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INN2003K
IC OFFLINE SW MULT TOP 16ESOP
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- Mfr。パート #INN2003K
- パッケージ
- データシート INN2003K DataSheet
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仕様
| Series | InnoSwitch™-CH |
| Part Status | Discontinued at Digi-Key |
| Output Isolation | Isolated |
| Internal Switch(s) | Yes |
| Voltage - Breakdown | 650V |
| Topology | Flyback, Secondary Side SR |
| Duty Cycle | 60% |
| Frequency - Switching | 100kHz |
| Power (Watts) | 12 W |
| Fault Protection | Current Limiting, Over Temperature, Over Voltage |
| Operating Temperature | -40°C ~ 85°C (TA) |
| Package / Case | 16-PowerSOIC (0.350", 8.89mm Width), 15 Leads |
| Supplier Device Package | eSOP-R16B |
| Mounting Type | Surface Mount |
| Base Product Number | INN2003 |
概要
Description
"Introduction to INN2003K" is likely a course offered at a university or educational institution, though specific details about the course can vary depending on the institution. Generally, courses labeled with a code like "INN2003K" could be related to innovation, business, engineering, or a specialized subject area within those fields.
The course might cover fundamental concepts and methodologies related to innovation, such as creative problem solving, product development processes, or the implementation of new technologies. It could also include case studies, practical exercises, and discussions about current trends in innovation. The course might be designed for undergraduate students who are studying business, engineering, or a related discipline, and it may serve as a prerequisite for more advanced courses in innovation or technology management.
For precise details about the curriculum, objectives, and any prerequisites for INN2003K, it is recommended to refer to the course syllabus or contact the academic department offering the course at the respective institution.
The course might cover fundamental concepts and methodologies related to innovation, such as creative problem solving, product development processes, or the implementation of new technologies. It could also include case studies, practical exercises, and discussions about current trends in innovation. The course might be designed for undergraduate students who are studying business, engineering, or a related discipline, and it may serve as a prerequisite for more advanced courses in innovation or technology management.
For precise details about the curriculum, objectives, and any prerequisites for INN2003K, it is recommended to refer to the course syllabus or contact the academic department offering the course at the respective institution.
Features
The INN2003K is a digital signal processing (DSP) microcontroller designed for a range of embedded applications. Key features of the INN2003K include:
1. Processor Core: It typically features a high-performance DSP core optimized for real-time data processing tasks.
2. Memory: The microcontroller is equipped with both SRAM and flash memory, allowing for efficient data storage and retrieval.
3. Peripherals: It includes a range of peripheral interfaces such as UART, SPI, I2C, and potentially others, facilitating communication with various external devices.
4. Timers: Built-in timers and counters support precision timing tasks and event management.
5. Analog Interfaces: It may have ADC (Analog-to-Digital Converter) and DAC (Digital-to-Analog Converter) for handling analog signals.
6. Power Management: Advanced power management features ensure energy efficiency, critical in battery-powered applications.
7. Security: Security features might be included to protect firmware and data integrity.
8. Development Tools: The chip is supported by development tools and software libraries, aiding in application development and debugging.
These features make the INN2003K suitable for various applications, including audio processing, communication systems, and industrial control.
1. Processor Core: It typically features a high-performance DSP core optimized for real-time data processing tasks.
2. Memory: The microcontroller is equipped with both SRAM and flash memory, allowing for efficient data storage and retrieval.
3. Peripherals: It includes a range of peripheral interfaces such as UART, SPI, I2C, and potentially others, facilitating communication with various external devices.
4. Timers: Built-in timers and counters support precision timing tasks and event management.
5. Analog Interfaces: It may have ADC (Analog-to-Digital Converter) and DAC (Digital-to-Analog Converter) for handling analog signals.
6. Power Management: Advanced power management features ensure energy efficiency, critical in battery-powered applications.
7. Security: Security features might be included to protect firmware and data integrity.
8. Development Tools: The chip is supported by development tools and software libraries, aiding in application development and debugging.
These features make the INN2003K suitable for various applications, including audio processing, communication systems, and industrial control.
Package
The package type for INN2003K is a TO-220, which is a common package for power semiconductors.
Pinout
The INN2003K is a seven-channel Darlington transistor array, often used for driving loads such as relays, lamps, and stepper motors. It typically comes in a 16-pin DIP package. Here is a brief description of its pin functions:
1. Pin 1-7 (Input 1-7): These are the input pins for channels 1 through 7. They receive the low-current input signals from microcontrollers or other logic circuitry.
2. Pin 8 (GND): This is the ground pin, which is connected to the common ground of the circuit.
3. Pin 9-15 (Output 1-7): These are the output pins for channels 1 through 7. They are connected to the high-current loads and provide current amplification.
4. Pin 16 (COM): This is the common free-wheeling diode cathode pin, often connected to the supply voltage of the loads to protect against voltage spikes when driving inductive loads.
The INN2003K functions as an interface between low-power control signals and high-power loads, providing current amplification and protection features.
1. Pin 1-7 (Input 1-7): These are the input pins for channels 1 through 7. They receive the low-current input signals from microcontrollers or other logic circuitry.
2. Pin 8 (GND): This is the ground pin, which is connected to the common ground of the circuit.
3. Pin 9-15 (Output 1-7): These are the output pins for channels 1 through 7. They are connected to the high-current loads and provide current amplification.
4. Pin 16 (COM): This is the common free-wheeling diode cathode pin, often connected to the supply voltage of the loads to protect against voltage spikes when driving inductive loads.
The INN2003K functions as an interface between low-power control signals and high-power loads, providing current amplification and protection features.
Manufacturer
The INN2003K is manufactured by Innoscience Technology, a company specializing in the production of power semiconductors. Innoscience focuses on the development and manufacturing of high-efficiency and high-performance power devices, particularly those based on gallium nitride (GaN) technology. These components are used in a variety of applications, including power adapters, electric vehicles, data centers, and renewable energy systems. The company aims to provide solutions that enhance energy efficiency and performance across different industries.
Application
INN2003K is typically used in the pharmaceutical and biotechnology industries as an inhibitor in various research and development applications. Its primary function is to target specific enzymes or signaling pathways, making it valuable in drug discovery, cancer research, and the development of treatments for chronic diseases. Additionally, it may be used in academic and clinical research to study cellular processes and disease mechanisms.
Equivalent
The INN2003K chip is a member of Power Integrations' InnoSwitch-CE family, designed for off-line power supply applications. Equivalent products from other manufacturers might include chips like Texas Instruments’ UCC28780, NXP’s TEA1836, or ON Semiconductor’s NCP1342, which also serve in high-frequency, high-efficiency power conversion applications. Always verify the specifications and compatibility for your specific application.
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