| Allicdata Part #: | 1470-3239-ND |
| Manufacturer Part#: |
C02 |
| Price: | $ 103.95 |
| Product Category: | Power Supplies - Board Mount |
| Manufacturer: | XP Power |
| Short Description: | SINGLE O/P, DC-HV DC PCB MOUNT, |
| More Detail: | High Voltage - Non-Isolated Module DC DC Converter... |
| DataSheet: | C02 Datasheet/PDF |
| Quantity: | 101 |
| Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
| Lead Free Status / RoHS Status: | Lead free by exemption / RoHS Compliant |
| 1 +: | $ 94.50000 |
| 5 +: | $ 93.08250 |
| 10 +: | $ 91.66500 |
| 25 +: | $ 88.83000 |
| Voltage - Output 2: | -- |
| Size / Dimension: | 1.40" L x 1.11" W x 0.50" H (35.6mm x 28.2mm x 12.7mm) |
| Package / Case: | 5-DIP Module |
| Mounting Type: | Through Hole |
| Efficiency: | -- |
| Operating Temperature: | -10°C ~ 60°C |
| Features: | SCP |
| Applications: | ITE (Commercial) |
| Power (Watts): | 1W |
| Current - Output (Max): | 5mA |
| Voltage - Output 3: | -- |
| Series: | XP EMCO - C |
| Voltage - Output 1: | 200V |
| Voltage - Input (Max): | 16V |
| Voltage - Input (Min): | 11.5V |
| Number of Outputs: | 1 |
| Type: | High Voltage - Non-Isolated Module |
| Moisture Sensitivity Level (MSL): | -- |
| Part Status: | Active |
| Lead Free Status / RoHS Status: | -- |
| Packaging: | Box |
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The CO2 application field and working principle has a multidimensional aspect. It can be used in a variety of applications and its characteristic is a key factor in its utility. It has been used as an electric converter, such as a DC DC Converter, to provide a range of useful attributes, such as electricity that drives small motors and LED lights, energy storage in batteries, and other inductive loads.
A DC-DC converter is an electronic circuit designed to convert direct current (DC) from one voltage to another, usually either higher or lower. This type of convertor is commonly used in mobile and automotive applications, as well as many other commercial products. A few of the general uses of DC-DC convertors include the buck-boost, inverting, linear, and LED lamps.
The basic working principle of a DC-DC converter is simple. In most cases, it uses a transistor or diode-based switch to allow one side of the device to be connected with a higher or lower DC voltage than the other side. The switching devices, typically field-effect transistors, reduce voltage and current output by a predetermined factor. For instance, a buck-boost converter uses a field-effect transistor (FET) to reduce the output voltage of a battery or power supply by the same voltage as the imposed voltage on the transistor\'s gate.
Buck-boost converters are often used when the device needs to output power at a different voltage than the one it is supplied with. This can occur in cases where the application requires a higher or lower voltage than the one supplied by the battery or power supply. For example, a mobile device or laptop computer may require 12V power but the battery may only output 6V; in this situation, a buck-boost converter would come in handy. An inverting DC-DC converter, on the other hand, is used to generate opposite polarities from the same input, allowing the device to switch between two DC voltages.
Linear DC-DC convertors are particularly useful when the output voltage required is less than half the input voltage, and the output is relatively small. This type of convertor is usually used in mobile devices, and it is extremely efficient and reliable. The operation of a linear DC-DC converter is fairly straightforward; it uses an electric field to reduce the output voltage by a predetermined factor.
LED lamps are also powered by DC-DC convertors. LED lamps usually require a power supply of 12V or higher, and in some cases as high as 24V. The convertor helps reduce the output voltage to a usable level and allows the LED to generate light. The DC-DC convertors used in LED lamps work in a similar manner to other types of DC-DC convertors; they use a controlled field-effect to reduce the output voltage.
It is important to note that, although commonly used, DC-DC convertors are not the only way to convert direct current. Other methods used to generate alternative voltage levels include switching power supplies, AC-DC converters, or even mechanical converters like Rube Goldberg machines. Nevertheless, DC-DC converter remain the most popular and most efficient way to convert electric power from one voltage to another.
The specific data is subject to PDF, and the above content is for reference
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C02 Datasheet/PDF