Product Description
Regular GMP - Model
Double walled in construction Inner made of SS 304 and
Exterior GI Powder coated in REGULAR MODEL.
Inner made of SS 316/SS 304 & Exterior SS 304 Matt/Buff
finish in GMP MODEL.
The Inner tank is completely welded for leak proof durability.
The high grade compressed cerawool & combination of glasswool insulation provided
in between the wall to minimize the heat loss.
The Temp. is being controlled by Automatic Autotuning Microprocessor based PID
Temp. Controller with Dual Digital Indicator and PT-100 sensor.
The unit consist with Pump cum Stirring Assembly for Internal as well as External
circulation & better Temp. uniformity. The External Head upto 5/6 feet only.
Pump Output :- 5/7 Ltr. Per Minute.
Specially designed Long Life Stainless Steel Heater.
A drainage cock is provided at side of the bath for outlet purpose.
CAT NO. BATH SIZE L x W x D RATING CAPACITY
NAC 105 B 12 x 12 x 10 4000 Watts 23 Ltrs.
Advanced Temperature ManagementOutfitted with a digital PID controller and a powerful 2.0 kW heater, the Oil Bath Circulator delivers highly precise temperature regulation across a wide range. The internal/external circulation mechanism ensures uniform heat throughout, ideal for critical laboratory procedures that demand temperature stability.
Reliable Construction and SafetyBuilt with a stainless steel chamber and a powder-coated mild steel body, this circulator is designed to resist corrosion and offer longevity. Safety features such as automatic sensor cut-off, low-level protection, and over-temperature control provide peace of mind during prolonged lab operations.
Efficient and User-Friendly OperationIts digital display and clearly accessible controls make monitoring and operating the circulator straightforward. With a removable stainless steel lid and a low noise output (<50 dB), this equipment is suitable for demanding lab routines without causing distractions.
FAQs of OIL BATH CIRCULATOR:
Q: How does the Oil Bath Circulator maintain temperature accuracy during operation?
A: The Oil Bath Circulator uses a digital PID controller to maintain precise temperature settings within a range of ambient +5C to 250C, ensuring an accuracy of 1C by continuously adjusting heating based on real-time feedback.
Q: What are the key safety features of this circulator, and how do they protect the system?
A: Safety is ensured through automatic sensor cut-off, low-level protection, and over-temperature protection. These mechanisms prevent overheating and protect both the equipment and users from potential hazards during operation.
Q: When is it appropriate to use internal vs. external oil circulation?
A: Internal circulation is recommended for applications requiring consistent temperature throughout the bath, while external circulation is ideal for transferring heated oil to external apparatuses or systems, expanding the devices utility in complex setups.
Q: What materials are used in the construction, and how do they benefit laboratory environments?
A: The inner chamber is made of stainless steel for optimal heat transfer and corrosion resistance, while the outer body features an epoxy-coated mild steel finish for durability and easy cleaning, making the unit suitable for demanding lab settings.
Q: What process should be followed for safe usage and maintenance?
A: Always ensure the oil level is above the minimum mark before operation, secure the stainless steel lid during use, and regularly clean the internal chamber. The built-in safety features will handle unexpected situations, but routine checks on the pump and controller are recommended for longevity.
Q: Where can this device be effectively installed in a laboratory setup?
A: With compact dimensions (420 x 280 x 320 mm) and a low noise profile, the Oil Bath Circulator can be placed on standard lab benches or within fume hoods, ensuring integration into various laboratory workflows.
Q: What are the primary benefits of using this Oil Bath Circulator in scientific applications?
A: It provides highly stable, uniform temperature control with fast heating capability, low operational noise, and reliable safety. This makes it ideal for heating, incubation, or any process demanding precise thermal management in research or quality assurance labs.