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Heating Elements
2 Products availableWater Heaters
1 Products availableLaboratory Equipments
1 Products availableOur offered Product range includes Casting Heaters, Mica Ceramic Band Heater, FSR Ceramic Infrared Heater, FSF Ceramic Infrared Heater and Drum Heater.
The cast-in heating plates and heating bands consist of one or several electrical resistances embedded in a block of aluminum, brass, bronze or cupronickel alloy providing excellent thermal conductivity.
Usual applications : heating plates for presses, extruder dies and sheaths, heating plates for homogeneous heating (rubber, aerated concrete curing), sealing on packaging lines, mills.
Product overview :
Advantages
FSR panel radiators are ceramic infrared radiators, which are designed for operating temperatures up to 720 °C. Surface ratings of up to 64 kW/m² can be installed.
FSR series radiators are made using a full-pour casting ceramic process and are characterized by their concave design. Due to the design of this type, there is a space between the radiator and mounting plate, which reduces the heat absorbed by the wiring space.
FSR panel radiators can be used universally and are suitable for assembling radiation areas with any geo- metry required. They are available in three designs and cover the power range from 60 W to 1000 W
The power can be controlled using thermocouple radiators together with TRD 1 temperature controllers, TSE thyristor switching units and other accessories.
IR radiation areas can be assembled using REO reflectors, REF construction sets, EBF and EBI construction elements as well as MBO mounting sheets.
The national safety regulations must be complied with for the respective application, for example, the IEC or EN standard 60519-1, Safety in electrical heating installations.
Our instructions for mounting, operation and safety must be observed.
Technical Specifications
Type, weight, wattage | FSR FSR/2 FSR/4 |
220 g 125 g 75 g |
250 | 400 | 650 | 1000 | W |
---|---|---|---|---|---|---|---|
125 | 200 | 325 | 500 | W | |||
60 | 100 | 200 | 250 | W | |||
Surface rating | 16 | 25.6 | 41.6 | 64 | kW/m² | ||
Typical operating temperature | 400 | 500 | 620 | 720 | °C | ||
Maximum permissible temperature | 750 | 750 | 750 | 750 | °C | ||
Wavelength range | 2 | 10 | µm |
Details
Standard design | Thermocouple radiators | Variants |
---|---|---|
Operating voltage 230 V Ceramic full-pour casting Leads 85 mm Elstein standard socket Mounting set |
Designation T-FSR, T-FSR/2, T-FSR/4 Integrated thermocouple Type K (NiCr-Ni) TC leads 100 mm |
Special wattages Special voltages Extended leads Leads with ring terminals |
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Elstein FSF panel radiators are ceramic infrared radia- tors with a low overall height. They are produced using a full-pour casting ceramic process and are designed for operating temperatures up to 720 °C and surface ratings up to 64 kW/m².
Compared to other Elstein panel radiators, which have the standard socket, the overall height of the FSF radiators, measured from the radiation surface up to the mounting plate, has been reduced by approximately 45 %.
FSF series radiators can be used universally. The low overall height of the radiators enables space-saving installation, for example, which may be required to retrofit machines.
Esltein FSF radiators are available in four designs and cover the power range from 60 W to 1000 W. They have the customary market dimensions and can there- fore be replaced with radiators with corresponding properties if the requirements change
The power can be controlled using thermocouple radiators together with TRD 1 temperature controllers, TSE thyristor switching units and other accessories.
IR radiation areas can be assembled using MBO mounting sheets.
The national safety regulations must be complied with for the respective application, for example, the IEC or EN standard 60519-1, Safety in electrical heating installations.
Our instructions for mounting, operation and safety must be observed.
Technical Specifications
Type, weight, wattage | FSF/1, FSF FSF/2 FSF/4 |
220 g 125 g 75 g |
250 | 400 | 600 | 800 | 1000 | W |
---|---|---|---|---|---|---|---|---|
125 | 200 | 300 | 400 | 500 | W | |||
60 | 100 | 150 | 200 | 250 | W | |||
Surface rating | 16 | 25.6 | 38.4 | 51.2 | 64 | kW/m² | ||
Typical operating temperature | 400 | 500 | 590 | 670 | 720 | °C | ||
Maximum permissible temperature | 750 | 750 | 750 | 750 | 750 | °C | ||
Wavelength range | 2 | - | 10 | µm |
Details
Standard design | Thermocouple radiators | Variants |
---|---|---|
Operating voltage 230 V Ceramic full-pour casting White glaze Leads 85 mm Elstein standard socket Mounting set |
Designation T-FSF, T-FSF/1, T-FSF/2, T-FSF/4 Integrated thermocouple Type K (NiCr-Ni) TC leads 100 mm |
Special wattages Special voltages Extended leads Leads with ring terminals |
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Graph 02
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Widely reckoned as a prominent Manufacturer, Exporter and Supplier from India, we offer Bobbin Immersion Heaters in the worldwide market. The Bobbin Immersion Heaters we provide are manufactured from optimum quality raw material and are highly demanded by the clients across the globe. Bobbin Immersion Heaters are fitted in flanges and screw type sockets for both vertical and horizontal mounting. Advantages
Raw Materials Used
Suitable For Heating
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We are one of the prominent flanged immersion heater manufacturers, exporters and suppliers from india. The flanged immersion heaters we offer are made from the best quality material abnd are high on demand in the market. Flanged immersion heaters are ideal for generating steam and heating gases and liquids in pressure vessel or tanks. Attributes easy to installease of maintenanceperfect for higher k.w output applicationssafe designingfast-actingideal for low-wattage applications applications chemical industry textile industry nuclear industry oil & gas industry bright nickel industry dull nickel zinc copper industry
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Our organization is open to accept payment for an order through online or offline mediums. We provide patrons with the payment period, details, and other terms & conditions in the invoice. Buy excellence in the form of Infrared Heaters at coffer-friendly prices, from us!
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We are widely known as a reliable High Density Cartridge Heaters Manufacturer, Exporter and Supplier in the worldwide market. The Cartridge Heating Element we offer is designed for use in the applications where limited heat is required. The High Density Cartridge Heaterss are manufactured using pure Magnesium Oxide insulation ensuring high and efficient heating. Attributes
Advantages
Product Details
Used In
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Delivery Time : Depends on order
Additional Information:
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Delivery Time : Depends on order
Additional Information:
Payment Terms : T/T,
Delivery Time : Depends on order
Additional Information:
Payment Terms : T/T,
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Cartridge heaters are most frequently used for heating metal parts by insertion into drilled holes. For easy installation, the heaters are made slightly undersize relative to their nominal diameter.
The majority of applications do not require maximum watt/in². Use a watt density only as high as needed. Take advantage of the safety margin provided by using ratings less than the maximum allowed. Select space heaters for most even heat pattern rather than the highest possible wattage per heater.
At medium Watt densities, general purpose drills are usually adequate for drilling holes. Typically, these result in holes .003" to .008" over the nominal size of the drill, resulting in fits of 010". 015". Of course, the tightest fit is desirable from a heat transfer standpoint, but somewhat looser fits aid in installing and removing cartridge heaters, especially long ones. Holes drilled completely through the part are recommended to facilitate removal of the heater. After drilling, clean or degrease the part to remove cutting lubricants.
Common Applications :-
Determining Watt Density
The term "Watt density" refers to the heat flow rate or surface loading. It is the number of Watts per square inch of heated surface area. For calcualation purposes, stock cartridge heaters have a 1/4" unheated length at each end. Thus, for a 1/2" x 12" heater rated 1000 Watts, the Watt density calculation would be as follows : Watt Density = W / (Π x D x HL) Where: W= wattage = 1000 W Π = pi (3.14) D= diameter = 0.5 inch HL = Heated Length = 11.5 inch Watt Density = 1000/(3.14 x .5 x 11.5) = 55 W/in