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Cartridge Heaters - Custom Component Sales, LLC

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The Heatron HEATROD offers a wide range of application advantages. With watt densities ranging over 200 watts per square inch and a<br />

multitude of lead configurations, the HEATROD offers solutions where fast, efficient heat transfer is requires. The incorporation of controlled<br />

heat profiles and thermal controls reduce temperature variations. Innovative ideas including out patented Non-Stick coating, Quick<br />

Turn Service, and Minimum unheated sections are a few of the results of our continuous search for products and services which benefit our<br />

customers. New applications for HEATROD heaters are being discovered everyday by Heatron and its valued customers. For applications<br />

requiring other heating methods, consult Heatron.<br />

Application Examples<br />

Non-Stick Heater—Heatron developed and patented a Non-Stick<br />

coating to prevent cartridge heaters from seizing inside molds.<br />

The factory applied coating resists scraping and eliminates the<br />

need for applying release agents. Quick installation and easy removal<br />

has resulted in cost savings for our customers. A major<br />

manufacturer of dies eliminated costly machining steps when<br />

they switched to Non-Stick.<br />

Medical Heater - An international manufacturer of kidney<br />

dialysis equipment uses a HEATROD with an internal<br />

thermal fuse to meet agency approval for over temperature<br />

protection. The heater incorporates passivation and electro<br />

polish to inhibit corrosion of the sheath, low leakage construction<br />

to meet medical standards for leakage current,<br />

and computer serialization to meet tracking requirements.<br />

“Heater in a Jacket” - Designed and constructed to<br />

serve the photo processing industry. The incorporation<br />

of over temperature thermostats and thermal<br />

fuses prevent the unit from over heating. The<br />

stainless steel construction resists corrosion. The<br />

internal HEATROD transfers heat to the liquid as it<br />

flows across the surface.<br />

Packaging Industry—<strong>Custom</strong>ers in the packaging industry<br />

needed to minimize temperature variation when sealing<br />

food products. A HEATROD with Controlled Heat Profile<br />

(CHP) was designed to provide uniform temperature<br />

across the surface to within 1% of set point. An epoxy<br />

seal was incorporated to allow the HEATROD to be used<br />

in wash down applications.<br />

Semi-Conductor - Heatrod Immersion Heater was used to help<br />

control process water for the semi-conductor industry within<br />

0.5°C. Heatron incorporated a moisture resistant seal, 316L<br />

stainless steel sheath construction and passication. Solution<br />

heating rates were increased by determining the optimum<br />

heated section location within the overall heater length.


Heatrod <strong>Cartridge</strong> <strong>Heaters</strong><br />

Application Advantages<br />

- UL and CSA recognition<br />

- Utilization of internal over temperature controls<br />

- Controlled heat profiles along length of heater<br />

- Diameters from 1/4” to 3/4” and 8mm to 20mm<br />

- Patented Non-Stick coating<br />

- Low current leakage<br />

- Any length from 1 to 60 inches<br />

- High watt density construction<br />

Heatrod Construction Features<br />

Nickel Chrome Alloy Resistance Wire. This wire is machine wound around an MGO core and centered in the unit. The heaviest wire<br />

gauge is used consistent with thermal design to maximize resistance wire strengths.<br />

Hi Purity Solid Nickel Connector Pins. These solid Grade A pins run the length of the heater to connect with the resistance wire at the<br />

end of the core. The design achieves the best possible pin/wire connection location for both temperature and amperage, assuring the<br />

longest healthiest life.<br />

Controlled MGO Granulation & Compaction. Heatron’s swaging process provides optimum thermal transfer and electrical dielectric<br />

strength. High purity magnesium oxide (MGO) grain electrically insulates the thin space between the resistance windings and the heater<br />

sheath, for maximum heat transfer into the part being heated. During the swaging process, the MGO is evenly compacted so that the heat<br />

transfer and dielectric strength is consistent throughout the length of the heater.<br />

Corrosion Resistant Sheath. The wall thickness and diameter of the sheath material is custom designed by Heatron to give optimum<br />

swage configuration. This tubing provides the best combination of corrosion resistance, strength, and thermal transfer. Various alloys<br />

are available for special applications.<br />

Welded End Disc. To protect the heater from external moisture or contaminants, the end disc is welded in place. During swaging, this<br />

disc is concave, thus maintaining equivalent MGO compaction density at the heater tip.<br />

UL & CSA Approved flexible lead wire has insulations which allow operations up to 450°C.<br />

Innovative Lead Construction provides minimal lead end cold section and allows a variety of custom lead configurations to meet all<br />

delivery needs.<br />

Agency Approvals<br />

Heatron’s HEATROD <strong>Cartridge</strong> heaters are Underwriters Laboratories, (UL), recognized components under file #E91597.<br />

Heatron has most extensive UL option list in the heater industry. Consult with the Heatron technical staff to discuss your particular requirements.<br />

Because Heatron has been through the UL approval process numerous times, early involvement by Heatron can save your<br />

company time and money.<br />

Heatron’s HEATROD <strong>Cartridge</strong> heaters are certified by the Canadian Standards Association, (CSA), under file #LR66355-1.<br />

Many of the same options available under UL are also available under CSA. Heatron also has significant experience with European and<br />

other international approval agencies. Please consult Heatron for further information.<br />

Heatron has TUV approval under test specifications EN60335-1/A11 and EN61010-1A2 (certificate number B 99 04 17816 003<br />

report number Dl1E9016601). This approval gives Heatron the option of CE marking its elements.


Heatrod High Density <strong>Cartridge</strong> <strong>Heaters</strong><br />

Standard Lead Options<br />

High Temp (450°C) Leads are crimped onto the conductor pins outside the heater. The<br />

crimps are covered with 200°C, 600V rated silicone rubber coated fiberglass sleeving. Recommended<br />

for applications where flexing and vibration do not occur.<br />

Swaged-in Flexible High Temp (450°C) Leads are recommended for applications that require<br />

the heater leads to flex or bend sharply as they exit the heater. Flexible leads are securely<br />

inside the heater to provide a flexible alternative to crimped–on leads and solid pins.<br />

Right Angle Leads are available for applications where space is limited. Crimped-on leads<br />

are standard. Swaged-in leads are available as an option.<br />

Swaged-in Stainless Steel Metal Braid provides the best combination of abrasion protection<br />

and lead flexibility. The stainless steel braid is held securely inside the heater using a<br />

unique Swage Ring connection. This internal connection method prevents the braid from<br />

pulling out and can even be used to help remove a seized heater.<br />

Right Angle Swaged-In Stainless Steel Metal Braid offers lead flexibility and abrasion<br />

protection where space is limited. The braid is fastened inside the heater using the Swage<br />

Ring connection and incorporates a protective metal cap spot welded to the heater sheath.<br />

This unique design allows the braid to be fastened internally, rather than connected with<br />

bulky crimps or potting compounds that can fail easily.<br />

Swaged-in Stainless Steel Metal Hose allows for flexibility, while protecting the lead wires<br />

against sharp objects or small amounts of contaminants. The hose is swaged securely inside<br />

the heater to eliminate bulky fittings or couplers that might prevent full insertion of the<br />

heater.<br />

Right Angle Stainless Steel Metal Hose is recommended to protect leads from sharp objects<br />

and contaminants in areas where space is limited. In our unique Right Angle Cap construction,<br />

the flexible hose is brazed to the metal cap before assembly to the heater. The caphose<br />

assembly is then placed over the leads and spot welded to the heater sheath.<br />

Many competitors braze the hose directly to the heater sheath at temperatures approximately<br />

1200°F, thereby weakening the lead wire insulation and moisture barrier. Our unique preassembled<br />

Right Angle Cap avoids this potential lead wire damage.<br />

Additional Options<br />

Threaded Fittings allow for installation into a threaded hole, particularly in immersion<br />

heater applications. Brass and stainless steel fittings are available in single or double<br />

threads.<br />

Mounting Flanges or Locating Rings can be placed at any point along the heater for<br />

convenient mounting or locating in various applications. Where vibrations can cause<br />

heaters to work loose into open air, a flange at the lead end is ideal to secure the heater.<br />

<strong>Custom</strong> flanges are available, consult Heatron for standard flange and locating ring<br />

sizes.<br />

Rubber Over molds protect the heater from moisture and excessive flexing, such as in<br />

food service or refrigeration equipment. Rather than molding the heater lead connection<br />

inside the rubber overbold, Heatron swage-connects the S.J.O. cord inside the heater.<br />

The over mold then acts as an additional strain relief and moisture barrier, not as a lead<br />

connection. The temperature near the rubber should net exceed 220°F.<br />

BX Conduit Lead Protection is and inexpensive alternative to Heatron’s standard<br />

stainless steel flexible hose. Specify BX Conduit when ordering.<br />

Watertight Stainless Steel Hose Lead Protection is ideal for areas where leads can be<br />

subject to liquids or contamination. Specify Watertight Hose when ordering.


High Temperature Ceramic Beads cover the solid nickel pins in high temperature applications<br />

(above 500°F). The beads should extend to a point where the temperature is acceptable<br />

to attach flexible leads.<br />

Internal Thermocouple Junctions can be located in three specific areas inside the heater.<br />

Style 8 (high temperature fiberglass leads) is standard. If Style 9 (Teflon TM leads) is<br />

required, please specify along with thermocouple location.<br />

Location A is recommended for sensing temperatures of materials flowing past the heater<br />

tip, such as in various plastic molding applications. The thermocouple junction<br />

is always grounded to the sheath with the A location, and the “end disc” is flat to<br />

provide better sensing ability.<br />

Location B places the thermocouple junction against the inside wall of the heater sheath<br />

at any point along the heater length. This location is used to monitor the heater<br />

sheath or the approximate temperature of the part being heated. The<br />

thermocouple junction is typically grounded to the heater sheath, specify if a<br />

guaranteed ground is required.<br />

Location C provides for the thermocouples junction in the center of the heater core at any<br />

point along the heater length. This location is used to sense the heater’s hottest<br />

internal temperature and is used for prototype testing and research. The thermo<br />

couple junction is NOT grounded.<br />

Thermocouple Material Available<br />

J type is standard for all locations<br />

J type Iron(+) magnetic white lead & Constantan (-) non-magnetic red lead<br />

K type Chromel (+) non-magnetic yellow lead & Alumel (-) magnetic red lead<br />

Other type thermocouples are available on request. Consult Heatron.<br />

Post Terminals are designed for applications requiring a fast connection using leads, spade, terminals,<br />

or bus bars. Not available for sizes under 1/2” diameter (12.5mm)<br />

Conduit Box Housings are available for applications that require protection of the lead terminal<br />

area. Conduit boxes can be mounted to a flange or threaded fitting welded to the heater. Various<br />

NEMA boxes are available.<br />

Bolt <strong>Heaters</strong> are used for the preheating of large studs and drilled bolts. The heater is inserted<br />

inside a hollow bolt or stud before tightening. Once the nut is tightened the heater is removed,<br />

causing the bolt to be contract for a tight fit. <strong>Custom</strong> heater diameters and lengths can be manufactured.<br />

Standard bolt heaters are supplied with post terminals. Extension cords can be provided<br />

as an option.<br />

Plugs can be provided with the heater for applications that require quick convenient connections.<br />

The plugs can be attached to S.J.O. cord, flexible leads with sleeving, stainless steel metal hose or<br />

braid. Specify any agency requirements.<br />

No Heat Sections can be designed anywhere along the length of the cartridge heater. A typical<br />

application for an extra no heat section is to allow the heater leads to operate in cooler temperatures,<br />

farther away from the heated section. Specify with a sketch or dimension of No Heat when<br />

ordering.<br />

Lead Wire Strain Relief Springs can be swaged into the lead end of 3/8” (10mm) and larger<br />

cartridge heater diameters. Specify Spring Strain Relief when ordering.


Additional Engineering Options<br />

Consult Heatron Engineering for the following options. The feasibility of each option depends upon detailed application specifications and<br />

requirements.<br />

Sub assemblies - Heatron can provide turn key heater assemblies which reduce labor, inventory and overall cost. Consult Heatron for specific<br />

applications.<br />

Lead connectors and terminals can be specified with various quick disconnects, spade or lug terminals in male or female configurations,<br />

either insulated or bare. Ask for a list of stocked terminals. Heatron has both hand tools and tape and reel capability, depending on the<br />

terminal and quantity required.<br />

Low leakage construction is usually required for medical, aircraft, or other critical applications, where UL or other agency requirements<br />

for leakage current are very stringent. This construction is designed to customer specifications depending on the individual application or<br />

agency requirements. Typically heaters 3/8” (10mm) diameter and above will be acceptable. Consult Heatron for your application.<br />

Passivation or electro polish protection. To protect HEATROD cartridges and heat exchangers against corrosive environments,<br />

Heatron maintains in house facilities for passivation or electro polish finishes. This is particularly useful in medical, photo processing, or<br />

immersion heater applications.<br />

Sheath materials - Heatron stocks 304SS in all English and Metric diameters, 316L and Incology TM in most other English diameters.<br />

Dual voltage cartridge heaters can be engineered to operate on two separate voltage ratings.<br />

Dual wattage cartridge heaters can be engineered to operate at two different watt ratings within a single heater. This allows for different<br />

process steps requiring different wattages.<br />

Ground wires are available on most designs as a safety feature. The ground may be added internally or externally, depending on the heater<br />

style and size.<br />

Three phase cartridge heaters can be designed depending on the wattage, amperage, and size of the heater. The lead style will vary depending<br />

on these factors.<br />

Leads out each end may be used when the application requires this design. Cement potting is the standard lead end seal rated to 1000°F.<br />

Bare 3” long pins are standard and longer cold sections are required.<br />

Center less grinding provides for precision diameters that may be needed for high watt density heaters that require a close fit between<br />

heater and part. Lead length is restricted to 12”. Longer leads would require an external connection.<br />

Self regulating cartridge heaters can be manufactured to change resistance as the temperature increases.<br />

Incoloy TM is registered trademark of Inco Alloys International.<br />

Lead Wire Material Options<br />

Lead wire materials are available to match a variety to applications. Heatron HEATROD leads should be selected to withstand<br />

the maximum ambient temperature for the intended service. Moisture and contaminants are also important considerations. Various lead<br />

wire insulations are available from stock or may be special ordered, examples include:<br />

Insulation Material<br />

Temperature Rating<br />

Teflon or Tefzel 105°C, 150°C, or 200°C<br />

Silicone rubber 150°C or 200°C<br />

PVC 105°C<br />

SJO or SJT cord 60°C or 90°C<br />

TGGE (Teflon, Glass, Enamel) 250°C<br />

MGE (Mica, Glass, Enamel) 450°C<br />

Depending on the application, many of the insulation materials available are UL and CSA listed or certified constructed to meet<br />

Military Specification. Contact Heatron Engineering for specific construction ratings.


Heatrod Heat Exchanger Assembly<br />

Application Advantages<br />

-Reduced Space<br />

-Reduced cost/less assembly<br />

-Ease in gaining safety agency approvals<br />

-Faster/more efficient heat up times<br />

-Better/more accurate heat control<br />

Characteristics<br />

HEATROD high watt density <strong>Cartridge</strong> Heater<br />

Heavy Wall construction for reliable welds. Standard units are pressure tested to ensure trouble free operation up to 60<br />

psi.. Corrosion resistant materials available such as 316L and 304 stainless steel.<br />

Heatron maintains in house facilities for electro polish and passivastion finishes.<br />

A variety of lead wire and end seal options for moisture protection.<br />

Optional internal over temperature safety devices.<br />

Thermal wells with fittings for mounting RTD’s, thermistors, thermocouples, or other temperature controlling devices.<br />

Internal thermocouples available (Type J standard)<br />

Mounting pads for 1/2” disc thermostats can be welded to the heat exchanger, (contact Heatron for other thermostats).<br />

Mounting brackets can be provided per customer specifications.<br />

Ports located and configured to accept existing customer fittings in any location.<br />

Ports can be flared to ensure secure clamped connections.<br />

Ground wire can be internally connected in heater, or a ground lug (8-32 thread, 1/4” long) can be welded to the heat<br />

exchanger for wiring convenience.


Heatrod Patented Non-Stick Coated <strong>Cartridge</strong> <strong>Heaters</strong><br />

Heatron developed and patented the original Non-Stick coating for cartridge heaters. Confirmed in actual customer applications,<br />

this revolutionary coating eliminates the seizing of heaters in molds. This cost effective product alleviates the expense related to removal<br />

of heaters and potential damage to equipment.<br />

Application Advantages<br />

-Revolutionary improvement in cartridge heater technology. Eliminates costly heater<br />

removal downtime.<br />

-Exclusive Heatron formulated and factory applied barrier release coating eliminates the<br />

time consuming and messy process of applying release agents before installation.<br />

-Non-Stick coating specially bonded to heater sheath. Resists scraping, unlike other<br />

anti-seize compounds.<br />

-Non-Stick coating improves heat transfer. Extends heater life.<br />

-Patented process provides non-stick protection at high temperatures up to 1200°F.<br />

-Higher watt density capabilities. Longer life at less cost than “split sheath” type cartridge<br />

heaters.<br />

-Non-Stick cartridge heaters fit same hole sizes required for standard heater cartridges.<br />

Special diameter bores not required.<br />

US Patent No. 5, 136, 143 Canadian Patent No. 2071024<br />

Heatron’s Controlled Heat Profile (CHP)<br />

<strong>Cartridge</strong> Heater<br />

Application Advantages<br />

Heatron developed the Controlled Heat Profile (CHP)<br />

cartridge heater to let customers specify a heat profile for their<br />

application. In many cases industry standard cartridge heaters<br />

provide inadequete temperature uniformity. By eliminating cold<br />

and hot spots, designed so the wattage ans heat vary along the<br />

length of the heater, both quality and yield improve, resulting in<br />

lower production costs. For example, the faster sealing of potato<br />

chip bags-with fewer air leaks-will result in higher productivity.<br />

Heatron’s engineering staff will work closely with you to economically develop the proper CHP design for your<br />

unique application. This process usually involves evaluating your existing process to determine the temperature profile.<br />

Using computer aided design and winding techniques, Heatron will design and build CHP prototype that can be tested in<br />

the Heatron lab or in your actual application.<br />

The final CHP design will result in better quality parts, faster cycle times and fewer rejects-guaranteed.<br />

Application Examples<br />

Heatron’s CHP is proven to provide even heat profile for the following applications:<br />

Packaging-Seal Jaws Molding-Injection Mold <strong>Component</strong>s-Sprues<br />

Extrusion-Die Heads -Transfer -Distribution Tubes<br />

Marking-Hot Stamping -Composites Electronics-Patens<br />

Plastic-Heat Fusion & Staking -Blow Molding -<strong>Component</strong> Fabrication


Heatrod Temperature Controlled <strong>Cartridge</strong> <strong>Heaters</strong><br />

Application Advantages<br />

To meet the needs of original equipment manufactuars,<br />

Heatron developed HEATROD <strong>Cartridge</strong> <strong>Heaters</strong> with<br />

internal Over Temperature Control. Internal thermostats or<br />

thermal fuses offer space savings over conventional methods<br />

and eliminate the need for additional mounting and<br />

hook-up. Units can be designed for over temperature protection,<br />

temperature control, or automatic heater start-up.<br />

Heatron’s engineering staff will work closely with you to<br />

economically develop the proper temperature setting for<br />

your application. This process simply involves testing a<br />

heater with a thermocouple located in a “dummy” thermostat<br />

or thermal fuse to determine the proper temperature<br />

setting. Heatron stocks devices to make this prototype<br />

testing process as easy and fast as possible.<br />

Characteristics<br />

Flanges or Threaded Fittings<br />

Mounted in Heat Exchanger (see page 8)<br />

Self Regulating Resistance Wire<br />

Low Leakage Current to meet UL Medical 544 and IEC 601.1<br />

Electro polished & Passivated Heater Sheaths<br />

Moisture Resistant End Seals<br />

HEATRODS can also be designed with internal sensors such as RTD’s, thermocouples, or thermistors.<br />

Thermostats and thermo fuses with UL, CSA, and TUVVDE available. Consult Heatron for further information.


Heatrod Immersion <strong>Heaters</strong><br />

Heatron Heatrod Immersion <strong>Heaters</strong> are ideal for heating water, water soluble solutions, or other liquids. Using<br />

watt densities over 200 watts per square inch allow the designer to minimize space requirements without sacrificing<br />

product performance. This compact heater with an integral bushing provides versatility in the final product<br />

design, minimum assembly time, and ease of service. Bushing materials, moisture resistance end seals, low leakage<br />

current, and specifications can be customized for each application.<br />

Factors such as liquid type, temperature requirements, flow rates and scale build up potential, play roles in providing<br />

the correct design for the application. Fittings are available in 304SS, brass and double threaded fittings.<br />

Other alloys available upon request.<br />

Heatron Packaging Machine Punch <strong>Heaters</strong><br />

Heatron was the first to develop a cartridge heater with a built in punch. This built in design allows for more efficient<br />

transfer of heat to the punch tip. A heat punched hole forms a bead which adds strength to the hole when the<br />

plastic film package is hung for display. This Works particularly well with polypropylene films.<br />

Internal thermocouples (Type J or K) can be provided at the tip of the punch. The thermocouples used in conjunction<br />

with an electronic temperature control allow for accurate temperature control for faster production cycles and<br />

protects the heater from overheating if<br />

the machine stops. (Some form of<br />

temperature control should be used to<br />

prevent the heater from overheating.)<br />

Common Punch Heater configurations<br />

utilize 1/4” diameter heaters with<br />

5/16” or 3/8” diameter punches. Select 3/8” diameter heaters to provide a uniform diameter for the complete<br />

punch heater.


Lead End Seals for Moisture and Contamination Protection<br />

Teflon TM Seal-rated for continuous operating temperatures up to 400°F (205°C).<br />

Teflon TM leads are supplied as standard, other typed leads are available on request.<br />

Epoxy Potting-rated for continuous operating temperatures up to 350°F (177°C).<br />

Specify type lead wire required. No-heat section can vary on depending on the cartridge heater design.<br />

Silicone Potting or End Plug-rated for continuous operating temperature up to 400°F (205°C).<br />

Specify type lead wire required. No heat section can vary depending on the cartridge heater design<br />

Silicone Rubber Over molds-rated for 220°F (104°C).<br />

The over mold protects from moisture contamination.<br />

Moisture Retardant Coating-rated for continuous operating temperatures up to 600°F (316°C).<br />

Can be applied to ceramic, lava, or mica end plugs with all standard or optional lead wires.<br />

Heatron Bent Heatrods<br />

Bent HEATRODS are designed to offer extra<br />

protection where the leads may be exposed to<br />

high temperature or potential abrasion. The area<br />

of the bend must be in a no-heat section


Low Density <strong>Cartridge</strong> <strong>Heaters</strong><br />

Applications<br />

Where watt densities of less than 45 watts/square inch can be used<br />

Examples<br />

Including but not limited to Dies, Heat Sealing, Labeling, Packaging, Molding<br />

Characteristics<br />

304 stainless steel sheath and end disc material<br />

High nickel content element for effective heat transfer<br />

Ceramic cores providing high dielectric qualities<br />

Fiberglass leads rated up to 250°C<br />

Diameters from 3/8” to 3/4”<br />

Standard Lead Configurations<br />

Internally connected leads with 12” of fiberglass lead<br />

wire.<br />

Tin plated copper braid protects fiberglass leads from<br />

abrasion. The braid is silver soldered in place.<br />

Galvanized conduit protects fiberglass leads from sharp<br />

objects. The hose is silver soldered in place.<br />

High temperature beads cover internally connected pins.<br />

Right angle hose protects leads from sharp objects or<br />

small amounts of contaminants in areas where space is<br />

limited.<br />

Right angle braid offers lead flexibility and abrasion<br />

protection where space is limited.<br />

Post terminals are designed for applications requiring a<br />

fast connection using leads, spade terminals, or bus<br />

bars. 1/2”, 5/8”, and 3/4” diameters available.<br />

Tolerances<br />

Consult Heatron for other available lead configurations.<br />

Wattage: +5%, -10%<br />

Diameter: +0.000”, -0.009”<br />

Minimum Length: 2”<br />

Maximum Length: 40” (longer lengths –consult Heatron)<br />

Length: +/- 1/16” 4” and under<br />

+/-1/8” over 4”<br />

Wattages below 240Watts are not available at 440Volts or 480Volts<br />

3/8” and 1/2” diameter by 2” long available at 120 Volts only<br />

Consult Heatron for wattages that exceed recommendations.

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