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| # | Company | Status |
|---|---|---|
| 1 | Admitted-Finance | Admitted-Finance |
| 2 | Rejected-Technical | Rejected-Technical REJECT |
Tender Value
₹48.8 L
EMD Value
₹48,826
Closing Date
13 Jul 2021, 3:00 pmClosed
Executive Engineer
Ulhasnagar Municipal Corporation
Installation of Central oxygen suction pipeline at Regency Antilia (200 Bedded DCHC/DCH).
2021_UMC_692178_1
UMC/MHD/ET-2/2021-22
Open Tender
Consultancy
Item Rate
120 days
Ulhasnagar Municipal Corporation
Please refer Tender documents.
3 documents required · 3 mandatory
₹5,762
₹48,826
Ulhasnagar Municipal Corporation
12 Aug 2021
4 Jun 2021
14 Jul 2021
4 Jun 2021
13 Jul 2021
4 Jun 2021
9 Jun 2021
Amount
OXYGEN SYSTEM SITC Of Indigenous 5 x 5 size main manifold complete with middle frame with chain for individual cylinder along with Non Return Valves for every cylinder.It should CE compliance. D type bulk cylinder wall type oxygen manifold fabricated from high pressure non arsenical, phosphorous, deoxidized degreased seamless round 16mm OD copper pipe having 15 SWG thicknesses. The cylinders will be connected through extruded brass and hard soldered slip-on tee at every 250mm space. The third side of the tee will be ½” BSP male thread for connecting each cylinder. Each male connection of the tee will be connected with high pressure non return valve with spring loaded seat arrangement. The entire manifold top frame will be supported by 50mm x 50mm x 6mm thick steel angle with suitable distance piece at the back. So that when the manifold top frame is installed it is 50mm away form the surface of the wall. The cylinders will be connected to the manifold through high pressure coiled half hard copper tail pipe with extruded brass end connections. One end connection suitable for cylinder valve and the other end suitable for top frame NRV connection. The Tail pipe will be half hard seamless 3/8” OD and ¼” bore copper pipe. The tail pipe & manifold top frame will be tested hydraulically at 300 kg/cm2 and air tested at 200 kg/cm2. The supplied manifold should come along with manufacturer test certificates. There should be a suitable arrangement for connecting both 4 + 4 cylinder bank to a fully automatic control panel. Middle frame:-The cylinders will be supported by a middle frame fabricated from 3½” x 2½ “ x 6mm thick steel angle to be installed at 3feet 10 inch height from the floor level. This will be curved cut with 4½” radius for support each cylinder. Middle frame will have GI chain link connection to hold each cylinder. The steel middle frame will be powder coated to 3 micron.
OXYGEN SYSTEM SITC Of Indegious , Digital Fully Automatic Control Panel for Oxygen 2100lpm,NFPA-99 standards, It should fully complies and meets NFPA-99 standards only. Country of origin certificate must be submitted. It should be UL Listed/ETL Listed. It shall be dome loaded fully automatic control panel and shall have digital display. Panel should be integrated with pressure gauges, regulators and control switching components inside panel. Should have digital LCD display ( LCD screen size 10incg or above ) the actual running status of bank in use. The unit should be compact and housed in a NEMA Type-1 enclosure with locking provision. It should be fully automatic type and shall switch from “Bank in Use” to “Reserve Bank” without fluctuation in the final line pressure. After the switchover, the “Reserve Bank” shall then become the “Bank in Use” and the “Bank in Use” shall become the “Reserve Bank.” The control panel includes a line gauge, two bank gauges and incorporates six LED’s: two green for “Bank in Use,” two yellow for “Bank Ready” and two red for “Bank Empty” on the front of the cabinet. The manifold shall consist of two bank regulators (dome bias) used to reduce the cylinder pressure to the two line regulators which in turn controls the final line pressure.The manifold has an intermediate and line relief valve that is internally connected to a common vent port, terminating into a 1/2" FNPT pipe. The header bars shall be equipped with highpressure shutoff valves outside the cabinet to allow for emergency isolation of the header bars. The header bar shall incorporate integral check valves for each station. The manifold is equipped with pressure transducers, which sends information to the main circuit board for operation of the fail-safe relay which transmits a remote signal to the master alarm or buzzer.The external shut-off valves connecting to the header bars must be ball valves capable of withstanding pressure of 3,000 psi. The manifold shall be installed in accordance with the requirements stated by NFPA 99, CGA,HTM 02-01,EN ISO 7396 1&2 ,Country of origin certificate must be submitted. It should be UL Listed/ETL Listed.
OXYGEN SYSTEM SITC Of Indegious , 2+2 size Emergency manifold complete with middle frame with chain for individual cylinder along with Non Return Valves for every cylinder .It should CE compliance.oxygen cylinder emergency manifold with 4nos. double stage oxygen high flow regulator installed in parallel and controlled by 15mm NB full port brass ball valve duly electro plated. The construction of the emergency manifold will be similar to the oxygen manifold mention above including the middle frame.
OXYGEN SYSTEM SITC Of Indegious ,Outlets SSV type- bottom loading Oxygen. NFPA ,UL Listed/ETL Listed certificate. Should fully complies with NFPA-99 standards or CGA standards. 0r HTM02-01 or BS EN ISO 7396 1&2. It should be duly USFDA or UL Listed or ETL Listed. The body shall be of 1-5/16" [33 mm] diam¬eter, one piece brass construction. For positive pressure gas services, the outlet shall be equipped with a primary and secondary check valve and the secondary check valve shall be rated at a maximum of 200 psi [1,379 kPa] in the event the primary check valve is removed for maintenance. Outlet bodies shall be gas specific by indexing each gas ser¬vice to a gas specific dual pin indexing arrangement on the respective identification module. It should have large color coded front plate shall be used for ease of gas identification and aesthetic appeal. It should have one piece chromed fascia plate shall frame the outlet. With the back rough-in mounted, the outlet shall adjust from 3/8" [10 mm] to 1" [25 mm] variation in wall thickness. It should have modular design. It should have 360° Swivel Inlet Pipe for easy installation and should have universal rough-in assembly to accept quick disconnects or diss front adaptors
OXYGEN SYSTEM SITC Of Indigenous BPC Oxygen flow meter with Humidifier Bottle. 0-15 L/min standard flow rate. It should CE compliance.
OXYGEN SYSTEM SITC of Indegious , Oxygen High Pressure Rubber tube white color.
VACUUM SYSTEM SITC Of Base Frame Mounted Indigenous Oil Lubricated Reciprocating Vacuum Pumps , Model V255 each having 34.60 cfm PD with 5 HP 3 Phase electric motor.
VACUUM SYSTEM SITC Of Indigenous Vacuum Receiver Tank 1000 ltr.
VACUUM SYSTEM
VACUUM SYSTEM SITC Of Indigenous ,Gas Outlets SSV type- bottom loading Vacuum. NFPA Type,UL Listed/ETL Listed certificate Should fully complies with NFPA-99 standards or CGA standards.or 0r HTM02-01 or BS EN ISO 7396 1&2.. The body shall be of 1-5/16" [33 mm] diam¬eter, one piece brass construction. For positive pressure gas services, the outlet shall be equipped with a primary and secondary check valve and the secondary check valve shall be rated at a maximum of 200 psi [1,379 kPa] in the event the primary check valve is removed for maintenance. Outlet bodies shall be gas specific by indexing each gas ser¬vice to a gas specific dual pin indexing arrangement on the respective identification module. It should have large color coded front plate shall be used for ease of gas identification and aesthetic appeal. It should have one piece chromed fascia plate shall frame the outlet. With the back rough-in mounted, the outlet shall adjust from 3/8" [10 mm] to 1" [25 mm] variation in wall thickness. It should have modular design and include a gas specific 16 ga. [1.6 mm] steel mounting plate designed to permit on-site ganging of multiple outlets, in any order, on 5" [127 mm] spacing. It should be cleaned and degreased for medical gas service, factory assembled and tested. It should be Indexed to eliminate interchangeability of gas services. It should have 360° Swivel Inlet Pipe for easy installation and should have universal rough-in assembly to accept quick disconnects or diss front adaptors
VACUUM SYSTEM SITC Of Indigenous Ward Vacuum Unit with Regulator, Collection Jar of 600 ml with Bracket
VACUUM SYSTEM SITC Of Indigenous ,Vacuum High Pressure Rubber tube Yellow color.
SITC Of Medical Grade Copper Pipes BS EN 13348:2016 BSI Kite Mark, Copper Pipes used should be solid drawn, seamless, Deoxidized phosphorus,non-arsenical, half hard, tempered and degreased, Manufactured as per BS EN 13348: 2016 in eitherR250 half hard or R290 hard Meeting the requirements as per the Medical grade Copper pipe standards. Degreasing of pipe shall be such that there is less than 20mg/m2 (0.20mg/dm2 of hydrocarbons on the degreased surface when tested by method specified by BS EN 13348: 2016. It should also have LLOYD third party inspection of copper pipes. The supplier should provide Manufacturer's Test Certificate of copper pipes for physical Properties and chemical composition. Copper pipes joined by silver brazing method for copper to brass. Inert gas welding technique should be used by passing Nitrogen gas inside the copper pipes during brazing, in order toavoid carbon deposition inside the copper pipes. All copper pipes and fittings like bends, Tees, reducers and straight couplings should be As per EN 1254-1. Copper pipes to be fixed with walls with suitable saddles and supports after erection, All the pipes should be cleaned or purged with the help of dry nitrogen gas, &Should be tested with dry Nitrogen 35 mm OD x 1.2 mm thick
SITC Of Medical Grade Copper Pipes BS EN 13348:2016 BSI Kite Mark, Copper Pipes used should be solid drawn, seamless, Deoxidized phosphorus,non-arsenical, half hard, tempered and degreased, Manufactured as per BS EN 13348: 2016 in eitherR250 half hard or R290 hard Meeting the requirements as per the Medical grade Copper pipe standards. Degreasing of pipe shall be such that there is less than 20mg/m2 (0.20mg/dm2 of hydrocarbons on the degreased surface when tested by method specified by BS EN 13348: 2016. It should also have LLOYD third party inspection of copper pipes. The supplier should provide Manufacturer's Test Certificate of copper pipes for physical Properties and chemical composition. Copper pipes joined by silver brazing method for copper to brass. Inert gas welding technique should be used by passing Nitrogen gas inside the copper pipes during brazing, in order toavoid carbon deposition inside the copper pipes. All copper pipes and fittings like bends, Tees, reducers and straight couplings should be As per EN 1254-1. Copper pipes to be fixed with walls with suitable saddles and supports after erection, All the pipes should be cleaned or purged with the help of dry nitrogen gas, &Should be tested with dry Nitrogen 28 mm OD x 1 mm thick
SITC Of Medical Grade Copper Pipes BS EN 13348:2016 BSI Kite Mark, Copper Pipes used should be solid drawn, seamless, Deoxidized phosphorus,non-arsenical, half hard, tempered and degreased, Manufactured as per BS EN 13348: 2016 in eitherR250 half hard or R290 hard Meeting the requirements as per the Medical grade Copper pipe standards. Degreasing of pipe shall be such that there is less than 20mg/m2 (0.20mg/dm2 of hydrocarbons on the degreased surface when tested by method specified by BS EN 13348: 2016. It should also have LLOYD third party inspection of copper pipes. The supplier should provide Manufacturer's Test Certificate of copper pipes for physical Properties and chemical composition. Copper pipes joined by silver brazing method for copper to brass. Inert gas welding technique should be used by passing Nitrogen gas inside the copper pipes during brazing, in order toavoid carbon deposition inside the copper pipes. All copper pipes and fittings like bends, Tees, reducers and straight couplings should be As per EN 1254-1. Copper pipes to be fixed with walls with suitable saddles and supports after erection, All the pipes should be cleaned or purged with the help of dry nitrogen gas, &Should be tested with dry Nitrogen 22 mm OD x 1 mm thick
SITC Of Medical Grade Copper Pipes BS EN 13348:2016 BSI Kite Mark, Copper Pipes used should be solid drawn, seamless, Deoxidized phosphorus,non-arsenical, half hard, tempered and degreased, Manufactured as per BS EN 13348: 2016 in eitherR250 half hard or R290 hard Meeting the requirements as per the Medical grade Copper pipe standards. Degreasing of pipe shall be such that there is less than 20mg/m2 (0.20mg/dm2 of hydrocarbons on the degreased surface when tested by method specified by BS EN 13348: 2016. It should also have LLOYD third party inspection of copper pipes. The supplier should provide Manufacturer's Test Certificate of copper pipes for physical Properties and chemical composition. Copper pipes joined by silver brazing method for copper to brass. Inert gas welding technique should be used by passing Nitrogen gas inside the copper pipes during brazing, in order toavoid carbon deposition inside the copper pipes. All copper pipes and fittings like bends, Tees, reducers and straight couplings should be As per EN 1254-1. Copper pipes to be fixed with walls with suitable saddles and supports after erection, All the pipes should be cleaned or purged with the help of dry nitrogen gas, &Should be tested with dry Nitrogen 15 mm OD x 1 mm thick
SITC Of Medical Grade Copper Pipes BS EN 13348:2016 BSI Kite Mark, Copper Pipes used should be solid drawn, seamless, Deoxidized phosphorus,non-arsenical, half hard, tempered and degreased, Manufactured as per BS EN 13348: 2016 in eitherR250 half hard or R290 hard Meeting the requirements as per the Medical grade Copper pipe standards. Degreasing of pipe shall be such that there is less than 20mg/m2 (0.20mg/dm2 of hydrocarbons on the degreased surface when tested by method specified by BS EN 13348: 2016. It should also have LLOYD third party inspection of copper pipes. The supplier should provide Manufacturer's Test Certificate of copper pipes for physical Properties and chemical composition. Copper pipes joined by silver brazing method for copper to brass. Inert gas welding technique should be used by passing Nitrogen gas inside the copper pipes during brazing, in order toavoid carbon deposition inside the copper pipes. All copper pipes and fittings like bends, Tees, reducers and straight couplings should be As per EN 1254-1. Copper pipes to be fixed with walls with suitable saddles and supports after erection, All the pipes should be cleaned or purged with the help of dry nitrogen gas, &Should be tested with dry Nitrogen 12 mm OD x 0.7 mm thick
SITC Of Indegious ,Digital Medical Gas Area Alarm NFPA-99 standards, It should fully complies and meets NFPA-99 standards only. Country of origin certificate must be submitted. It should be UL Listed/ETL Listed certificate must be submitted. The alarm shall be microprocessor based with a 10" screen and capable of monitoring up to 8 sensors. Sensors shall be mounted locally (in the rough-in box) by installing the copper pipe provided or mounted remotely. Sensors shall be automated for gas specific detection. Area alarm shall be fabricated from 18 gauge steel with a 3/8" O.D. type “K” copper pipe for connection to the service line. The default set-points shall be +/- 20% variation from normal condition. In the calibration mode High/Low set-points shall be adjustable by on board push buttons. To view the set points and audible alarm sound level, press and hold the mute button for twenty (20) seconds. The digital sensors can be mounted locally or remotely utilizing shielded twisted pair wiring up to 500 ft. The sensors shall be designed to create interference barrier for increased RFI/EMI protection. The LCD brightness and volume shall be field adjustable. The LCD display shall be readable in poor lighting conditions. Screen text shall be customizable for gas locations. The sensors shall be gas specific with a DISS nut and a nipple. The LCD sensors’ operating range shall be the following: Mid-pressure: 0-99 psi; Oxygen and Vacuum. The alarm shall conform to UL Standard 1069. The alarm shall comply with the electromagnetic compatibility standards FCC Part 15 Class A and ICES-003 Class A. -2 Gas
Indigenous , Isolation Valve with Indegenous Brass fittings 35mm
Indigenous , Isolation Valve with Indegenous Brass fittings 28mm
ndigenous , Isolation Valve with Indegenous Brass fittings 22 MM.
Indigenous , Isolation Valve with Indegenous Brass fittings 15 mm
Central line connection to PSA plant
Central line Conection for liquid Oxygen and Vaporiser system
Bed Head Panel vertical with cutouts for outlet points, electrical sockets, length as per drawing
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