Welcome to the Industrial Automation website!

NameDescriptionContent
HONG  KANG
E-mail  
Password  
  
Forgot password?
  Register
当前位置:

Watlow plug-in heater

来源: | 作者:FAN | 发布时间 :2025-11-11 | 174 次浏览: | Share:

Watlow plug-in heater

Product Family and Core Features

1. Product Line Overview

Core positioning of product series: Maximum operating temperature, maximum power density, key advantages

FIREROD ® Universal plug-in heater 1400 ° F (760 ° C) (Alloy 800 sheath) 400 W/in ² (62 W/cm ²) 60 years of industry validation, high thermal conductivity efficiency, supports multi scenario customization

High temperature FIREROD high-temperature working condition specific 1800 ° F (982 ° C) 100 W/in ² (15.5 W/cm ²) sealing design reduces oxidation, high emissivity sheath enhances heat transfer

Metric FIREROD global adaptation 1400 ° F (760 ° C) 330 W/in ² (50 W/cm ²) meets metric standards, has high dimensional accuracy, and is compatible with international equipment

MULTICELL ™ Multi zone precise temperature control 2050 ° F (1120 ° C) 30 W/in ² (4.6 W/cm ²) up to 6 independent temperature control zones, loose assembly design for easy disassembly and assembly

2. Core common advantages

Material and Structure: Made of nickel chromium resistance wire (uniform heating), magnesium oxide (MgO) insulation layer with specific grain purity (high dielectric strength, rapid heating), Alloy 800 or stainless steel sheath (anti-oxidation, corrosion-resistant).

Process design: Minimize the distance between the resistance wire and the sheath, reduce internal temperature, and support high power density operation; UL ®/ CSA certified leads, with insulation levels ranging from 250 ° C to 842 ° C.

Safety and reliability: non-volatile design, strong high-temperature stability; Some models support low leakage construction and are suitable for sensitive scenarios such as healthcare.

image.png

Detailed explanation of key technical specifications

1. Dimensions and tolerances

(1)FIREROD ®  standard size

Nominal diameter (in) Actual diameter (in/mm) Minimum sheath length (in/mm) Maximum sheath length (in/mm) Diameter tolerance

1/8 0.122(3.1) 7/8(22.2) 12(305) ±0.002 in(±0.05 mm)

1/4 0.246(6.3) 7/8(22.2) 36(915) ±0.002 in(±0.05 mm)

1/2 0.496(12.6) 7/8(22.2) 60(1520) ±0.002 in(±0.05 mm)

1 0.996(25.3) 1 1/4(32.0) 72(1830) ±0.003 in(±0.08 mm)

(2) Tolerance requirements

Length tolerance: The sheath with a length tolerance of ≤ 4.5 in (114 mm) is ± 3/32 in (± 2.4 mm); The sheath with a diameter greater than 4.5 inches is ± 2% (1/8 inch diameter is ± 3%).

Power tolerance: 1/8 inch diameter is+10%/-15%, other diameters are+5%/-10%.

Resistance tolerance: 1/8 inch diameter is+15%/-10%, other diameters are+10%/-5%; Resistance varies with temperature, with room temperature (before use) being 90% of the value calculated by Ohm's Law, and after use being 95%.

2. Electrical performance

(1)FIREROD ®  Voltage and power range

Diameter (in) Maximum voltage (V) Maximum current (A) 120V Minimum power (W) 240V Maximum power (W)

1/8 240 3.1 - 720

1/4 240 4.4 100 1050

3/4 480 23.0 30 5520

1 480 23.0 - 5520

(2) Metric FIREROD Electrical Parameters (Example)

Diameter (mm) Maximum voltage (V) 230V Maximum power (W) 400V Maximum power (W) Maximum current (A)

6.5 250 1650 - 7.2

16 480 4830 8400 21

20 480 4830 8400 21

3. Power density and application adaptation

Power density directly affects heating efficiency and heater lifespan, and should be selected based on the heating medium and operating conditions

Metal heating: The maximum allowable power density varies with the aperture fit gap and temperature (for example, at 1400 ° F, a fit gap of 0.005 in corresponds to a power density of approximately 80 W/in ²).

Air/gas heating: At an ambient temperature of 70 ° F, the maximum allowable power density for a single heater is approximately 60 W/in ²; When multiple devices are parallel, they need to be multiplied by a correction factor of 0.95, and when equipped with a reflector, they need to be multiplied by 0.85.

Mobile air heating: The higher the wind speed, the greater the allowed power density (for example, at a wind speed of 100 FPM, the power density can reach 1000 W/in ²).

image.png

Installation and Wiring Guide

1. Installation preparation

Aperture matching: It is recommended that the aperture be 0.001-0.006 inches larger than the actual diameter of the heater (for metal heating). A gap that is too large can reduce thermal efficiency, while a gap that is too small may make disassembly difficult.

Installation location: The sensor should be installed in a temperature uniform area, away from the edge of the heat source; The sheath should be in full contact with the heating medium to avoid local overheating.

Environmental requirements: Avoid installing in close proximity to noise sources such as motors and relays; In humid environments, models with sealing (PTFE/silicone) should be selected.

2. Wiring specifications

(1) Lead type and specifications

Lead type, maximum temperature, applicable scenarios, wire diameter specifications (example)

GGS fiberglass 482 ° F (250 ° C) universal scenario 18 AWG (1/2 inch diameter heater)

MGT 842 ° F (450 ° C) high temperature scenario 18 AWG (3/4 inch diameter heater)

PTFE 392 ° F (200 ° C) corrosion-resistant scenario 20 AWG (3/8 in diameter heater)

Mineral Insulation (MI) 1500 ° F (815 ° C) Extreme High Temperature/Vibration Scenarios Conductor Diameter 0.044 in (3/8 in diameter heater)

  • Alstom CPRM1 SINGLE-PHASE POWER REGULATION BOARD
  • Alstom ESVI1 INPUT/OUTPUT BOARD FOR CURRENT AND VOLTAGE SIGNALS
  • Alstom RDSP1 BOARD FOR ADJUSTING DIGITAL SIGNAL PROCESSES
  • Alstom MDEX1 microprocessor control board
  • Alstom IRVI20 - REGULATION INTERFACE BOARD
  • Alstom AMS42 POWER SUPPLY BOARD
  • ABB VACUUM CONTACTOR VSC7 SCO IEC 60470 400A 3POLE 220-250V 50/60Hz
  • ABB DRIVEMONITOR VERSION 4000 DRIVE MODULE RBOX316-ABB-00
  • YASKAWA JACP-317802 AC servo drive
  • YASKAWA JACP-317801 Advanced Process Controller
  • YASKAWA JACP-317120 Power Supply Unit
  • YASKAWA CP-9200SH/SVA servo controller
  • YASKAWA CP-9200SH/CPU Programmable Controller
  • YASKAWA CP-317/DO-01 Digital Output Module
  • YASKAWA CP-317/218IF high-speed communication interface module
  • YASKAWA CP-317/217 IF Communication Interface Module
  • YASKAWA CIMR-M5D2018 High Performance Inverter
  • YASKAWA CACR-HR10BB servo drive
  • YASKAWA 218IF machine controller
  • YOKOGAWA YS1700-100/A06/A31 Programmable Indicator Controller
  • YOKOGAWA KS9-5 * A signal cable
  • YOKOGAWA KS8-5 * A signal cable
  • YOKOGAWA KS2-5 * A DSC signal cable
  • YOKOGAWA PW482-10 power module
  • YOKOGAWA SCP451-11 processor module
  • YOKOGAWA SR1030B62-3MN * 1C High Frequency Signal Processor
  • YOKOGAWA SR1030B62 Analog Input Module
  • YOKOGAWA CP451-10 processor module
  • YOKOGAWA CP451-50 processor module
  • YOKOGAWA AAI143-H50 Analog Input Module
  • YOKOGAWA 22.5 × 17.4 × 10 Compact Industrial Control Module
  • YOKOGAWA AMM42 multiplexer input module
  • YOKOGAWA SDV144-S63 Digital Input Module
  • YOKOGAWA AIP830-111 single player keyboard
  • YOKOGAWA S9361DH-00 Terminal Board Module
  • YOKOGAWA ATK4A-00 S1 KS Cable Interface Adapter
  • YOKOGAWA PW701 power module
  • YOKOGAWA AVR10D-A22010 Duplex V-net Router
  • YOKOGAWA PW441-10 power module
  • YOKOGAWA VI451-10 Communication Interface Module
  • YOKOGAWA VC401-10 Coupling Module
  • YOKOGAWA ALP121 Communication Module
  • YOKOGAWA NFAI841-S00 Analog Input Module
  • YOKOGAWA AIP591 Process Control Module
  • YOKOGAWA AIP578 optical link transceiver
  • YOKOGAWA PW501 power module
  • YOKOGAWA YNT511D fiber optic bus repeater
  • YOKOGAWA AIP171 transceiver control module
  • YOKOGAWA VI702 Vnet/IP Interface Card
  • YOKOGAWA 2302-32-VLE-2 electronic mixer
  • YOKOGAWA ATK4A-00 Cable Interface Adapter
  • YOKOGAWA ALR121-S00 Communication Module
  • YOKOGAWA CP461-50 processor module
  • YOKOGAWA AIP121-S00 Control Module
  • YOKOGAWA UR1800 Recorder
  • YOKOGAWA LC82 * A Industrial Controller
  • YOKOGAWA ANR10D bus node unit
  • YOKOGAWA SDV144-S13 Digital Input Module
  • YOKOGAWA NFAI143-H00 Analog Input Module
  • YOKOGAWA EB501 Bus Interface Module
  • YOKOGAWA CP451-10 Process Control Module
  • YOKOGAWA V0/E1/TCAM/L08 Advanced Process Control Module
  • YOKOGAWA VO/E2/TCDM24/L8 high-precision temperature control module
  • YOKOGAWA 16137-119 high-precision digital input module
  • YOKOGAWA 16114-500 module rack
  • YOKOGAWA PSCDM024DCBAN Key Discrete Module
  • YOKOGAWA 16137-151 Process Control Module
  • YOKOGAWA 16137-188 Process Control Module
  • YOKOGAWA 16137-222 Process Controller
  • YOKOGAWA 16137-223 high-precision temperature transmitter
  • YOKOGAWA 16137-153 Digital Input Module
  • YOKOGAWA 866257000 high-precision temperature controller
  • YOKOGAWA 8596020000 Digital I/O Module
  • YOKOGAWA 866256000 high-precision process control module
  • ABB AFS670 19" Ruggedized Switch AFS670-EREEDDDSSEEEEEEEPZYX05.1.0
  • NI VXIpc-871B Controller
  • YOKOGAWA PSCAMAAN Process Control Analog Input Module
  • YOKOGAWA DR1030B60 servo actuator
  • YOKOGAWA ADV551 Digital Output Module
  • YOKOGAWA AAI543 proposed output module
  • YOKOGAWA LR 4220E Level Transmitter
  • YOKOGAWA SR1008B62 External Wiring Module
  • YOKOGAWA SC200S Control Valve Positioner
  • YOKOGAWA PW301 power module
  • YOKOGAWA NP53 * C Precision Control Module
  • YOKOGAWA F3YD64-1A transistor output module
  • YOKOGAWA F3XD64-3N Industrial Module Controller
  • YOKOGAWA F3WD64-3N High Performance Module Controller
  • YOKOGAWA F3SP21-0N CPU module
  • YOKOGAWA F3PU10-0N AC power module
  • YOKOGAWA F3PU06-0N power module
  • YOKOGAWA F3NC02-0N positioning module
  • YOKOGAWA F3NC01-0N positioning module
  • YOKOGAWA F3LC21-1N Multi Link Module
  • YOKOGAWA F3BU06-0N Base Module
  • FORCE PMC234 control module
  • FORCE CPU-2CE/16 Industrial Control CPU Module
  • Foxboro PBCO-D8-010 FBM I/O cards
  • FOXBORO PBCO-D8-009 Digital Output Module
  • FOXBORO FBM207C RH917GY High Density Contact Induction Input Module
  • FOXBORO AD916AE Digital Control System Module
  • FOXBORO FBM217 discrete input module
  • FOXBORO RH926GH processor module
  • FOXBORO H90 H90C9AA0117S Differential Pressure Transmitter
  • FOXBORO P0926GJ high-precision differential pressure transmitter
  • FOXBORO RH928AW control module
  • FOXBORO N-2AX+DIO signal distribution module
  • FOXBORO RH924WA Fiber Optic Network Adapter
  • FOXBORO P0924JH Control System Module
  • FOXBORO H92 Process Automation System
  • FOXBORO PP0926KN control module
  • FOXBORO P0916FH controller
  • FOXBORO E69F-T-I2-JRS on-site installation signal converter
  • FOXBORO P0926JM Standard 200 Series Baseplates
  • FOXBORO E69F-BI2-S Current Pneumatic Signal Converter
  • FOXBORO P0926GU FBM230 Field Equipment System Integration Module
  • FOXBORO RH931RQ cable terminal
  • FOXBORO H92A049E0700 server module
  • FOXBORO H90C9AA0117S Differential Pressure Transmitter
  • FOXBORO RH101AA High Performance Pressure Transmitter
  • FOXBORO FPS400-24 P0922YU power module
  • FOXBORO P0973LN differential pressure transmitter
  • FOXBORO P0926GV FBM231 Field Equipment System Integration Module
  • Foxboro FBM202 P0926EQ thermocouple/mV input module
  • FOXBORO FBMSVL Safety Valve Logic Solver
  • FOXBORO P0926PA Industrial Control Module
  • FOXBORO L0130AD L0130AE-0H Digital Input Module
  • FOXBORO 0399085B 0303440C+0303458A combination control module