivery challan and insurance certificate.
Released upon delivery of modules and inverters verified by RMC site engineer, against delivery challan and insurance certificate.
|
|
|