Compact FASTON terminals ac switching solid state relay
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Compact FASTON terminals ac switching solid state relay
1-Phase, 15A and 25A, 230VAC with LED status indicator, FASTON terminals connection, easy to use, compact design, miniature package for space-demanding applications.
Greegoo's GF1 series solid state relay provides a compact solid state switching solution suited for confined spaces. Long life time is ensured by the use of assembly technology that reduces stresses on the power semiconductors. A green LED indicates presence of the control voltage. FASTON terminals enable fast installation.
- AC switching Solid State Relay
- Switching through back to back thyristors
- Long lifetime through reduced stress on output chip
- Operational ratings: up to 280 VAC, 25A
- Control voltage: 5 VDC, 12 VDC, 24 VDC
- LED for control status indication
- Opto isolation input to output 3750 VAC
- Pre-attached thermal interface to SSR backplate
Model | Rated load current |
Control voltage | Output Voltage | Switching type | Termination |
GF1Z28L25 | 25A | L:5(4-8)VDC | 24-280VAC | Zero cross | Standard quick connect |
GF1Z28M25 | 25A | M:12(10-14)VDC | 24-280VAC | Zero cross | Standard quick connect |
GF1Z28D25 | 25A | D:24(21-27)VDC | 24-280VAC | Zero cross | Standard quick connect |
GF1R28L25 | 25A | L:5(4-8)VDC | 24-280VAC | Random | Standard quick connect |
GF1R28M25 | 25A | M:12(10-14)VDC | 24-280VAC | Random | Standard quick connect |
GF1R28D25 | 25A | D:24(21-27)VDC | 24-280VAC | Random | Standard quick connect |
GF1Z28L15 | 15A | L:5(4-8)VDC | 24-280VAC | Zero cross | Standard quick connect |
GF1Z28M15 | 15A | M:12(10-14)VDC | 24-280VAC | Zero cross | Standard quick connect |
GF1Z28D15 | 15A | D:24(21-27)VDC | 24-280VAC | Zero cross | Standard quick connect |
GF1R28L15 | 15A | L:5(4-8)VDC | 24-280VAC | Random | Standard quick connect |
GF1R28M15 | 15A | M:12(10-14)VDC | 24-280VAC | Random | Standard quick connect |
GF1R28D15 | 15A | D:24(21-27)VDC | 24-280VAC | Random | Standard quick connect |
GF1Z28L25N | 25A | L:5(4-8)VDC | 24-280VAC | Zero cross | 90º bent quick connect |
GF1Z28M25N | 25A | M:12(10-14)VDC | 24-280VAC | Zero cross | 90º bent quick connect |
GF1Z28D25N | 25A | D:24(21-27)VDC | 24-280VAC | Zero cross | 90º bent quick connect |
GF1R28L25N | 25A | L:5(4-8)VDC | 24-280VAC | Random | 90º bent quick connect |
GF1R28M25N | 25A | M:12(10-14)VDC | 24-280VAC | Random | 90º bent quick connect |
GF1R28D25N | 25A | D:24(21-27)VDC | 24-280VAC | Random | 90º bent quick connect |
GF1Z28L15N | 15A | L:5(4-8)VDC | 24-280VAC | Zero cross | 90º bent quick connect |
GF1Z28M15N | 15A | M:12(10-14)VDC | 24-280VAC | Zero cross | 90º bent quick connect |
GF1Z28D15N | 15A | D:24(21-27)VDC | 24-280VAC | Zero cross | 90º bent quick connect |
GF1R28L15N | 15A | L:5(4-8)VDC | 24-280VAC | Random | 90º bent quick connect |
GF1R28M15N | 15A | M:12(10-14)VDC | 24-280VAC | Random | 90º bent quick connect |
GF1R28D15N | 15A | D:24(21-27)VDC | 24-280VAC | Random | 90º bent quick connect |
The thyristor module is controlled by current, requiring a current pulse to trigger conduction and cannot be turned off via the gate, only naturally turning off when the current crosses zero, making it suitable for low-frequency, high-power applications. The IGBT module is controlled by voltage, being a fully controllable switch where both turn-on and turn-off can be controlled by gate voltage, with self-turn-off capability, suitable for medium to high-frequency applications. The IGBT operates at a higher frequency than the thyristor, making it ideal for applications requiring precise control.
The main differences between a Silicon Controlled Rectifier (SCR) module and a Solid State Relay (SSR) lie in their functions and composition. An SCR can regulate current by controlling the conduction angle, while an SSR primarily acts as a switch and cannot regulate current. A Solid State Relay consists of an SCR and a synchronous trigger drive, with an integrated isolation trigger terminal, whereas an SCR requires external isolation. Although they may have similar functions in some applications, they differ significantly in regulation capability and internal structure.
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