RS PRO 20 → 70W Light Transformer, 230V ac, 11.5V
Technical Document
Specifications
Brand
RS ProPrimary Voltage Rating
230V ac
Secondary Voltage Rating
11.5V
Power Rating
20 → 70W
Dimensions
53 (Dia.) x 22 mm
Depth
22 mm
Minimum Load Requirement
20W
Maximum Temperature
+45°C
Weight
70 g
Type
Electronic
Dimming
Dimming
Dimming Method
Trailing Edge
Diameter
53mm
Minimum Operating Frequency
50Hz
Termination Type
Lead Wire
Protection Features
Over Voltage Protection, Overheating Protection, Overload Protection, Short Circuit Protection
Maximum Operating Frequency
60Hz
Country of Origin
Italy
Product details
Single O/P Round Dimmable Mini Electronic Transformer
IP20 independent transformer for 12 V halogen lamps
Class II protection against electric shock following direct and indirect contact
The transformer is supplied with cables on the primary and secondary circuits
Excellent operating reliability at very high temperatures (ta = 45 °C; tc = 90 °C)
Small compact size
Easy assembly and installation
Protected against overheating, short-circuits, voltage spikes and overloads
Low Voltage Lighting Transformers
Dimming Methods (where applicable):
Leading Edge:
The control device is either a thyristor or triac which blocks power until they are switched on by the control signal. At that point the current flows almost instantaneously and continues to flow until the end of the half cycle of the mains waveform. When the signal reaches zero, the device turns off and no more current is passed until it is triggered again. Turning the power on and off in this manner averages out creating a constant intensity level and by altering the precise trigger point over a period of time the lamp can be dimmed.
Trailing Edge:
Since this method of dimming uses transistor technology it is not limited to just switching, therefore current can be controlled gradually. Transistors can be programmed to pass current at the start of each half cycle, and gradually switch off later. This will control the full amount of power reaching the lamp without the side effects of a step increase in current.
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Technical Document
Specifications
Brand
RS ProPrimary Voltage Rating
230V ac
Secondary Voltage Rating
11.5V
Power Rating
20 → 70W
Dimensions
53 (Dia.) x 22 mm
Depth
22 mm
Minimum Load Requirement
20W
Maximum Temperature
+45°C
Weight
70 g
Type
Electronic
Dimming
Dimming
Dimming Method
Trailing Edge
Diameter
53mm
Minimum Operating Frequency
50Hz
Termination Type
Lead Wire
Protection Features
Over Voltage Protection, Overheating Protection, Overload Protection, Short Circuit Protection
Maximum Operating Frequency
60Hz
Country of Origin
Italy
Product details
Single O/P Round Dimmable Mini Electronic Transformer
IP20 independent transformer for 12 V halogen lamps
Class II protection against electric shock following direct and indirect contact
The transformer is supplied with cables on the primary and secondary circuits
Excellent operating reliability at very high temperatures (ta = 45 °C; tc = 90 °C)
Small compact size
Easy assembly and installation
Protected against overheating, short-circuits, voltage spikes and overloads
Low Voltage Lighting Transformers
Dimming Methods (where applicable):
Leading Edge:
The control device is either a thyristor or triac which blocks power until they are switched on by the control signal. At that point the current flows almost instantaneously and continues to flow until the end of the half cycle of the mains waveform. When the signal reaches zero, the device turns off and no more current is passed until it is triggered again. Turning the power on and off in this manner averages out creating a constant intensity level and by altering the precise trigger point over a period of time the lamp can be dimmed.
Trailing Edge:
Since this method of dimming uses transistor technology it is not limited to just switching, therefore current can be controlled gradually. Transistors can be programmed to pass current at the start of each half cycle, and gradually switch off later. This will control the full amount of power reaching the lamp without the side effects of a step increase in current.