USCI Mini Can Series, LED Drivers

Results:
12
Manufacturer
Series
Voltage - Output
Current - Output (Max)
Efficiency
Operating Temperature
Voltage - Input (Max)
Termination Style
Voltage - Isolation
Approval Agency
Size / Dimension
Number of Outputs
Voltage - Input (Min)
Power (Watts)
Features
Topology
Ratings
Type
Standard Number
Dimming
Results remaining12
Applied Filters:
USCI Mini Can
Select
ImageProduct DetailPriceAvailabilityECAD ModelTermination StylePower (Watts)RatingsStandard NumberOperating TemperatureApproval AgencyFeaturesCurrent - Output (Max)Voltage - IsolationEfficiencyTypeTopologyDimmingNumber of OutputsSeriesVoltage - Input (Min)Voltage - Input (Max)Voltage - OutputSize / Dimension
USCI-040105FA
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Wire Leads
40 W
-
-
-25°C ~ 55°C
CE, cURus
OCP, OTP, OVP, SCP
1.05A
3.75 kV
82%
Constant Current
AC DC Converter
Analog
1
USCI Mini Can
108VAC
305VAC
26 ~ 38V
9.50" L x 1.30" W x 1.00" H (241.3mm x 33.0mm x 25.4mm)
USCI-040140DA
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Wire Leads
40 W
-
-
-25°C ~ 55°C
CE, cURus
OCP, OTP, OVP, SCP
1.4A
3.75 kV
82%
Constant Current
AC DC Converter
Analog
1
USCI Mini Can
108VAC
305VAC
19.5 ~ 28.5V
9.50" L x 1.30" W x 1.00" H (241.3mm x 33.0mm x 25.4mm)
USCI-040125FA
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
40 W
-
-
-
-
-
1.25A
-
-
Constant Current
AC DC Converter
Analog
1
USCI Mini Can
120VAC
277VAC
-
-
USCI-040070FA
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Wire Leads
40 W
-
-
-25°C ~ 55°C
CE, cURus
OCP, OTP, OVP, SCP
700mA
3.75 kV
82%
Constant Current
AC DC Converter
Analog
1
USCI Mini Can
108VAC
305VAC
32 ~ 55V
9.50" L x 1.30" W x 1.00" H (241.3mm x 33.0mm x 25.4mm)
USCI-040070DA
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Wire Leads
40 W
-
-
-25°C ~ 55°C
CE, cURus
OCP, OTP, OVP, SCP
700mA
3.75 kV
82%
Constant Current
AC DC Converter
Analog
1
USCI Mini Can
108VAC
305VAC
32 ~ 55V
9.50" L x 1.30" W x 1.00" H (241.3mm x 33.0mm x 25.4mm)
USCI-040105DA
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Wire Leads
40 W
-
-
-25°C ~ 55°C
CE, cURus
OCP, OTP, OVP, SCP
1.05A
3.75 kV
82%
Constant Current
AC DC Converter
Analog
1
USCI Mini Can
108VAC
305VAC
26 ~ 38V
9.50" L x 1.30" W x 1.00" H (241.3mm x 33.0mm x 25.4mm)
USCI-040140FA
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Wire Leads
40 W
-
-
-25°C ~ 55°C
CE, cURus
-
1.4A
-
82%
Constant Current
AC DC Converter
Analog
1
USCI Mini Can
108VAC
305VAC
19.5 ~ 28.5V
9.50" L x 1.30" W x 1.00" H (241.3mm x 33.0mm x 25.4mm)
USCI-055125DA
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Wire Leads
55 W
-
-
-25°C ~ 55°C
CE, cURus
OCP, OTP, OVP, SCP
1.25A
3.75 kV
85%
Constant Current
AC DC Converter
Analog
1
USCI Mini Can
108VAC
305VAC
28 ~ 44V
9.50" L x 1.30" W x 1.00" H (241.3mm x 33.0mm x 25.4mm)
USCI-040125DA
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
40 W
-
-
-
-
-
1.25A
-
-
Constant Current
AC DC Converter
Analog
1
USCI Mini Can
120VAC
277VAC
-
-
USCI-040210DA
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Wire Leads
40 W
-
-
-25°C ~ 55°C
CE, cURus
-
2.1A
-
82%
Constant Current
AC DC Converter
Analog
1
USCI Mini Can
108VAC
305VAC
13 ~ 19V
9.50" L x 1.30" W x 1.00" H (241.3mm x 33.0mm x 25.4mm)
USCI-055125FA
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Wire Leads
55 W
-
-
-25°C ~ 55°C
CE, cURus
OCP, OTP, OVP, SCP
1.25A
3.75 kV
85%
Constant Current
AC DC Converter
Analog
1
USCI Mini Can
108VAC
305VAC
28 ~ 44V
9.50" L x 1.30" W x 1.00" H (241.3mm x 33.0mm x 25.4mm)
USCI-040210FA
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
Wire Leads
40 W
-
-
-25°C ~ 55°C
CE, cURus
-
2.1A
-
82%
Constant Current
AC DC Converter
Analog
1
USCI Mini Can
108VAC
305VAC
13 ~ 19V
9.50" L x 1.30" W x 1.00" H (241.3mm x 33.0mm x 25.4mm)

About  LED Drivers

LED drivers are essential components in the operation of residential and commercial LED lighting systems. Their primary function is to provide a steady and regulated flow of power to the LED lighting elements, ensuring optimal performance and longevity. LED drivers come in various topologies, including AC to AC, AC to DC, boost, buck, and buck-boost configurations. These different topologies allow the LED driver to convert the input voltage to the appropriate form required by the LED lighting system. One of the key features of LED drivers is their ability to maintain a constant current, constant voltage, or a combination of both, depending on the specific requirements of the LED lighting elements. Constant current LED drivers ensure that the LEDs receive a stable and consistent current, preventing overdriving or underdriving, which can result in reduced lifespan or compromised performance. Constant voltage LED drivers, on the other hand, deliver a fixed voltage to the LEDs, allowing for easy installation and compatibility with standard electrical systems. LED drivers are designed to accept a wide range of input voltages, making them suitable for use in various applications and regions. The selection of an LED driver involves considering parameters such as the minimum and maximum input voltage range, the desired output voltage and current (maximum), the overall power output capability, and any specific dimming features required for controlling the brightness of the LED lighting system. By providing the necessary power regulation and conversion, LED drivers ensure that the LED lighting elements operate efficiently, while also protecting them from voltage fluctuations and other electrical irregularities. This not only enhances the performance and reliability of the LED lighting system but also contributes to energy efficiency and cost savings. In summary, LED drivers play a crucial role in the proper functioning of residential and commercial LED lighting systems. Through their ability to regulate and convert power, they ensure that the LED lighting elements receive the appropriate current or voltage, resulting in optimal performance, longevity, and energy efficiency. The selection of an LED driver involves considering various parameters to meet the specific requirements of the LED lighting application.