Glass Applications
- Flat / Float Glass
- Bath Roof Heating
- Annealing Lehr Heating
- Furnace Electric Boost
- Forming / Bending
- Fiberglass
- Bushing Power Systems
- Furnace Electric Boost
- Throat Heating
- Container Glass
- Furnace Electric Boost
- Forehearth Heating
- Flatware / Tableware
- Furnace Direct Melt
- Furnace Electric Boost
- Forehearth Heating
- TV / LCD Display Glass
- Fiberoptics
- Optical / Scientific / Specialty Glass
- Furnace Direct Melt
- Furnace Electric Boost
- Forehearth Heating
- Vitrification
- Direct Electric Melt
Controllers best suited for these applications are listed below:
Model | Phase | Mode | Voltage | Current | Highlights |
---|---|---|---|---|---|
1029D | One | Phase Angle | 120-575 Vac | 50-2000 Amps | Higher current ratings than our solid state relay models. Features include: current limiting, shorted SCR detection, over-current trip, metering outputs, user selectable feedback modes. |
3629C | Three | Phase Angle | 208-575 Vac | 50-1000 Amps | Higher current ratings than our solid state relay models. Features include: current limiting, shorted SCR detection, over-current trip. |
FUSION Single Phase AC | One | Phase Angle or Zero Cross | 24-600 Vac, 45-65 Hz (Auto-Ranging) |
50 - 1200 Amps | 24 - 600 Vac. A microprocessor-based SCR controller operating both analog and digital interfaces. A phase angle or zero cross fired controller which linearly controls, with respect to the setpoint, the AC voltage, current, or true power applied to an electrical load. Control is achieved by means of a pair of inverse parallel SCRs. |
FUSION Single Phase DC | One | Phase Angle or Zero Cross | 24-600 Vac, 45-65 Hz (Auto-Ranging) |
45 - 1080 Amps | 24 - 600 Vac. A microprocessor-based DC SCR controller operating both analog and digital interfaces. A phase angle fired controller which linearly controls, with respect to the setpoint, the DC voltage, current, or true power applied to an electrical load. Control is achieved by means of a half controlled SCR bridge. |
FUSION Three Phase AC | Three | Phase Angle or Zero Cross | 24 - 600 Vac, 45 - 65 Hz (Auto-Ranging) |
50 - 1200 Amps | 24 - 600 Vac. A microprocessor-based SCR controller operating both analog and digital interfaces. A phase angle or zero cross fired SCR controller which linearly controls, with respect to the setpoint, the AC voltage, current, or true power applied to a three phase electrical load. The 3 phase controller can be ordered in either 2 or 3 leg control with 2 leg being limited to zero cross firing. Control is achieved for 3 leg by three pairs of inverse parallel SCRs or in 2 leg by 2 pairs of inverse parallel SCRs. |
FUSION Three Phase DC | Three | DC | 24 - 600 Vac, 45 - 65 Hz (Auto-Ranging) |
60 - 1400 Amps Full Wave Rectified | 24 - 600 Vac. A microprocessor-based DC SCR controller operating both analog and digital interfaces. A phase angle-fired controller which linearly controls, with respect to the setpoint, the DC voltage, current, or true power applied to an electrical load. Control is achieved by means of a six SCR bridge with freewheeling diode. |
Compact FUSION Single Phase | One | Phase Angle, Zero Cross, Burst | 24-600 Vac, 45-65 Hz (Auto-Ranging) |
10 - 160 Amps | 24 - 600 Vac. A microprocessor-based SCR controller, operating with both analog and digital interfaces. Output is controlled linearly with respect to command signal and can be set to the average or RMS value of the voltage or current, as well as true instantaneous power or external feedback. |
Compact FUSION Three Phase | Three | Phase Angle, Zero Cross, Burst | 24-600 Vac, 45-65 Hz (Auto-Ranging) |
10 - 160 Amps | 24 - 600 Vac. A microprocessor-based SCR controller operating both analog and digital interfaces. Can be ordered in either 2 or 3 leg control with 2 leg being limited to zero cross firing. Output is controlled linearly with respect to command signal and can be set to the average or RMS value of the voltage or current, as well as true instantaneous power or external feedback. |
Learn more about firing modes here.
Learn more about load connections here.