BU2508FV-E2 Integrated Circuits (ICs) |
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Allicdata Part #: | BU2508FV-E2TR-ND |
Manufacturer Part#: |
BU2508FV-E2 |
Price: | $ 1.51 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | ROHM Semiconductor |
Short Description: | IC DAC 10BIT 4-CHAN SSOP14 |
More Detail: | 10 Bit Digital to Analog Converter 4 14-SSOPB |
DataSheet: | BU2508FV-E2 Datasheet/PDF |
Quantity: | 1000 |
2500 +: | $ 1.36710 |
Reference Type: | Supply |
Base Part Number: | BU250* |
Supplier Device Package: | 14-SSOPB |
Package / Case: | 14-LSSOP (0.173", 4.40mm Width) |
Operating Temperature: | -30°C ~ 85°C |
Architecture: | R-2R |
INL/DNL (LSB): | ±3.5 (Max), ±1 (Max) |
Voltage - Supply, Digital: | 5V |
Voltage - Supply, Analog: | 5V |
Series: | -- |
Data Interface: | SPI |
Differential Output: | No |
Output Type: | Voltage - Buffered |
Settling Time: | 20µs |
Number of D/A Converters: | 4 |
Number of Bits: | 10 |
Part Status: | Active |
Packaging: | Tape & Reel (TR) |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
BU2508FV-E2 is a high quality Digital to Analog Converter (DAC) for industrial and consumer applications. This device is capable of producing both linear and constant current outputs, and its integral microcontroller allows for higher resolution control and higher accuracy outputs.
In terms of its application field, BU2508FV-E2 is a very versatile device; it can be used for a wide range of applications such as motor speed, voltage and current control, automated temperature measurement and control, and servo control. This device is particularly effective when used with Control Applications, Signal Processing, Industrial Robots and Film Production equipment.
In order to understand how the BU2508FV-E2 can perform its task, it is of primary importance to understand its basic working principle. The BU2508FV-E2 uses a multi-level control algorithm to compare a reference signal and user-specified output parameters. This output parameters and reference signal are both stored on a programmable non-volatile memory chip, so the BU2508FV-E2 does not require a central micro-controller for operation. The final output is determined by the comparison between the reference signal and user-specified output parameters.
In order to further understand the working principle of the BU2508FV-E2, it is important to note that this device is composed of two main components: the first component is a power MOSFET, which is responsible for converting the digital signal to an analog signal. Once a digital signal has been converted, the second component, called a feedback circuit, is used to match the output current of the device to the reference signal and user-specified output parameters.
The power MOSFET can be regarded as the main part of the BU2508FV-E2. This component is responsible for converting the digital signal to analog. The power MOSFET works by charging up a capacitor with the received digital signal. This will result in the voltage across the capacitor increasing, until it will be inputted into the feedback loop. The capacitor will then start to discharge, with the rate of discharge being determined by the reference signal and user-specified output parameters.
The feedback loop is the second component of the BU2508FV-E2, and it works by comparing the output current to the reference signal and user-specified output parameters. The output current is sensitive to changes in these parameters and can be adjusted accordingly. The feedback loop can be thought of as the controller of the device, and its main purpose is to keep the output current within a predetermined range.
The BU2508FV-E2 is a versatile device, capable of providing a very high level of accuracy and control. Its application field is wide, and can be used in a variety of industrial and consumer applications. Its working principle is based on a multi-level control algorithm, which compares the reference signal and user-specified output parameters. This device is composed of a power MOSFET, which is used to convert the digital signal to analog, and a feedback loop, which is responsible for keeping the output current within a predetermined range.
The specific data is subject to PDF, and the above content is for reference
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BU25H06-M3/P | Vishay Semic... | 2.02 $ | 800 | BRIDGE RECT 1P 600V 3.5A ... |
BU25H08-M3/P | Vishay Semic... | 2.02 $ | 800 | BRIDGE RECT 1P 600V 3.5A ... |
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BU2500FV-E2 | ROHM Semicon... | -- | 1000 | IC D/A CONV 8BIT SSOP-B20... |
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BU25TD2WNVX-TL | ROHM Semicon... | -- | 5000 | IC REG LIN 2.5V 200MA 4SS... |
BU25TD3WG-TR | ROHM Semicon... | -- | 1000 | IC REG LINEAR 2.5V 200MA ... |
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BU25JA2MNVX-CTL | ROHM Semicon... | 0.16 $ | 1000 | IC REG LINEAR 200MA SSON0... |
BU25TA2WHFV-TR | ROHM Semicon... | -- | 1000 | IC REG LINEAR 2.5V 200MA ... |
BU2506-E3/51 | Vishay Semic... | 2.06 $ | 1000 | RECTIFIER BRIDGE 600V 25A... |
BU2510-E3/45 | Vishay Semic... | -- | 790 | RECTIFIER BRIDGE 1000V 25... |
BU2506-M3/45 | Vishay Semic... | 2.3 $ | 1000 | RECTIFIER BRIDGE 25A 600V... |
BU2510-M3/45 | Vishay Semic... | 2.3 $ | 1000 | RECTIFIER BRIDGE 25A 1000... |
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BU2510-E3/51 | Vishay Semic... | -- | 1000 | RECTIFIER BRIDGE 1000V 25... |
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BU25H08-M3/A | Vishay Semic... | 1.14 $ | 1000 | BRIDGE RECT 1P 800V 3.5A ... |
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BU2508-M3/51 | Vishay Semic... | 1.21 $ | 1000 | RECTIFIER BRIDGE 25A 800V... |
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BU25065S-M3/45 | Vishay Semic... | 1.43 $ | 1000 | RECTIFIER BRIDGE 25A 600V... |
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