Vapour Absorption Refrigeration Trainer (Product Code: SLE/MCE/84) is a heat-driven refrigeration training unit used to show how an absorption system produces cooling from thermal energy instead of a mechanical compressor, in refrigeration and air-conditioning laboratories. This engineering educational equipment in India works with an ammonia-water solution and hydrogen as auxiliary gas, driven by a 125 W electric heater, with an adjustable 50 W evaporator heater as the cooling load. It is made by Jain Scientific Equipments Pvt Ltd (ScienceLab), an OEM manufacturer, at its own factory in Ambala, India.
| Parameter | Detail |
|---|---|
| Working medium | Ammonia-water solution |
| Auxiliary gas | Hydrogen |
| Electric heater | 125 W |
| Evaporator heater | 50 W, adjustable |
| Measuring range – temperature | 4 × −80 to 180 °C |
| Measuring range – power | 0–150 W |
| Dimensions | 800 × 750 × 1200 mm |
| Weight | Approx. 85 kg |
| Power supply options | 230 V, 50 Hz, 1 phase or 230 V, 60 Hz, 1 phase |
| Product code | SLE/MCE/84 |
| Manufacturer | Jain Scientific Equipments Pvt Ltd (ScienceLab) — OEM |
| Country of origin | India (made in Ambala, Haryana) |
Absorption refrigeration systems run on thermal energy — for example industrial waste heat or heat from solar collectors — and small mobile units such as camping refrigerators or hotel minibars generate that heat electrically or with a gas burner. The trainer demonstrates the principle behind them: a liquid evaporates at low temperature when its pressure is reduced, and the ammonia vapour is taken up by water and driven out again by heat rather than being compressed. In process plants the same idea lets waste heat be used for cooling.
Students record temperatures at four points together with the heater powers, then load the evaporator with the adjustable heater to find the cooling effect and compare it with the heat input to estimate the coefficient of performance. Because an absorption system takes time to reach steady operation, switch the 125 W heater on well before the practical and take readings only once temperatures have settled.
ScienceLab is how Jain Scientific Equipments Private Limited trades, and the company is the OEM of the Vapour Absorption Refrigeration Trainer. The trainer is manufactured at its licensed factory in Saha, Ambala, Haryana, India, and sold factory-direct to engineering colleges, polytechnics, laboratory dealers and importers — not through intermediaries.
For later questions about servicing, spares or additional units, ask us and the manufacturing team will answer. The company profile gives more background.
Refrigeration laboratories usually teach absorption alongside these trainers:
See all refrigeration and heat transfer trainers in the Thermodynamics & Heat Transfer Lab Equipment category.
How does the Vapour Absorption Refrigeration Trainer cool without a compressor?
The Vapour Absorption Refrigeration Trainer uses heat instead of a compressor: a 125 W electric heater drives the ammonia-water solution cycle, with hydrogen as auxiliary gas, so ammonia evaporates at low temperature and produces cooling in the evaporator.
What working fluids does the Vapour Absorption Refrigeration Trainer use?
The Vapour Absorption Refrigeration Trainer works with an ammonia-water solution as working medium and hydrogen as auxiliary gas. Keep the unit upright and follow standard ammonia safety practice, as ammonia is hazardous if it is ever released.
What does the Vapour Absorption Refrigeration Trainer measure?
The Vapour Absorption Refrigeration Trainer measures temperature at four points over −80 to 180 °C and power over 0–150 W, which covers the 125 W heater and the adjustable 50 W evaporator heater used as cooling load.
Where is the principle of the Vapour Absorption Refrigeration Trainer used in practice?
The principle shown by the Vapour Absorption Refrigeration Trainer is used where heat is readily available — industrial waste heat or solar collectors — and in small mobile units such as camping refrigerators and hotel minibars heated electrically or by gas.
Who manufactures the Vapour Absorption Refrigeration Trainer?
Jain Scientific Equipments Pvt Ltd (ScienceLab) manufactures the Vapour Absorption Refrigeration Trainer as the OEM at its own factory in Saha, Ambala, Haryana, India, and quotes it directly to colleges, dealers and importers.
What size and power supply does the Vapour Absorption Refrigeration Trainer need?
The Vapour Absorption Refrigeration Trainer measures 800 × 750 × 1200 mm, weighs about 85 kg and runs on a 230 V single-phase supply at 50 Hz or 60 Hz, so a floor or sturdy bench position is needed.
To receive a quotation for the Vapour Absorption Refrigeration Trainer, send your details through the contact page or add it to the enquiry cart. The quotation comes to you from the manufacturer.
Last updated: 24 September 2026
Gas Charging Trainer (Product Code: SLE/MCE/85) is a refrigeration service training unit used to practise evacuating a system and charging it with refrigerant in HVAC workshops and technician training laboratories. As vocational training lab equipment, it comes with a vacuum pump, a filling cylinder for 1000 g of R134a and manometers with an R134a temperature scale, so trainees handle the same tasks met in field service. It is made by Jain Scientific Equipments Pvt Ltd (ScienceLab), an OEM manufacturer, at its own factory in Ambala, India.
| Parameter | Detail |
|---|---|
| Construction | Bench-top unit |
| Evacuation | Vacuum pump with vacuum gauge |
| Refrigerant filling | Filling cylinder, 1000 g R134a |
| Gauges | Manometer for intake pressure; manometer for intake and delivery pressure with temperature scale for R134a |
| Connections | For intake and delivery pressure |
| Measuring range – intake pressure | −1 to 10 bar |
| Measuring range – delivery pressure | −1 to 30 bar |
| Measuring range – vacuum | 0–1000 mbar |
| Measuring range – cylinder | −1 to 25 bar |
| Dimensions | 1000 × 700 × 1400 mm |
| Weight | 110 kg |
| Power supply options | 230 V, 50 Hz, 1 phase or 230 V, 60 Hz, 1 phase |
| Product code | SLE/MCE/85 |
| Manufacturer | Jain Scientific Equipments Pvt Ltd (ScienceLab) — OEM |
| Country of origin | India (made in Ambala, Haryana) |
Service technicians must be able to evacuate a refrigeration circuit, confirm the vacuum and then add the correct refrigerant charge. On this trainer students connect service lines to the intake and delivery connections, pull a vacuum with the pump while watching the vacuum gauge (0–1000 mbar), and then charge R134a from the filling cylinder while reading the intake and delivery manometers.
The R134a temperature scale on the manometer lets trainees convert pressure readings into saturation temperatures and judge whether a system is under- or over-charged. Always wear safety glasses and gloves when handling refrigerant, close the cylinder valve after charging, and never vent R134a to atmosphere.
ScienceLab is the trading name of Jain Scientific Equipments Private Limited, incorporated under CIN U29309HR2020PTC087597 and the OEM of the Gas Charging Trainer. Each trainer is manufactured at the company’s licensed factory in Saha, Ambala (Factory Licence AMB-ONLINE-CHD-J-414), and supplied direct to ITIs, polytechnics, engineering colleges, dealers and importers.
For extra filling cylinders, gauges or repeat orders, ask us — the manufacturer handles such requests itself. Read more on the ScienceLab profile.
Refrigeration service courses combine this trainer with:
Explore the Thermodynamics & Heat Transfer Lab Equipment category for the complete refrigeration range.
What is included with the Gas Charging Trainer?
The Gas Charging Trainer includes a vacuum pump, a filling cylinder for 1000 g of R134a, a vacuum gauge, a manometer for intake pressure and a manometer for intake and delivery pressure with an R134a temperature scale, plus service connections.
Which refrigerant is the Gas Charging Trainer set up for?
The Gas Charging Trainer is set up for R134a: its filling cylinder holds 1000 g of R134a and its manometer carries an R134a temperature scale. Ask us before ordering if your course uses a different refrigerant.
What pressure ranges does the Gas Charging Trainer read?
The Gas Charging Trainer reads intake pressure from −1 to 10 bar, delivery pressure from −1 to 30 bar, vacuum from 0 to 1000 mbar and cylinder pressure from −1 to 25 bar, covering evacuation and charging.
How big is the Gas Charging Trainer?
The Gas Charging Trainer is a bench-top unit of 1000 × 700 × 1400 mm weighing 110 kg, so plan a sturdy bench and handling help for installation, with a 230 V single-phase supply at 50 Hz or 60 Hz.
Who manufactures the Gas Charging Trainer?
Jain Scientific Equipments Pvt Ltd (ScienceLab) is the OEM of the Gas Charging Trainer and manufactures it at its licensed factory in Ambala, Haryana, India; institutes and dealers get quotations directly from the manufacturer.
Who is the Gas Charging Trainer designed for?
The Gas Charging Trainer suits ITIs, polytechnics, engineering colleges and HVAC service training centres that want students to practise refrigerant evacuation and charging safely before working on customer equipment.
Ask for a Gas Charging Trainer quotation on the contact page, or add it to the enquiry cart with the rest of your workshop list. The manufacturer prepares and sends the quote.
Last updated: 24 September 2026
Cut Section Model Of Rotary Hermetic Compressor (Product Code: SLE/MCE/86) is a sectioned teaching model used to show the internal parts and working principle of a rotary hermetic compressor in refrigeration and air-conditioning classrooms. Instructors value this lab equipment for technical institutes because the cut-away exposes the stationary cylinder, the roller on the shaft’s eccentric and the spring-loaded sealing blade that separates suction from discharge. It is made by Jain Scientific Equipments Pvt Ltd (ScienceLab), an OEM manufacturer, at its own factory in Ambala, India.
| Parameter | Detail |
|---|---|
| Model type | Cut-section model of a rotary hermetic compressor |
| Main parts shown | Stationary cylinder, roller and shaft; the shaft carries an eccentric on which the roller is mounted |
| Sealing blade | Set into a slot in the cylinder and kept in contact with the roller by a spring; moves in and out of the slot to follow the rotor |
| Function shown | Blade separates the suction and discharge parts; the rotating roller always touches the cylinder wall |
| Dimensions | 500 × 400 × 500 mm (approx.) |
| Weight | 35 kg (approx.) |
| Product code | SLE/MCE/86 |
| Manufacturer | Jain Scientific Equipments Pvt Ltd (ScienceLab) — OEM |
| Country of origin | India (made in Ambala, Haryana) |
The model lets students trace a compression cycle step by step. As the shaft turns, the roller mounted on its eccentric rolls around the inside of the stationary cylinder, always touching the wall, while the blade slides in and out of its slot to follow it. The space between roller and cylinder is divided by the blade into a suction side and a discharge side, so gas drawn in on one side is squeezed and pushed out on the other — which is why the part is often called a sealing blade.
Rotary compressors of this type are widely used in room air conditioners and small refrigeration units, so the model helps refrigeration mechanics, diploma and degree students understand the machine before they meet it sealed inside a real system. It works well on the front bench during lectures and alongside working refrigeration trainers in the laboratory.
Jain Scientific Equipments Private Limited, trading as ScienceLab, is the OEM that makes the Cut Section Model Of Rotary Hermetic Compressor. The model is produced at the company’s own licensed factory in Saha, Ambala, Haryana, India, and supplied factory-direct to ITIs, polytechnics, engineering colleges, dealers and importers.
Orders for additional models, or questions about other sectioned refrigeration components, go straight to the manufacturer — just ask us. See the ScienceLab company profile for more.
To move from the model to working systems, laboratories often add:
Find more refrigeration trainers and thermal apparatus in the Thermodynamics & Heat Transfer Lab Equipment category.
What parts does the Cut Section Model Of Rotary Hermetic Compressor show?
The Cut Section Model Of Rotary Hermetic Compressor shows the stationary cylinder, the roller, the shaft with its eccentric and the spring-loaded blade set into the cylinder slot, which separates the suction and discharge sides.
Why is the blade in the rotary hermetic compressor called a sealing blade?
In the Cut Section Model Of Rotary Hermetic Compressor, the blade is pressed against the roller by a spring and divides the suction side from the discharge side; because it seals these two spaces from each other, it is often called a sealing blade.
How large is the Cut Section Model Of Rotary Hermetic Compressor?
The Cut Section Model Of Rotary Hermetic Compressor measures about 500 × 400 × 500 mm and weighs about 35 kg, a size that suits demonstration from the front bench of a classroom or workshop.
Is the Cut Section Model Of Rotary Hermetic Compressor a working compressor?
No. The Cut Section Model Of Rotary Hermetic Compressor is a sectioned teaching model for showing internal construction; for refrigerant circuit practice, pair it with a working unit such as the Gas Charging Trainer or Air Conditioning System Trainer.
Who manufactures the Cut Section Model Of Rotary Hermetic Compressor?
Jain Scientific Equipments Pvt Ltd (ScienceLab) is the OEM of the Cut Section Model Of Rotary Hermetic Compressor and makes it at its own factory at Saha, Ambala, Haryana, India, supplying institutions, dealers and importers directly.
What does a quotation for the Cut Section Model Of Rotary Hermetic Compressor need?
To quote the Cut Section Model Of Rotary Hermetic Compressor, we need the quantity, the delivery location in India or abroad, and any other refrigeration models or trainers you are sourcing for the same laboratory.
Send a quotation request for the Cut Section Model Of Rotary Hermetic Compressor via the contact page, or add it to the enquiry cart. You will be quoted directly by the manufacturer.
Last updated: 24 September 2026
Computerized ICE Plant Trainer (Product Code: SLE/MCE/87) is a vapour-compression refrigeration trainer used to demonstrate ice making and measure refrigeration performance in refrigeration and air-conditioning laboratories. Engineering colleges and technical institutes use it for its hermetically sealed Kirloskar-make compressor, stainless steel tank and evaporator, and two pressure plus six temperature transmitters. It is supplied by Jain Scientific Equipments Pvt Ltd (ScienceLab), a laboratory equipment supplier in Ambala, India.
| Parameter | Detail |
|---|---|
| Compressor | Hermetically sealed compressor, Kirloskar make |
| Condenser | Air cooled, compatible with the compressor |
| Condenser cooling fan | Compatible capacity, with permanently lubricated motor |
| Expansion device | Capillary tube of compatible capacity |
| Evaporator | Stainless steel, insulated with ceramic wool/PUF |
| Tank | Inner tank fabricated from stainless steel |
| Pressure measurement | Pressure transmitters – 2 nos. |
| Temperature measurement | Temperature transmitters – 6 nos. |
| Energy measurement | Energy meter |
| Safety controls | Overload and over-current protectors for the compressor; time delay circuit |
| Dimensions | 1400 × 800 × 1200 mm (approx.) |
| Weight | 165 kg (approx.) |
| Power supply options | 230 V, 50 Hz, 1 phase or 230 V, 60 Hz, 1 phase |
| Product code | SLE/MCE/87 |
| Supplied by | Jain Scientific Equipments Pvt Ltd (ScienceLab), Ambala, India |
The trainer runs a complete vapour-compression cycle: the hermetic compressor raises the refrigerant pressure, the air-cooled condenser rejects heat, the capillary tube drops the pressure, and the stainless steel evaporator absorbs heat from the water in the tank until it freezes. Students record the two pressures and six temperatures, plus energy use from the energy meter, to draw the cycle on a pressure–enthalpy chart and work out refrigeration effect and coefficient of performance.
Timing how long a known quantity of water takes to freeze gives a practical measure of ice-making capacity to compare with the calculated values. Allow the time delay circuit to complete before restarting the compressor after a stop, and keep the condenser and its fan free of dust so readings stay stable from session to session.
Jain Scientific Equipments Private Limited trades as ScienceLab and supplies the Computerized ICE Plant Trainer from Ambala, Haryana, to engineering colleges, polytechnics, dealers and importers in India and international markets. Because the trainer is built around a Kirloskar-make hermetic compressor, please confirm compressor details and current model availability with us when you enquire.
Company information is on the ScienceLab profile page.
Refrigeration laboratories often pair the ice plant with these trainers:
The Thermodynamics & Heat Transfer Lab Equipment category lists the complete refrigeration and heat transfer range.
What compressor does the Computerized ICE Plant Trainer use?
The Computerized ICE Plant Trainer uses a hermetically sealed compressor of Kirloskar make, with overload and over-current protectors and a time delay circuit, paired with an air-cooled condenser and a capillary-tube expansion device.
What does the Computerized ICE Plant Trainer measure?
The Computerized ICE Plant Trainer has two pressure transmitters, six temperature transmitters and an energy meter, giving the data needed to plot the refrigeration cycle and calculate the coefficient of performance.
What are the tank and evaporator of the Computerized ICE Plant Trainer made of?
On the Computerized ICE Plant Trainer, the inner tank is fabricated from stainless steel and the evaporator is also stainless steel, insulated with ceramic wool/PUF to limit heat gain from the surroundings.
What size and power supply does the Computerized ICE Plant Trainer need?
The Computerized ICE Plant Trainer measures about 1400 × 800 × 1200 mm, weighs about 165 kg and runs on a 230 V single-phase supply at 50 Hz or 60 Hz.
Who supplies the Computerized ICE Plant Trainer?
The Computerized ICE Plant Trainer is supplied by Jain Scientific Equipments Pvt Ltd (ScienceLab), Ambala, Haryana, India, to institutions, dealers and importers. Its compressor is a Kirloskar-make hermetic unit, so confirm component details with us at quotation stage.
How is data logged on the Computerized ICE Plant Trainer?
The Computerized ICE Plant Trainer uses pressure and temperature transmitters; please confirm the PC software and data-logging arrangement with us before ordering, and mention your requirement on the contact page so it is covered in the quotation.
For a quotation on the Computerized ICE Plant Trainer, send your quantity and delivery details through the contact page or add it to the enquiry cart.
Last updated: 24 September 2026
Melt Flow Index Tester (Product Code: SLE/ET/01) is a plastics testing instrument used to measure how easily a molten thermoplastic flows through a die under a set load and temperature, a routine check in polymer engineering labs and quality-control rooms. It uses a microprocessor-based, auto-tuned PID temperature controller with 0.1 °C resolution, weights of 2.16 kg and 5 kg, and a digital presettable timer up to 999 seconds. It is supplied by Jain Scientific Equipments Pvt Ltd (ScienceLab), Ambala, India, to buyers of engineering lab equipment in India and abroad.
| Parameter | Detail |
|---|---|
| Temperature (as listed) | Ambient: 400 °C |
| Temperature control | Microprocessor-based, auto-tuned PID controller with temperature range |
| Resolution | 0.1 °C |
| Accuracy | ± 0.1 °C |
| Weights | 2.16 kg and 5 kg |
| Sample cutting | Manual |
| Timer | Digital, presettable, range up to 999 seconds, with buzzer output |
| Power | 230 V, 50 Hz, single phase |
| Product code | SLE/ET/01 |
| Supplied by | Jain Scientific Equipments Pvt Ltd (ScienceLab), Ambala, India |
The melt flow index expresses how much molten polymer is pushed through a standard die in a fixed time. Granules are loaded into the heated barrel, allowed to melt at the set temperature, and a weighted piston drives the melt out through the die. The operator cuts the extrudate at timed intervals, weighs the pieces and works out the flow rate. A higher value means an easier-flowing, usually lower-viscosity grade.
Plastics processors use the test to check incoming raw material batches, confirm a grade before moulding or extrusion, and spot degradation in recycled material, while engineering colleges and polytechnics use it to teach polymer processing. The digital timer's buzzer signals each manual cut, and the two weights let the lab test under a lighter or heavier load as its method requires. Let the temperature settle before loading, clean the barrel and die while still hot, and wear heat-resistant gloves.
Jain Scientific Equipments Private Limited, which trades as ScienceLab, supplies the Melt Flow Index Tester from Ambala, Haryana, to engineering colleges, polytechnics, polymer testing labs and dealers in India and international markets. Buyers setting up a plastics testing room can source it together with related test apparatus on one order.
For availability, documentation and delivery questions, ask us. Company details are on the ScienceLab profile.
Other instruments often used in the same plastics testing lab:
See the full Testing Equipments category.
What weights does the Melt Flow Index Tester use?
The Melt Flow Index Tester is specified with weights of 2.16 kg and 5 kg. The weight sits on the piston and sets the load that pushes molten polymer through the die, so the chosen weight must match your test method.
How precise is the temperature control of the Melt Flow Index Tester?
The Melt Flow Index Tester uses a microprocessor-based, auto-tuned PID controller with a resolution of 0.1 °C and a listed accuracy of ± 0.1 °C, which keeps the barrel steady at the set test temperature.
What temperature range does the Melt Flow Index Tester cover?
The Melt Flow Index Tester specification lists the temperature as “Ambient: 400 °C”. Please confirm the exact working range and your test temperatures with us through the contact page so the quotation matches your materials.
What power supply does the Melt Flow Index Tester need?
The Melt Flow Index Tester runs on 230 V, 50 Hz, single-phase power. If your lab uses a different supply, tell us before ordering so we can advise on suitability.
Is a calibration certificate available with the Melt Flow Index Tester?
Calibration documents for the Melt Flow Index Tester should be discussed with us when you request a quotation. Tell us what your lab or auditor requires, and we will confirm what can be provided before the order is placed.
Who supplies the Melt Flow Index Tester?
The Melt Flow Index Tester is supplied by Jain Scientific Equipments Pvt Ltd (ScienceLab), Ambala, Haryana, India, to colleges, polymer testing labs and dealers in India and international markets.
Send your requirements through the contact page or add the Melt Flow Index Tester to the enquiry cart for a quotation.
Last updated: 24 September 2026
Computerised Tensile Tester (Product Code: SLE/ET/02) is a motorised tensile testing instrument used to pull a specimen to failure while recording its load, yield and elongation in materials and polymer testing laboratories. Engineering colleges and quality-control labs use it for loads up to 500 kg on one load cell, with up to 1000 mm of cross travel and speeds from 10 to 500 mm/minute. It is supplied by Jain Scientific Equipments Pvt Ltd (ScienceLab), Ambala, India, as part of its range of test and measurement instruments in India.
| Parameter | Detail |
|---|---|
| Load capacity | Up to 500 kg |
| Number of load cells | One |
| Cross travel | Up to 1000 mm |
| Test speed | Variable, 10 mm/minute to 500 mm/minute |
| Display | Direct display through microcontroller |
| Values displayed | Peak load, break load, tensile strength at peak, tensile strength at break, yield load, yield stress, % elongation at peak |
| Power supply | 230 V, 50 Hz, single phase |
| Product code | SLE/ET/02 |
| Supplied by | Jain Scientific Equipments Pvt Ltd (ScienceLab), Ambala, India |
A tensile test holds a strip or shaped specimen at both ends and draws the ends apart at a steady rate until the specimen breaks. On this instrument the microcontroller follows the load cell throughout the pull and shows peak load, break load, tensile strength at peak and at break, yield load, yield stress and percentage elongation at peak, so students and technicians read results directly instead of working them out from a chart.
Typical exercises include comparing the strength and ductility of different materials, relating yield stress to peak strength, and checking how the pulling rate changes a result. Use slower speeds near 10 mm/minute for stiff or brittle samples and faster settings for very extensible ones, measure specimen width and thickness carefully because tensile strength is load divided by cross-sectional area, and keep expected loads inside the 500 kg rating. It is useful engineering lab equipment in India for strength-of-materials and polymer courses.
ScienceLab is the trading name of Jain Scientific Equipments Private Limited of Ambala, Haryana. The company supplies this computerised tensile tester to engineering colleges, polytechnics, training institutes and industrial quality-control laboratories in India and international markets; questions about grips, spares or service support can be raised with us when you enquire.
For vendor registration and export paperwork, buyers can quote the supplying company’s Importer-Exporter Code AAECJ8618A (DGFT) and GSTIN 06AAECJ8618A1ZT. More about the company is on the ScienceLab company profile.
Other instruments that sit alongside this tester in a plastics or materials testing laboratory:
Browse the full range on the Testing Equipments category page.
What results does the Computerised Tensile Tester display?
The Computerised Tensile Tester shows peak load, break load, tensile strength at peak, tensile strength at break, yield load, yield stress and percentage elongation at peak directly on its microcontroller display, so each result is available as soon as the specimen fails.
What load capacity and travel does the Computerised Tensile Tester offer?
The Computerised Tensile Tester (SLE/ET/02) measures loads up to 500 kg through one load cell and provides cross travel of up to 1000 mm, which leaves room for specimens that stretch considerably before they break.
Can the test speed be adjusted?
Yes. The Computerised Tensile Tester has a variable speed from 10 mm/minute to 500 mm/minute, so the pulling rate can be matched to the specimen material and to the test method followed in your laboratory.
What power supply does the Computerised Tensile Tester need?
The Computerised Tensile Tester is listed for 230 volts, 50 Hz, single-phase mains. If your laboratory has a different supply, mention it in your enquiry so the requirement can be discussed before an order is placed.
Who supplies the Computerised Tensile Tester?
The Computerised Tensile Tester is supplied by Jain Scientific Equipments Pvt Ltd (ScienceLab), Ambala, Haryana, India, to engineering colleges, polytechnics and testing laboratories across India and international markets, with quotations issued directly by the company.
Is a calibration certificate available for the load cell?
Calibration-certificate availability for the Computerised Tensile Tester should be discussed with us before ordering. State your documentation needs through the contact page and we will confirm what can accompany the instrument.
What information does a quotation request need?
For a Computerised Tensile Tester quotation, give the quantity, delivery location, specimen types and highest expected loads, and any documentation requirements. Send these through the contact page or add the product to the enquiry cart.
To receive pricing and delivery details for the Computerised Tensile Tester, write to us through the contact page or add it to the enquiry cart. ScienceLab supplies institutions, dealers and importers in India and international markets.
Last updated: 24 September 2026
Computerised Izod Impact Tester (Product Code: SLE/ET/03) is a pendulum impact testing instrument used to measure how much energy a notched specimen absorbs when a single swing breaks it, in plastics and materials testing laboratories. Its pendulum is released from 150°, energy ranges extend to 25.00 joules, and a microcontroller shows impact strength directly in J/m and kg-cm/cm. It is supplied by Jain Scientific Equipments Pvt Ltd (ScienceLab), Ambala, India, a laboratory instruments supplier in India serving colleges and test labs.
| Parameter | Detail |
|---|---|
| Capacity | Up to 25.00 J |
| Pendulum release angle | 150° |
| Energy ranges | 0–2.71 J, 0–5.42 J, 0–10.84 J, 0–21.68 J and 0–25.00 J |
| Minimum resolution | 0.02 J, 0.05 J, 0.1 J, 0.2 J and 0.2 J on the respective ranges |
| Direct display | Impact strength in J/m and kg-cm/cm, through microcontroller |
| PC graph | Impact energy vs angular displacement |
| PC reports | Numeric impact-strength values in different units, printed by attaching a printer to the PC; the product specification lists reporting to ASTM and IS test methods |
| Power supply | 230 V, 50 Hz, single phase |
| Product code | SLE/ET/03 |
| Supplied by | Jain Scientific Equipments Pvt Ltd (ScienceLab), Ambala, India |
In an Izod test the notched specimen is clamped upright as a short cantilever with the notch facing the striker. The pendulum is lifted to its 150° release position and let go; it breaks the specimen and swings on, and the energy it has lost is the energy absorbed in fracture. The microcontroller turns this into impact strength in J/m or kg-cm/cm, while the PC software can plot impact energy against angular displacement.
Laboratories use it to compare the toughness of plastic grades, to see how fillers, moulding conditions or temperature change brittleness, and to teach fracture behaviour in materials courses. Pick the smallest energy range that covers the expected break so the finer resolution is used, for example 0.02 J on the 0–2.71 J range, and notch every specimen the same way, because notch geometry strongly affects the result. This makes it practical engineering lab equipment in India for polymer and mechanical engineering departments.
Jain Scientific Equipments Private Limited trades as ScienceLab and operates from Ambala, Haryana, India. It supplies the Computerised Izod Impact Tester to polymer-processing units, engineering colleges, polytechnics and testing laboratories, and can quote it together with related instruments when a buyer is equipping a complete plastics testing room.
Ask us about pendulum spares or specimen accessories when you enquire. Background on the company is available on the ScienceLab profile page.
Instruments often ordered with an impact tester for polymer and materials work:
See every instrument in the Testing Equipments category.
What energy ranges does the Computerised Izod Impact Tester cover?
The Computerised Izod Impact Tester measures impact energy up to 25.00 J, with ranges of 0–2.71 J, 0–5.42 J, 0–10.84 J, 0–21.68 J and 0–25.00 J, and minimum resolution from 0.02 J on the lowest range to 0.2 J on the highest.
How does the Computerised Izod Impact Tester show results?
The Computerised Izod Impact Tester displays impact strength directly through its microcontroller in J/m and kg-cm/cm. With a PC connected, it can also show an impact energy versus angular displacement graph and print numeric reports in different units on an attached printer.
Are the reports based on a test standard?
The product specification for the Computerised Izod Impact Tester lists PC reports of impact-strength values to ASTM and IS test methods, in different units. Because specimen and notch requirements differ between methods, confirm the exact method your laboratory follows with us before ordering.
What is the pendulum release angle?
The pendulum of the Computerised Izod Impact Tester is released from 150°. A fixed release angle gives the same starting energy for every swing, which keeps results comparable from one specimen to the next.
Do specimens need to be notched before testing?
Yes, Izod specimens are normally notched before testing, and notch shape strongly affects the result. ScienceLab's Motorized Notch Cutter (Variable Speed) prepares consistent notches and can be quoted together with the Computerised Izod Impact Tester.
Who supplies the Computerised Izod Impact Tester?
The Computerised Izod Impact Tester is supplied by Jain Scientific Equipments Pvt Ltd (ScienceLab), Ambala, Haryana, India, to plastics laboratories, engineering colleges and institutions in India and international markets.
Is a calibration certificate available?
Calibration-certificate availability for the Computerised Izod Impact Tester should be discussed with us before an order is confirmed. Tell us your documentation requirements through the contact page so we can confirm what can be provided with the instrument.
For a price and delivery schedule on the Computerised Izod Impact Tester, send your ranges, units and quantity through the contact page, or place it in the enquiry cart with any other testing instruments you need.
Last updated: 24 September 2026
Motorized Notch Cutter (Variable Speed) (Product Code: SLE/ET/04) is a specimen-preparation machine used to cut a precise notch into test bars before pendulum impact testing in plastics and materials laboratories. Its 45° cutter is driven by a 1440 rpm motor through a vector-controlled variable speed drive, its 0–25 mm range reads to 0.01 mm, and an acrylic safety jacket guards the cutting area. It is supplied by Jain Scientific Equipments Pvt Ltd (ScienceLab), Ambala, India, a laboratory equipment supplier in India for materials testing rooms.
| Parameter | Detail |
|---|---|
| Cutting angle | 45° |
| Range | 0–25 mm |
| Least count | 0.01 mm |
| Operation | Motorized, with a 1440 rpm motor |
| Drive | Vector-controlled variable speed drive for adjusting the cutting speed |
| Safety | Acrylic safety jacket |
| Power supply | 230 V, 50 Hz, single phase |
| Product code | SLE/ET/04 |
| Supplied by | Jain Scientific Equipments Pvt Ltd (ScienceLab), Ambala, India |
Impact results can only be compared when every specimen carries the same notch, and hand-filed notches rarely match. This machine cuts the notch with a motor-driven 45° cutter, and its 0–25 mm range is read to a least count of 0.01 mm, so each bar in a batch can be given the same setting.
The vector-controlled drive lets the operator lower the cutting speed for heat-sensitive thermoplastics, which can smear or melt at the notch root if cut too fast, and raise it for tougher materials. Clamp each bar firmly, keep the acrylic jacket closed while the motor runs, clear chips between cuts and inspect the notch before the specimen goes to the impact tester. It is a sensible addition to engineering lab equipment in India wherever Izod or similar impact tests are taught.
ScienceLab, the trading name of Jain Scientific Equipments Private Limited in Ambala, Haryana, supplies this notch cutter mainly as part of impact-testing set-ups for plastics laboratories, engineering colleges and polytechnics in India and international markets.
Because a cutter wears with use, ask us about replacement cutters when you send your enquiry. Company details are on the ScienceLab profile.
Instruments that use or complement notched and moulded test specimens:
The complete list is on the Testing Equipments category page.
What notch angle does the Motorized Notch Cutter (Variable Speed) cut?
The Motorized Notch Cutter (Variable Speed) has a 45° cutting angle. Check that this matches the notch specified in your impact test method before ordering, and tell us if your laboratory works to a different notch profile.
What range and least count does the notch cutter offer?
The Motorized Notch Cutter (Variable Speed) has a range of 0–25 mm read with a least count of 0.01 mm, allowing fine, repeatable settings from one specimen to the next when a batch of impact test bars is prepared.
Why does a notch cutter need variable speed?
Variable speed lets the Motorized Notch Cutter (Variable Speed) match cutting speed to the material. Its vector-controlled drive adjusts the speed of the motorised cutter, so it can be reduced for heat-sensitive plastics that might smear or melt and increased for tougher materials.
What safety features does the Motorized Notch Cutter have?
The Motorized Notch Cutter (Variable Speed) has an acrylic safety jacket around the cutting area. Keep the jacket in place while the motor runs, and switch off the 230 V supply before clearing chips or changing specimens.
Who supplies the Motorized Notch Cutter (Variable Speed)?
The Motorized Notch Cutter (Variable Speed) is supplied by Jain Scientific Equipments Pvt Ltd (ScienceLab), Ambala, Haryana, India, to plastics testing laboratories and engineering institutions in India and international markets.
What should a quotation request include?
For a Motorized Notch Cutter (Variable Speed) quotation, state the quantity, delivery location, specimen sizes and the notch your method requires, and whether an impact tester should be quoted too. Use the contact page or the enquiry cart.
Send your notch cutter requirements through the contact page, or add the machine to the enquiry cart together with your impact tester, and ScienceLab will reply with pricing and delivery terms.
Last updated: 24 September 2026