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U-Tech Water Bath

Showing 13 out of 13 products

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₹12,979 - ₹18,879
The U-Tech Single Wall Rectangular Water Bath SSI-130 is a versatile and reliable piece of laboratory equipment designed to provide precise temperature control for a variety of scientific and industrial applications. With its sturdy construction and advanced features, this water bath offers a convenient solution for tasks such as sample incubation, chemical reactions, and temperature-sensitive experiments. Crafted from high-quality materials, the SSI-130 boasts a durable single-wall design that ensures efficient heat transfer and uniform temperature distribution throughout the bath. This robust construction not only enhances the reliability of temperature control but also promotes long-term durability, making the water bath suitable for continuous use in demanding laboratory environments. Equipped with a digital temperature controller, the SSI-130 allows users to set and maintain the desired temperature with ease and precision. The clear and intuitive interface provides real-time feedback on temperature settings, ensuring accurate control and monitoring throughout the duration of experiments or incubation processes. The rectangular shape of the water bath maximizes usable space, allowing for efficient placement of samples, test tubes, and other laboratory vessels. Adjustable temperature settings accommodate a wide range of temperatures, making the SSI-130 suitable for various applications, from gentle warming to more rigorous heating requirements. The versatility of the SSI-130 extends to its compatibility with different accessories and attachments, such as racks and inserts, which enhance the functionality and adaptability of the water bath to specific experimental needs. Additionally, the bath's convenient drainage system facilitates easy cleaning and maintenance, further optimizing workflow efficiency in the laboratory. Safety features integrated into the design of the SSI-130 include overheating protection and automatic shut-off mechanisms, providing added assurance and peace of mind during operation. These safeguards help prevent damage to samples and equipment, as well as minimize the risk of accidents or injuries in the laboratory.
green checkModel No : SSI-130
green checkType of Product : Water Bath
green checkMaterial : Stainless Steel
green checkShape : Rectangular
green checkVoltage : 220 V AC
green checkWall Type : Single Wall
green checkFrequency : 50 Hz
green checkApplication Area : Laboratories
green checkDiameter : Concentric Rings: 75 mm
₹21,239 - ₹30,679
The U-Tech Double Wall Rectangular Water Bath SSI-131 represents a pinnacle of precision and reliability in laboratory temperature control equipment. Designed to meet the diverse needs of scientific research, industrial processes, and quality control applications, this water bath offers exceptional performance and versatility. Constructed with a robust double-wall design, the SSI-131 ensures superior insulation and temperature stability, facilitating precise control over heating and cooling processes. The double-wall construction minimizes heat loss and external temperature fluctuations, thereby optimizing energy efficiency and maintaining consistent temperature conditions within the bath. Equipped with a state-of-the-art digital temperature controller, the SSI-131 enables users to set and maintain precise temperature levels with ease and accuracy. The intuitive interface provides real-time monitoring of temperature settings, allowing for precise control and adjustment as needed throughout experiments or incubation processes. The rectangular shape of the water bath maximizes available space, providing ample room for accommodating a variety of laboratory vessels, sample containers, and accessories. Adjustable temperature settings cater to a wide range of temperature requirements, making the SSI-131 suitable for a diverse array of applications, from gentle warming to rigorous heating or cooling tasks. The SSI-131 is compatible with a range of optional accessories and attachments, such as racks, inserts, and covers, which enhance its versatility and adaptability to specific experimental needs. Additionally, the bath's convenient drainage system facilitates easy cleaning and maintenance, ensuring efficient workflow and prolonging the lifespan of the equipment. Safety features integrated into the design of the SSI-131 include overheating protection and automatic shut-off mechanisms, providing added assurance and peace of mind during operation. These safeguards help prevent damage to samples and equipment, as well as minimize the risk of accidents or injuries in the laboratory.
green checkModel No : SSI-131
green checkType of Product : Water Bath
green checkAccuracy : ±1°C
green checkShape : Rectangular
green checkVoltage : 220 V AC
green checkWall Type : Double Wall
green checkFrequency : 50 Hz
green checkApplication Area : Laboratories
green checkDiameter : Concentric Rings: 75 mm
green checkAmbient Temperature : 99°C
green checkInsulation Material : Thick Glass Wool
₹18,879 - ₹24,779
The U-Tech Double Wall Cylindrical Water Bath for Laboratories, SSI-132, stands as a pinnacle of precision and reliability in laboratory temperature control equipment. Meticulously engineered to meet the diverse needs of scientific research, industrial processes, and quality control applications, this water bath offers exceptional performance and versatility. Crafted with a robust double-wall design, the SSI-132 ensures superior insulation and temperature stability, minimizing heat loss and external temperature fluctuations. This design feature optimizes energy efficiency and maintains consistent temperature conditions within the bath, providing an ideal environment for a variety of laboratory applications. Equipped with an advanced digital temperature controller, the SSI-132 enables users to set and maintain precise temperature levels with ease and accuracy. The intuitive interface offers real-time monitoring of temperature settings, allowing for precise control and adjustment as needed throughout experiments or incubation processes. The cylindrical shape of the water bath maximizes available space, providing ample room for accommodating a wide range of laboratory vessels, sample containers, and accessories. Adjustable temperature settings cater to a diverse array of temperature requirements, making the SSI-132 suitable for applications ranging from gentle warming to rigorous heating or cooling tasks. The SSI-132 is compatible with optional accessories and attachments, such as racks, inserts, and covers, which enhance its versatility and adaptability to specific experimental needs. Additionally, the bath's convenient drainage system facilitates easy cleaning and maintenance, ensuring efficient workflow and prolonging the lifespan of the equipment. Safety features integrated into the design of the SSI-132 include overheating protection and automatic shut-off mechanisms, providing added assurance and peace of mind during operation. These safeguards help prevent damage to samples and equipment, as well as minimize the risk of accidents or injuries in the laboratory.
green checkModel No : SSI-132
green checkType of Product : Cylindrical Water Bath
green checkAccuracy : ±1°C
green checkMaterial : Stainless Steel
green checkWall Type : Double Wall
green checkApplication Area : Laboratories
green checkColor : Silver
green checkOperating Temperature : Upto 100°C
₹27,139 - ₹55,459
The U-Tech Serological Water Bath SSI-133 is a specialized and reliable piece of laboratory equipment designed to meet the exacting requirements of serological applications. With its precise temperature control and gentle heating capabilities, this water bath provides an ideal environment for various laboratory procedures, including serological testing, antibody production, and microbiological assays. Crafted with precision and durability in mind, the SSI-133 features a robust construction that ensures consistent temperature distribution and reliable performance. The water bath's design facilitates uniform heating throughout the chamber, ensuring accurate and reproducible results for serological experiments. Equipped with an advanced digital temperature controller, the SSI-133 enables users to set and maintain precise temperature levels with ease and accuracy. The intuitive interface allows for real-time monitoring of temperature settings, ensuring precise control and adjustment as needed to accommodate specific experimental requirements. The serological water bath is designed to accommodate serological tubes, bottles, and other laboratory vessels commonly used in serological applications. Its spacious chamber provides ample room for sample placement, allowing for efficient processing of multiple samples simultaneously. The SSI-133 is equipped with safety features such as overheating protection and automatic shut-off mechanisms, providing added assurance and peace of mind during operation. These safeguards help prevent damage to samples and equipment, as well as minimize the risk of accidents or injuries in the laboratory.
green checkModel No : SSI-133
green checkType of Product : Serological Water Bath
green checkMaterial : Mild Steel
green checkVoltage : 220 V AC
green checkFrequency : 50 Hz
green checkApplication Area : Laboratories
green checkSwitch Type : On/Off
₹34,219  
U-Tech 8 x 9 x 10.5 inch Circulating Water Bath for Laboratories SSI-137 is a laboratory instrument used to create a controlled temperature environment for a variety of scientific and industrial applications. It consists of a water-filled chamber, a heating element, a temperature control system, and a pump for circulating the water.
The circulating water bath is designed to maintain a constant and precise temperature within the bath chamber. The heating element, typically an electric heater, warms the water to the desired temperature, while the temperature control system ensures accurate temperature regulation. The temperature control system often utilizes a PID (Proportional-Integral-Derivative) controller, which continuously monitors the temperature and adjusts the heating power accordingly to maintain a stable setpoint.
The circulating pump plays a crucial role in the system by continuously circulating the water within the bath. This circulation helps to maintain temperature uniformity throughout the bath and ensures that the samples or objects placed in the bath are evenly exposed to the desired temperature. Some circulating water baths also feature an adjustable agitation or stirring mechanism to further enhance temperature homogeneity.
Circulating water baths are commonly used in scientific research, pharmaceuticals, biotechnology, and other industries. They provide a precise and controlled temperature environment for a wide range of applications, such as sample incubation, enzyme reactions, DNA amplification (PCR), tissue culture, and protein folding studies.
One of the advantages of circulating water baths is their versatility in temperature range. They can operate at both sub-ambient and elevated temperatures, accommodating a broad spectrum of temperature requirements. Some models also offer cooling capabilities, allowing them to reach and maintain temperatures below ambient.
The bath chamber of a circulating water bath is typically made of stainless steel or high-quality plastic to ensure durability and resistance to corrosion. It may include a transparent lid or cover that allows visual inspection of samples without disturbing the temperature stability.
Circulating water baths are available in various sizes, from small benchtop units to large capacity baths, to suit different laboratory needs. They often come with digital displays for easy monitoring and adjustment of temperature settings. Some advanced models offer additional features such as programmable temperature profiles, data logging, and connectivity options for remote monitoring and control.
In summary, a circulating water bath is a versatile laboratory instrument used for precise temperature control and stability. It creates a controlled environment for various scientific and industrial applications by circulating heated or cooled water within a bath chamber. The circulating water bath's temperature control system, pump, and agitation mechanisms ensure temperature uniformity and provide a reliable platform for incubation, reactions, and other temperature-dependent processes.
₹16,519  
U-Tech Thermostatic Water Bath for Rotary Vacuum Evaporator SSI-140 is a specialized laboratory equipment designed to provide precise and stable temperature control for various scientific and research applications. It consists of a water-filled chamber with a heating element, a temperature control system, and a temperature sensor.
The thermostatic water bath operates by maintaining a constant temperature in the water bath chamber, which in turn provides a stable environment for samples or objects immersed in the water. The heating element, typically an electric coil, heats the water to the desired temperature, while the temperature control system ensures accurate temperature regulation.
The temperature control system in a thermostatic water bath typically utilizes a thermostat or a digital temperature controller. The user can set the desired temperature using the control panel, and the system automatically adjusts the heating element to maintain the selected temperature. This precise temperature control is essential for maintaining the integrity of samples and ensuring reproducible experimental conditions.
A temperature sensor, often a built-in thermocouple or a platinum resistance thermometer, continuously monitors the water bath temperature. The sensor relays the temperature information to the temperature control system, allowing it to make necessary adjustments to maintain the set temperature.
Thermostatic water baths come in various sizes and configurations to accommodate different sample volumes and container sizes. Some models offer additional features such as a circulation pump to ensure uniform temperature distribution within the water bath and an integrated timer for time-dependent experiments.
The applications of thermostatic water baths are diverse and wide-ranging. They are commonly used in fields such as molecular biology, microbiology, biochemistry, pharmaceutical research, and quality control laboratories. Thermostatic water baths are utilized for tasks such as incubating samples at specific temperatures, enzymatic reactions, temperature-sensitive experiments, and general laboratory procedures requiring precise temperature control.
The advantages of using thermostatic water baths include their ability to maintain stable temperatures over extended periods, ease of use, and versatility in accommodating different sample types. Additionally, some models may incorporate safety features like over-temperature protection and alarms to ensure sample and user safety.
In summary, a thermostatic water bath is a vital laboratory equipment that provides precise and stable temperature control for a variety of scientific applications. Its temperature control system and sensors ensure accurate regulation of water bath temperature, allowing for reproducible experimental conditions. Thermostatic water baths are widely used in research and laboratory settings, playing a crucial role in maintaining the integrity of samples and conducting temperature-dependent experiments.
₹37,759  
U-Tech Digital Water Bath for Rotary Vacuum Evaporator for Laboratories SSI-140 is a specialized laboratory equipment used for precise temperature control and heating of samples in a water-filled chamber. It is widely used in various scientific and research applications, including microbiology, molecular biology, biochemistry, and pharmaceutical analysis.
The digital water bath is designed with a stainless steel or aluminum chamber that can hold water or other temperature-controlled liquids. The chamber is equipped with a digital control panel, which allows the user to set and monitor the desired temperature accurately.
The temperature control in a digital water bath is achieved through the use of a heating element and a built-in temperature sensor. The heating element, typically an electric heating coil, provides controlled heat to the water bath, while the temperature sensor continuously measures the water temperature. The digital control panel displays the current temperature and allows the user to adjust it according to the experiment or application requirements.
Digital water baths offer several advantages over traditional water baths with manual temperature control. The precise digital control allows for accurate and reproducible temperature settings, ensuring consistent experimental conditions. Additionally, the digital display eliminates the need for separate thermometers, making temperature monitoring more convenient and reliable.
Furthermore, digital water baths often incorporate safety features such as over-temperature protection and automatic shutdown in case of malfunction or overheating. These safety mechanisms help prevent damage to samples and equipment and ensure user safety.
Digital water baths come in various sizes and capacities, allowing for the immersion of different sample containers or vessels. Some models also offer programmable temperature profiles, allowing for temperature ramping or specific temperature-time sequences.
The applications of digital water baths are diverse. They are used for incubating samples at a specific temperature, thawing frozen samples, maintaining constant temperatures for enzyme reactions, and conducting various laboratory procedures that require precise and controlled heating. Digital water baths are particularly valuable in temperature-sensitive experiments, where maintaining stable and accurate temperatures is crucial.
In summary, a digital water bath is a sophisticated laboratory instrument used for precise temperature control and heating of samples. Its digital control panel and temperature sensor allow for accurate temperature settings and monitoring. Digital water baths offer convenience, reliability, and safety features, making them indispensable tools in many scientific and research applications.
₹17,699  
U-Tech Microprocessor PID Controller for Rectangular Water Bath SSI-131 is an advanced electronic device used for precise and accurate control of temperature, pressure, flow, or other process variables in various industrial and scientific applications. PID stands for Proportional-Integral-Derivative, which are the three control actions implemented by the controller to maintain a desired setpoint.
The microprocessor PID controller consists of a microprocessor unit, input and output modules, a display interface, and control algorithms. It continuously monitors the process variable using input sensors and calculates the appropriate control action to maintain the desired setpoint.
The Proportional action adjusts the output of the controller in proportion to the error between the setpoint and the measured value. The Integral action adds a corrective component based on the accumulated error over time, which helps eliminate steady-state errors. The Derivative action predicts the rate of change of the process variable and provides a corrective action to stabilize the system.
The microprocessor unit in the PID controller processes the input sensor signals, executes the control algorithms, and generates the output signal to the control element, such as a heater, valve, or motor. It utilizes the PID control algorithm to compute the appropriate control output based on the current error, past errors, and rates of change.
The input and output modules of the controller interface with various sensors and actuators, allowing the controller to receive accurate measurements of the process variable and send control signals to the control element. These modules are typically designed to support different types of sensors and actuators, such as thermocouples, pressure transducers, or analog voltage/current signals.
The display interface of the microprocessor PID controller provides a visual representation of the current process variable, setpoint, and other relevant parameters. It allows the user to monitor the system's performance and make adjustments to the setpoint or control parameters if necessary.
The advantages of using a microprocessor PID controller include its ability to provide precise and stable control over a wide range of process variables, adaptability to different systems, and flexibility in tuning control parameters. The microprocessor technology allows for faster computation and more sophisticated control algorithms, resulting in improved system performance and energy efficiency.
In summary, a microprocessor PID controller is an advanced electronic device that utilizes the Proportional-Integral-Derivative control actions to maintain a desired setpoint in various industrial and scientific applications. It provides accurate and precise control of process variables through continuous monitoring, computation, and adjustment of control signals. The microprocessor technology enhances the performance and flexibility of the controller, making it a crucial tool for process control and automation.
₹18,879  
U-Tech Microprocessor PID Controller for Cylindrical Water Bath SSI-132 is an advanced electronic device used for precise and accurate control of temperature, pressure, flow, or other process variables in various industrial and scientific applications. PID stands for Proportional-Integral-Derivative, which are the three control actions implemented by the controller to maintain a desired setpoint.
The microprocessor PID controller consists of a microprocessor unit, input and output modules, a display interface, and control algorithms. It continuously monitors the process variable using input sensors and calculates the appropriate control action to maintain the desired setpoint.
The Proportional action adjusts the output of the controller in proportion to the error between the setpoint and the measured value. The Integral action adds a corrective component based on the accumulated error over time, which helps eliminate steady-state errors. The Derivative action predicts the rate of change of the process variable and provides a corrective action to stabilize the system.
The microprocessor unit in the PID controller processes the input sensor signals, executes the control algorithms, and generates the output signal to the control element, such as a heater, valve, or motor. It utilizes the PID control algorithm to compute the appropriate control output based on the current error, past errors, and rates of change.
The input and output modules of the controller interface with various sensors and actuators, allowing the controller to receive accurate measurements of the process variable and send control signals to the control element. These modules are typically designed to support different types of sensors and actuators, such as thermocouples, pressure transducers, or analog voltage/current signals.
The display interface of the microprocessor PID controller provides a visual representation of the current process variable, setpoint, and other relevant parameters. It allows the user to monitor the system's performance and make adjustments to the setpoint or control parameters if necessary.
The advantages of using a microprocessor PID controller include its ability to provide precise and stable control over a wide range of process variables, adaptability to different systems, and flexibility in tuning control parameters. The microprocessor technology allows for faster computation and more sophisticated control algorithms, resulting in improved system performance and energy efficiency.
In summary, a microprocessor PID controller is an advanced electronic device that utilizes the Proportional-Integral-Derivative control actions to maintain a desired setpoint in various industrial and scientific applications. It provides accurate and precise control of process variables through continuous monitoring, computation, and adjustment of control signals. The microprocessor technology enhances the performance and flexibility of the controller, making it a crucial tool for process control and automation.
₹17,699  
U-Tech Microprocessor PID Controller for Serological Water Bath SSI-133 is an advanced electronic device used for precise and accurate control of temperature, pressure, flow, or other process variables in various industrial and scientific applications. PID stands for Proportional-Integral-Derivative, which are the three control actions implemented by the controller to maintain a desired setpoint.
The microprocessor PID controller consists of a microprocessor unit, input and output modules, a display interface, and control algorithms. It continuously monitors the process variable using input sensors and calculates the appropriate control action to maintain the desired setpoint.
The Proportional action adjusts the output of the controller in proportion to the error between the setpoint and the measured value. The Integral action adds a corrective component based on the accumulated error over time, which helps eliminate steady-state errors. The Derivative action predicts the rate of change of the process variable and provides a corrective action to stabilize the system.
The microprocessor unit in the PID controller processes the input sensor signals, executes the control algorithms, and generates the output signal to the control element, such as a heater, valve, or motor. It utilizes the PID control algorithm to compute the appropriate control output based on the current error, past errors, and rates of change.
The input and output modules of the controller interface with various sensors and actuators, allowing the controller to receive accurate measurements of the process variable and send control signals to the control element. These modules are typically designed to support different types of sensors and actuators, such as thermocouples, pressure transducers, or analog voltage/current signals.
The display interface of the microprocessor PID controller provides a visual representation of the current process variable, setpoint, and other relevant parameters. It allows the user to monitor the system's performance and make adjustments to the setpoint or control parameters if necessary.
The advantages of using a microprocessor PID controller include its ability to provide precise and stable control over a wide range of process variables, adaptability to different systems, and flexibility in tuning control parameters. The microprocessor technology allows for faster computation and more sophisticated control algorithms, resulting in improved system performance and energy efficiency.
In summary, a microprocessor PID controller is an advanced electronic device that utilizes the Proportional-Integral-Derivative control actions to maintain a desired setpoint in various industrial and scientific applications. It provides accurate and precise control of process variables through continuous monitoring, computation, and adjustment of control signals. The microprocessor technology enhances the performance and flexibility of the controller, making it a crucial tool for process control and automation.
₹27,139  
U-Tech Microprocessor PID Controller for Circulating Water Bath SSI-137 is an advanced electronic device used for precise and accurate control of temperature, pressure, flow, or other process variables in various industrial and scientific applications. PID stands for Proportional-Integral-Derivative, which are the three control actions implemented by the controller to maintain a desired setpoint.
The microprocessor PID controller consists of a microprocessor unit, input and output modules, a display interface, and control algorithms. It continuously monitors the process variable using input sensors and calculates the appropriate control action to maintain the desired setpoint.
The Proportional action adjusts the output of the controller in proportion to the error between the setpoint and the measured value. The Integral action adds a corrective component based on the accumulated error over time, which helps eliminate steady-state errors. The Derivative action predicts the rate of change of the process variable and provides a corrective action to stabilize the system.
The microprocessor unit in the PID controller processes the input sensor signals, executes the control algorithms, and generates the output signal to the control element, such as a heater, valve, or motor. It utilizes the PID control algorithm to compute the appropriate control output based on the current error, past errors, and rates of change.
The input and output modules of the controller interface with various sensors and actuators, allowing the controller to receive accurate measurements of the process variable and send control signals to the control element. These modules are typically designed to support different types of sensors and actuators, such as thermocouples, pressure transducers, or analog voltage/current signals.
The display interface of the microprocessor PID controller provides a visual representation of the current process variable, setpoint, and other relevant parameters. It allows the user to monitor the system's performance and make adjustments to the setpoint or control parameters if necessary.
The advantages of using a microprocessor PID controller include its ability to provide precise and stable control over a wide range of process variables, adaptability to different systems, and flexibility in tuning control parameters. The microprocessor technology allows for faster computation and more sophisticated control algorithms, resulting in improved system performance and energy efficiency.
In summary, a microprocessor PID controller is an advanced electronic device that utilizes the Proportional-Integral-Derivative control actions to maintain a desired setpoint in various industrial and scientific applications. It provides accurate and precise control of process variables through continuous monitoring, computation, and adjustment of control signals. The microprocessor technology enhances the performance and flexibility of the controller, making it a crucial tool for process control and automation.
₹16,519  
U-Tech Digital Temperature Indicator for Circulating Water Bath SSI-137 is an electronic device used to measure and display the temperature of a system or environment with high accuracy and precision. It provides a digital readout of the temperature, making it easier to read and interpret compared to traditional analog thermometers.
The digital temperature indicator consists of a temperature sensor, a signal conditioning circuit, a microcontroller or digital display unit, and a power supply. The temperature sensor, such as a thermocouple or resistance temperature detector (RTD), detects changes in temperature and converts them into electrical signals.
The signal conditioning circuit amplifies and filters the electrical signals from the temperature sensor to ensure accurate and reliable temperature measurements. It also compensates for any non-linearities or errors associated with the sensor.
The microcontroller or digital display unit receives the processed signals from the signal conditioning circuit and converts them into a digital temperature reading. The digital display unit typically uses a liquid crystal display (LCD) or light-emitting diode (LED) to provide a clear and easy-to-read temperature display.
Digital temperature indicators offer several advantages over traditional mercury or analog thermometers. They provide a more precise and accurate temperature measurement, often with high-resolution displays that show decimal points or fractions. This level of precision is particularly valuable in scientific research, industrial processes, and quality control applications.
Furthermore, digital temperature indicators often incorporate additional features to enhance functionality and user convenience. These may include the ability to store and recall temperature readings, display minimum and maximum values, and set alarms for specific temperature ranges. Some advanced models also offer data logging capabilities, allowing for the recording and analysis of temperature data over time.
Digital temperature indicators are available in various form factors and sizes, ranging from handheld portable devices to panel-mounted units for integration into control systems. They can measure temperature in different units, such as Celsius, Fahrenheit, or Kelvin, depending on the application and user preference.
In summary, a digital temperature indicator is an electronic device that provides a digital display of temperature measurements. It utilizes temperature sensors, signal conditioning circuits, microcontrollers, and digital display units to achieve accurate and precise temperature readings. Digital temperature indicators offer improved accuracy, resolution, and additional features compared to traditional thermometers, making them valuable tools in a wide range of scientific, industrial, and commercial applications.
₹16,519  
The U-Tech Stirrer with Motor & Speed Regulator is a specialized accessory designed for use with the Rectangular Water Bath model SSI-131. It is a versatile stirring device that enhances the functionality and performance of the water bath, allowing for efficient and uniform temperature distribution. The U-Tech Stirrer with Motor & Speed Regulator offers several key features and benefits:
Motorized Stirring: The stirrer is equipped with a motor that provides consistent and reliable stirring action within the water bath. The motorized stirring ensures thorough mixing of the liquid, promoting even heat distribution and maintaining a uniform temperature throughout the bath.
Speed Regulation: The stirrer is equipped with a speed regulator that allows users to adjust the stirring speed according to their specific requirements. This enables precise control over the agitation intensity, accommodating different types of samples and experimental conditions.
Enhanced Heating Efficiency: By introducing stirring action, the U-Tech Stirrer improves the heating efficiency of the water bath. The continuous movement of the liquid promotes heat transfer, reducing temperature stratification and ensuring more efficient heat distribution within the bath.
Uniform Temperature: The stirring action helps to eliminate temperature gradients within the water bath, ensuring a uniform temperature across the entire volume. This is particularly important for applications that require precise temperature control, such as sample incubation, enzymatic reactions, or other temperature-sensitive processes.
Easy Installation and Operation: The U-Tech Stirrer is designed for easy installation and operation. It can be easily mounted onto the rectangular water bath and connected to the power supply. The speed regulator allows for convenient adjustment of the stirring speed, providing a user-friendly experience.
Compatibility: The U-Tech Stirrer with Motor & Speed Regulator is specifically designed for use with the Rectangular Water Bath model SSI-131. It is engineered to fit seamlessly into the water bath, ensuring a secure connection and reliable performance.
When using the U-Tech Stirrer with Motor & Speed Regulator with the SSI-131 Rectangular Water Bath, it is important to follow the manufacturer's instructions for proper installation, operation, and maintenance. Regular cleaning and inspection of the stirrer are recommended to ensure optimal performance and longevity.
Overall, the U-Tech Stirrer with Motor & Speed Regulator is a valuable accessory for the Rectangular Water Bath SSI-131. Its motorized stirring and speed regulation capabilities enhance the heating efficiency and temperature control of the water bath, making it an essential tool for various laboratory applications that require uniform temperature distribution and precise agitation.
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Top Selling U-Tech Water Bath Products Price List for September 2026

Product Name Expected Price Dispatch Time Discount
SND Bharat 6 Holes Single Wall Mild Steel Water Bath for Scientific Labs DI-111 ₹4,483 5 days --
This data was last updated on 25/09/2026