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| # | Company | Amount | Rank | Status |
|---|---|---|---|---|
| 1 | 1₹85,078Accepted-AOC NO 4 S8 VIJAYALAKSHMI FLAT CHROMPET ROAD NANMANGALAM CHENNAI 600 117 | CHENGALPATTU | TAMIL NADU | 600117 | 1 | Accepted-AOC Accepted | |
| 2 | 2₹13,266−₹71,812 (84.4%)Accepted-AOC | 2 | Accepted-AOC Accepted | |
| 3 | 3₹8,732−₹76,346 (89.7%)Accepted-AOC 42 MEENACHI SUNDARAM ST KARUNGAL PALAYAM ERODE | ERODE | ERODE | TAMIL NADU | 3 | Accepted-AOC Accepted | |
| 4 | 4₹7,670−₹77,408 (91.0%)Accepted-AOC VERBAL BUILDING 2 468 PHUDUPPATTI ROAD NEAR JEYAVILAS GARDEN KADACHANENTHAL MADURAI 625107 | MADURAI | MADURAI | TAMIL NADU | 625107 | 4 | Accepted-AOC Accepted | |
| 5 | 5₹5,475−₹79,603 (93.6%)Accepted-AOC | 5 | Accepted-AOC Accepted |
| Sl No | Description | Qty | Unit | MI Measuring Instruments L5 | Vi Microsystems Pvt Ltd L6 | TECHLAB ELECTRONICS L4 | Jupiter Scientific Company L10 | micro mech instruments L7 | RK ENGINEERING L8 | Om Technocrafts Corporation L2 | MJS TECHNOLOGY SOLUTIONS L1 | BARATHI ENTERPRISES L3 | Dynalab Solutions Pvt Ltd L9 |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 1.00Consumables | |||||||||||||
| 1.01 | PLC Trainer Kit Allen Bradley Micro 810 PLC Analog and Digital I/O Module
PLC Trainer with Allen Bradley Micro810Controller (2080LC1012QWB) 6 digital inputs, 2 analog inputs and 4 digital outputs
6 Digital input switches
2 analog inputs with DC (0-10V) variable input
4 Digital Relay outputs with LED indication
4 NO contacts of the relays connected at outputs of the PLC and a buzzer
24V operated, built-in power supply, additional 5V Power Supply
Computer connectivity to download the program using USB Port with cable
Professional Programming Software - Component Connect Workbench (CCW)
Legend printed in the PCB
Closed wooden cabinet | 7 | Nos | 98,000 ₹1,15,640 | 1,07,310 ₹1,26,625.8 | 85,848 ₹1,01,300.64 | 9,10,000 ₹10,73,800 | 1,12,000 ₹1,32,160 | 2,55,500 ₹3,01,490 | 78,750 ₹92,925 | 72,100 ₹85,078 Lowest | 89,180 ₹1,05,232.4 | 4,44,913 ₹5,24,997.34 |
| 1.02 | Trainer kit - Interfacing of Discrete Field Devices with PLC
(Push button, Limit switch, Reed switch, 3-wire Proximity Sensor and Buzzer)
Sequence of Operation:
Develop Ladder Logic in PLC to execute the following logical relation between the input and output field devices.
Y = A + B + C + D
Y = A. B.C. D
Y = (A+B). (C+D)
Y = (A.B) + (C.D)
Interface Contains:
PLC Input Interfacing Push
Button (A) Limit Switch (B) Reed Switch (C) 3 wire Inductive Proximity Sensor (D)
PLC Output Interfacing Buzzer (Y)
Closed Wooden cabinet | 1 | No | 4,000 ₹4,720 | 3,578 ₹4,222.04 | 2,862 ₹3,377.16 Lowest | 24,500 ₹28,910 | 6,000 ₹7,080 | 18,500 ₹21,830 | 3,250 ₹3,835 | 4,000 ₹4,720 | 3,440 ₹4,059.2 | 51,271.1 ₹60,499.9 |
| 1.03 | TTrainer kit – PLC Based Conveyor System with Pre Warning Siren Interface
Sequence of Operation:
Develop and Execute Ladder Logic in PLC using an ON delay timer to delay the start of a conveyor.
While press the START button, activate the Warning Siren for Pre-set Time. After the Pre-Set time delay the Warning siren turns OFF and the conveyor starts running.
When STOP button is pressed turns OFF the conveyor
Interface Details – Sloped Conveyor System:
Mechanical Setup:
Sloped conveyor integrated with 1 Nos. Shawl Sheet Metal Models for material handling demonstration. PLC Input Interfacing:
1 No. Inductive Proximity Sensors to detect presence of shawls on the conveyor.
1 No. Start Push Buttons – One for each conveyor.
1 No. Stop Push Buttons – For individual conveyor control.
1 No. FWD/REV Toggle Switches – To set direction of conveyor operation (Forward/Reverse).
PLC Output Interfacing:
1 No. Siren – To provide audible alarms upon detection events or conditions.
1 No. Conveyor Belts driven by Geared DC Motors – Controlled through PLC for start/stop and direction.
All components housed in a Metal Closed Cabinet for safety integration | 1 | No | 6,000 ₹7,080 | 5,100 ₹6,018 | 4,080 ₹4,814.4 Lowest | 74,500 ₹87,910 | 7,500 ₹8,850 | 12,500 ₹14,750 | 4,600 ₹5,428 | 5,000 ₹5,900 | 4,540 ₹5,357.2 | 1,45,000 ₹1,71,100 |
| 1.04 | ITrainer kit – PLC Based Water Level Control System Interface
Sequence of Operation:
Develop and Execute Ladder Logic in PLC to fill the empty tank with liquid when the START button is pressed.
When liquid reaches the HIGH Level, turn OFF the Pump Motor and turn ON the Solenoid Valve to drain the liquid from tank.
When liquid reaches the LOW Level, turn OFF the Solenoid Valve and turn ON the Pump Motor for refilling.
Interface external pilot lamp with PLC to indicate the operation of Pump Motor and Solenoid Valve.
Interface Contains:
Low High Level sensors as input to the PLC
Water tap as output from the PLC
Water Pump motor control using outputs of the PLC
Water Tank with sump and Overhead tank model
2 Levels sensor switches and 12 V Pump
24 V Solenoid valve to drain water,
Foot valve arrangement to take the water from the sump
12 V and 24V Power Supply Provided | 1 | No | 6,500 ₹7,670 | 7,725 ₹9,115.5 | 6,180 ₹7,292.4 | 1,30,000 ₹1,53,400 | 14,000 ₹16,520 | 18,500 ₹21,830 | 5,250 ₹6,195 | 5,000 ₹5,900 | 4,640 ₹5,475.2 Lowest | 38,135 ₹44,999.3 |
| 1.05 | Trainer kit – PLC Based Counting of Moving Objects on Two Conveyors Interface
Sequence of Operation:
A manufacturing plant is arranged with 2 feeder conveyors for transferring the Objects into the plant.
Develop and Execute Ladder Logic using math instruction in PLC to get the total number of objects transferred by 2 conveyors into the Plant.
When the count of total object has reached pre-set count value, turn ON buzzer to give beep sound for 1 second and turn OFF the conveyors.
Interface Details – Sloped Conveyor System:
Mechanical Setup:
Sloped conveyor integrated with 2 Nos. Shawl Sheet Metal Models for material handling demonstration.
PLC Input Interfacing:
2 Nos. Inductive Proximity Sensors to detect presence of shawls on the conveyor.
2 Nos. Start Push Buttons – One for each conveyor.
2 Nos. Stop Push Buttons – For individual conveyor control.
2 Nos. FWD/REV Toggle Switches – To set direction of conveyor operation (Forward/Reverse).
PLC Output Interfacing:
2 Nos. Buzzers – To provide audible alarms upon detection events or conditions.
2 Nos. Conveyor Belts driven by Geared DC Motors
Controlled through PLC for start/stop and direction.
All components housed in a Metal Closed Cabinet for safety integration. | 1 | No | 6,500 ₹7,670 Lowest | 10,875 ₹12,832.5 | 8,700 ₹10,266 | 74,500 ₹87,910 | 18,000 ₹21,240 | 15,900 ₹18,762 | 8,300 ₹9,794 | 7,000 ₹8,260 | 7,340 ₹8,661.2 | 93,220 ₹1,09,999.6 |
| 1.06 | Trainer kit – PLC Based Car Parking Control System Interface
Sequence of Operation – Parking Lot Management:
Parking Capacity:
The parking lot accommodates a maximum of 10 cars.
Sensor Interfacing:
Sensor 1 (Opto Interrupter or Proximity Sensor) is installed at the ENTRY Gate to detect incoming vehicles.
Sensor 2 (Opto Interrupter or Proximity Sensor is installed at the EXIT Gate to detect outgoing vehicles.
Logic Implementation:
Develop and execute a Ladder Logic Program in the PLC to:
Increment the car count when Sensor 1 is triggered (ENTRY).
Decrement the car count when Sensor 2 is triggered (EXIT).
Pilot Lamp Indication:
When the car count < 10, turn ON the "AVAILABLE" pilot lamp.
When the car count = 10, turn ON the "FULL" pilot lamp and disable the barrier gate at ENTRY to prevent additional vehicles from entering.
Interface Details: PLC Input Interfacing:
2 Nos. Opto Interrupter Sensors
1 No. at Entry Gate
1 No. at Exit Gate
2 Nos. Limit Switches for position/status detection
2 Nos. Pilot Lamps
1 No. for Availability Status
1 No. for Full Capacity Indication
PLC Output Interfacing:
Barrier Gate Control for incoming and outgoing vehicles using 2 Nos. DC Motors
Wooden Closed Cabinet for housing all PLC and interfacing components | 1 | No | 7,500 ₹8,850 | 9,375 ₹11,062.5 | 7,500 ₹8,850 | 36,000 ₹42,480 | 15,000 ₹17,700 | 28,500 ₹33,630 | 4,100 ₹4,838 Lowest | 4,500 ₹5,310 | 5,540 ₹6,537.2 | 2,50,000 ₹2,95,000 |
| 1.07 | Trainer kit – PLC Based Fan Control for Energy Conservation Interface
Sequence of Operation – Meeting Hall Fan Control:
Objective: Develop and execute a Ladder Logic Program in PLC to control the operation of fans in a meeting hall based on real-time person count. Sensor Interfacing:
Interface a suitable Photoelectric Proximity Sensor or IR Sensor at the ENTRY Gate to detect and count individuals entering the hall.
Output Devices:
Interface Low Voltage DC Fans with the PLC for output control.
Assume the meeting hall capacity is 10 persons for logic reference.
Control Logic:
<50% Occupancy (0–4 persons): urn ON Fan F1 and Fan F2
70–80%Occupancy (7–8 persons): Turn ON Fan F1, F2, and F3
≥ 90% Occupancy (9 or more persons): Turn ON Fan F1, F2, F3, and F4
Real-Time Interface:
System should dynamically update the fan outputs based on live person count.
Interface Details
PLC Input Interfacing:
2 Nos. Photoelectric Proximity Sensors
1 No. at Entry Hall
1 No. at Exit Hall
PLC Output Interfacing:
- 4 Nos. 24V DC Fans
Wooden closed cabinet for housing
components | 1 | No | 6,500 ₹7,670 | 7,100 ₹8,378 | 5,650 ₹6,667 | 3,600 ₹3,600 Lowest | 17,000 ₹20,060 | 65,000 ₹76,700 | 4,000 ₹4,720 | 5,000 ₹5,900 | 4,540 ₹5,357.2 | 34,322 ₹40,499.96 |
| 1.08 | rainer kit – PLC Based Illumination Control System
Sequence of Operation:
Develop and execute a Ladder Logic Program for a multilevel illumination control system using PLC.
The system will read input from a Potentiometer, and based on its percentage value, control the number of lamps activated as follows:
≥ 25%: Turn ON 1 lamp to achieve minimum illumination.
≥ 50%: Turn ON 2 lamps to achieve medium illumination.
≥ 75%: Turn ON 3 lamps to achieve maximum illumination.
The control logic should ensure smooth transitions between illumination levels as the potentiometer value changes.
Interface Details:
PLC Input Interfacing:
1 No. Potentiometer for percentage-based input reading
1 No. LDR (Light Dependent Resistor) for illumination sensing
PLC Output Interfacing:
4 Nos. 24V LED Light Setup (controlled via PLC output)
Real-Time Interface:
Live data acquisition and control for immediate system response
Wooden closed cabinet for secure and organized housing of components. | 1 | No | 6,500 ₹7,670 | 4,940 ₹5,829.2 | 3,950 ₹4,661 | 36,000 ₹42,480 | 10,000 ₹11,800 | 25,500 ₹30,090 | 3,300 ₹3,894 Lowest | 5,000 ₹5,900 | 3,340 ₹3,941.2 | 40,500 ₹47,790 |
| 1.09 | Conveyor Trainer kit (Without PLC): Control and Power circuit for Conveyor Motor without PLC
Sequence of Operation:
Control and Main circuit for Conveyor Motor with detection of metal object stop the Conveyor Motor for 5 seconds. (Use Proximity sensor and Timer) | 1 | No | 6,000 ₹7,080 | 5,375 ₹6,342.5 | 4,300 ₹5,074 Lowest | 36,000 ₹42,480 | 10,000 ₹11,800 | 25,000 ₹29,500 | 4,600 ₹5,428 | 5,000 ₹5,900 | 6,440 ₹7,599.2 | 25,423 ₹29,999.14 |
Tender Value
Refer Docs
Closing Date
25 Jul 2025, 11:00 amClosed
Principal
Government Polytechnic college, Palayamkottai Road, Thoothukudi - 628 008.
refer tender notice
2025_DoTE_580004_1
2132/A3/2025
Open Tender
Miscellaneous Goods
Supply
Government Polytechnic College, Thoothukudi
Please refer Tender documents.
3 documents required · 3 mandatory
₹0
Exempted
23 Sept 2025
9 Jul 2025
26 Jul 2025
9 Jul 2025
25 Jul 2025
9 Jul 2025
Consumables
PLC Trainer Kit Allen Bradley Micro 810 PLC Analog and Digital I/O Module PLC Trainer with Allen Bradley Micro810Controller (2080LC1012QWB) 6 digital inputs, 2 analog inputs and 4 digital outputs 6 Digital input switches 2 analog inputs with DC (0-10V) variable input 4 Digital Relay outputs with LED indication 4 NO contacts of the relays connected at outputs of the PLC and a buzzer 24V operated, built-in power supply, additional 5V Power Supply Computer connectivity to download the program using USB Port with cable Professional Programming Software - Component Connect Workbench (CCW) Legend printed in the PCB Closed wooden cabinet
Trainer kit - Interfacing of Discrete Field Devices with PLC (Push button, Limit switch, Reed switch, 3-wire Proximity Sensor and Buzzer) Sequence of Operation: Develop Ladder Logic in PLC to execute the following logical relation between the input and output field devices. Y = A + B + C + D Y = A. B.C. D Y = (A+B). (C+D) Y = (A.B) + (C.D) Interface Contains: PLC Input Interfacing Push Button (A) Limit Switch (B) Reed Switch (C) 3 wire Inductive Proximity Sensor (D) PLC Output Interfacing Buzzer (Y) Closed Wooden cabinet
TTrainer kit – PLC Based Conveyor System with Pre Warning Siren Interface Sequence of Operation: Develop and Execute Ladder Logic in PLC using an ON delay timer to delay the start of a conveyor. While press the START button, activate the Warning Siren for Pre-set Time. After the Pre-Set time delay the Warning siren turns OFF and the conveyor starts running. When STOP button is pressed turns OFF the conveyor Interface Details – Sloped Conveyor System: Mechanical Setup: Sloped conveyor integrated with 1 Nos. Shawl Sheet Metal Models for material handling demonstration. PLC Input Interfacing: 1 No. Inductive Proximity Sensors to detect presence of shawls on the conveyor. 1 No. Start Push Buttons – One for each conveyor. 1 No. Stop Push Buttons – For individual conveyor control. 1 No. FWD/REV Toggle Switches – To set direction of conveyor operation (Forward/Reverse). PLC Output Interfacing: 1 No. Siren – To provide audible alarms upon detection events or conditions. 1 No. Conveyor Belts driven by Geared DC Motors – Controlled through PLC for start/stop and direction. All components housed in a Metal Closed Cabinet for safety integration
ITrainer kit – PLC Based Water Level Control System Interface Sequence of Operation: Develop and Execute Ladder Logic in PLC to fill the empty tank with liquid when the START button is pressed. When liquid reaches the HIGH Level, turn OFF the Pump Motor and turn ON the Solenoid Valve to drain the liquid from tank. When liquid reaches the LOW Level, turn OFF the Solenoid Valve and turn ON the Pump Motor for refilling. Interface external pilot lamp with PLC to indicate the operation of Pump Motor and Solenoid Valve. Interface Contains: Low High Level sensors as input to the PLC Water tap as output from the PLC Water Pump motor control using outputs of the PLC Water Tank with sump and Overhead tank model 2 Levels sensor switches and 12 V Pump 24 V Solenoid valve to drain water, Foot valve arrangement to take the water from the sump 12 V and 24V Power Supply Provided
Trainer kit – PLC Based Counting of Moving Objects on Two Conveyors Interface Sequence of Operation: A manufacturing plant is arranged with 2 feeder conveyors for transferring the Objects into the plant. Develop and Execute Ladder Logic using math instruction in PLC to get the total number of objects transferred by 2 conveyors into the Plant. When the count of total object has reached pre-set count value, turn ON buzzer to give beep sound for 1 second and turn OFF the conveyors. Interface Details – Sloped Conveyor System: Mechanical Setup: Sloped conveyor integrated with 2 Nos. Shawl Sheet Metal Models for material handling demonstration. PLC Input Interfacing: 2 Nos. Inductive Proximity Sensors to detect presence of shawls on the conveyor. 2 Nos. Start Push Buttons – One for each conveyor. 2 Nos. Stop Push Buttons – For individual conveyor control. 2 Nos. FWD/REV Toggle Switches – To set direction of conveyor operation (Forward/Reverse). PLC Output Interfacing: 2 Nos. Buzzers – To provide audible alarms upon detection events or conditions. 2 Nos. Conveyor Belts driven by Geared DC Motors Controlled through PLC for start/stop and direction. All components housed in a Metal Closed Cabinet for safety integration.
Trainer kit – PLC Based Car Parking Control System Interface Sequence of Operation – Parking Lot Management: Parking Capacity: The parking lot accommodates a maximum of 10 cars. Sensor Interfacing: Sensor 1 (Opto Interrupter or Proximity Sensor) is installed at the ENTRY Gate to detect incoming vehicles. Sensor 2 (Opto Interrupter or Proximity Sensor is installed at the EXIT Gate to detect outgoing vehicles. Logic Implementation: Develop and execute a Ladder Logic Program in the PLC to: Increment the car count when Sensor 1 is triggered (ENTRY). Decrement the car count when Sensor 2 is triggered (EXIT). Pilot Lamp Indication: When the car count < 10, turn ON the "AVAILABLE" pilot lamp. When the car count = 10, turn ON the "FULL" pilot lamp and disable the barrier gate at ENTRY to prevent additional vehicles from entering. Interface Details: PLC Input Interfacing: 2 Nos. Opto Interrupter Sensors 1 No. at Entry Gate 1 No. at Exit Gate 2 Nos. Limit Switches for position/status detection 2 Nos. Pilot Lamps 1 No. for Availability Status 1 No. for Full Capacity Indication PLC Output Interfacing: Barrier Gate Control for incoming and outgoing vehicles using 2 Nos. DC Motors Wooden Closed Cabinet for housing all PLC and interfacing components
Trainer kit – PLC Based Fan Control for Energy Conservation Interface Sequence of Operation – Meeting Hall Fan Control: Objective: Develop and execute a Ladder Logic Program in PLC to control the operation of fans in a meeting hall based on real-time person count. Sensor Interfacing: Interface a suitable Photoelectric Proximity Sensor or IR Sensor at the ENTRY Gate to detect and count individuals entering the hall. Output Devices: Interface Low Voltage DC Fans with the PLC for output control. Assume the meeting hall capacity is 10 persons for logic reference. Control Logic: <50% Occupancy (0–4 persons): urn ON Fan F1 and Fan F2 70–80%Occupancy (7–8 persons): Turn ON Fan F1, F2, and F3 ≥ 90% Occupancy (9 or more persons): Turn ON Fan F1, F2, F3, and F4 Real-Time Interface: System should dynamically update the fan outputs based on live person count. Interface Details PLC Input Interfacing: 2 Nos. Photoelectric Proximity Sensors 1 No. at Entry Hall 1 No. at Exit Hall PLC Output Interfacing: - 4 Nos. 24V DC Fans Wooden closed cabinet for housing components
rainer kit – PLC Based Illumination Control System Sequence of Operation: Develop and execute a Ladder Logic Program for a multilevel illumination control system using PLC. The system will read input from a Potentiometer, and based on its percentage value, control the number of lamps activated as follows: ≥ 25%: Turn ON 1 lamp to achieve minimum illumination. ≥ 50%: Turn ON 2 lamps to achieve medium illumination. ≥ 75%: Turn ON 3 lamps to achieve maximum illumination. The control logic should ensure smooth transitions between illumination levels as the potentiometer value changes. Interface Details: PLC Input Interfacing: 1 No. Potentiometer for percentage-based input reading 1 No. LDR (Light Dependent Resistor) for illumination sensing PLC Output Interfacing: 4 Nos. 24V LED Light Setup (controlled via PLC output) Real-Time Interface: Live data acquisition and control for immediate system response Wooden closed cabinet for secure and organized housing of components.
Conveyor Trainer kit (Without PLC): Control and Power circuit for Conveyor Motor without PLC Sequence of Operation: Control and Main circuit for Conveyor Motor with detection of metal object stop the Conveyor Motor for 5 seconds. (Use Proximity sensor and Timer)
Om Technocrafts Corporation (BID ID -1411881)
BARATHI ENTERPRISES (BID ID -1411454)
TECHLAB ELECTRONICS (BID ID -1405067)
MI Measuring Instruments (BID ID -1399317)
Vi Microsystems Pvt Ltd (BID ID -1405036)
micro mech instruments (BID ID -1412110)
RK ENGINEERING (BID ID -1412100)
Dynalab Solutions Pvt Ltd (BID ID -1411677)
Jupiter Scientific Company (BID ID -1410476)
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