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Metric Cartridge Heaters

Metric Cartridge Heater (12.5mm Outside Diameter, 230V)

Product Code: LCH12.5

Quantity:

Length  
Wattage  

Product/Pricing Options:

LengthWattagePrice inc. VAT
exc. VAT
Product
Code
(1-5)(6-10)(11+)
50mm 200W28.56
23.80
27.12
22.60
25.68
21.40
LCH12.5-050-200-230
80mm 250W30.12
25.10
28.68
23.90
27.12
22.60
LCH12.5-080-250-230
100mm 400W32.16
26.80
30.60
25.50
28.92
24.10
LCH12.5-100-400-230
130mm 500W34.44
28.70
32.76
27.30
30.96
25.80
LCH12.5-130-500-230
160mm 650W36.84
30.70
35.04
29.20
33.12
27.60
LCH12.5-160-650-230
200mm 800W39.96
33.30
37.92
31.60
35.94
29.95
LCH12.5-200-800-230
250mm 1000W45.48
37.90
43.32
36.10
40.92
34.10
LCH12.5-250-1000-230
These metric-sized stainless steel heaters are manufactured using fine heater element wire, helically wound and supported in a ceramic support tube to give maximum heat transfer to the outer shell.

The extension cables are 1000mm long with nickel conductors which are fibreglass/PTFE insulated, rated to +350°C.

As the surface temperature of the heater can reach a maximum of +650°C, cartridge heaters should be mounted in a reamed hole for maximum surface-to-surface contact. A temperature sensor mounted close to the bottom 1/3 of the precision drilled or reamed hole will ensure excellent temperature control and heater life.

Sizes are metric. Imperial sizes also available.

• Manufactured to give maximum heat transfer to outer shell
• Fibreglass/PTFE insulated conductors (rated to +350°C)
• +650°C maximum surface temperature
• 230V as standard, other voltages available
• Imperial sizes also available

Technical Details
Outside Diameter (OD)12.5mm
Sheath Body and End CapStainless Steel 300 series
InsulationCeramic former + pure magnesium oxide
Cable1000mm extension lead, +350°C rated (Nickel Conductor/fibreglass/fibreglass silicone impregnated/PTFE impregnated)
Supply Voltage230V AC Nominal (other voltages available)
WattageNominal Wattage varies with voltage. W2=W1 (E2/E1)²
(W1 = rated wattage, W2 = actual wattage, E1 = rated voltage, E2 = supply voltage)


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