Спецификации
| Атрибут | Ценность |
| Package / Case | Tube |
| Series | EPC |
| Part Status | Obsolete |
| Programmable Type | In System Programmable |
| Memory Size | 1.6Mb |
| Voltage - Supply | 3V ~ 3.6V, 4.5V ~ 5.5V |
| Operating Temperature | -40°C ~ 85°C |
| Mounting Type | Surface Mount |
Обзор
Description
EPC2LI20 is not a standard term or widely recognized acronym, so its meaning could vary depending on the context in which it is used. If EPC2LI20 refers to a specific course, product, or system, it would typically involve specialized content or technology related to engineering, electronics, or another technical field. For instance, if EPC2LI20 is a course code at an educational institution, it might represent a specific class focused on a niche area of study. Alternatively, if it refers to a part number or model in electronics or engineering, it could denote a particular component or device used in those industries. To provide a more precise and relevant introduction, additional context or details about where or how EPC2LI20 is used are necessary. In any case, obtaining information from the organization or entity that uses this term would be the best approach to understand its significance and application fully.
Equivalent
The EPC2LI20 chip is a programmable logic device from Altera (now part of Intel), typically used for configuration of FPGAs. Equivalent products would be other FPGA configuration devices with similar specifications. These might include the Xilinx XC18V02 series for Xilinx FPGAs or other low-density, non-volatile memory devices from manufacturers like Microchip (Atmel) or Lattice Semiconductor, provided they match in configuration memory size, voltage levels, and packaging options. Always check compatibility with your specific FPGA needs.
Features
The EPC2LI20 is a type of flash memory configuration primarily used in programmable logic devices, particularly within Altera/Intel FPGA applications. Here are its key features:
1. Configuration Memory: It serves as a storage medium for FPGA configuration data, ensuring that the FPGA can be programmed and reconfigured as needed.
2. In-System Programmability: EPC2LI20 devices allow users to program and reprogram the memory while it is still in the system, offering flexibility for updates and modifications.
3. Low Power Consumption: Designed to operate efficiently with minimal power requirements, making it suitable for various applications where energy efficiency is crucial.
4. Small Form Factor: Available in a compact package, it is ideal for designs where space is a constraint.
5. Reliability: Provides non-volatile storage, meaning it retains data even when power is lost, ensuring the FPGA can be correctly configured upon powering up.
6. Compatibility: Works seamlessly with a range of Intel/Altera FPGA devices, facilitating easy integration into existing systems.
These features make the EPC2LI20 a versatile choice for managing FPGA configurations in embedded systems.
1. Configuration Memory: It serves as a storage medium for FPGA configuration data, ensuring that the FPGA can be programmed and reconfigured as needed.
2. In-System Programmability: EPC2LI20 devices allow users to program and reprogram the memory while it is still in the system, offering flexibility for updates and modifications.
3. Low Power Consumption: Designed to operate efficiently with minimal power requirements, making it suitable for various applications where energy efficiency is crucial.
4. Small Form Factor: Available in a compact package, it is ideal for designs where space is a constraint.
5. Reliability: Provides non-volatile storage, meaning it retains data even when power is lost, ensuring the FPGA can be correctly configured upon powering up.
6. Compatibility: Works seamlessly with a range of Intel/Altera FPGA devices, facilitating easy integration into existing systems.
These features make the EPC2LI20 a versatile choice for managing FPGA configurations in embedded systems.
Pinout
The EPC2LI20 is a configuration device from Altera (now part of Intel) used primarily for configuring FPGAs. It comes in a 20-pin PLCC (Plastic Leaded Chip Carrier) package. The main function of the EPC2LI20 is to store configuration data for Altera FPGAs and load this data into the FPGA upon power-up or reset.
Key pin functions include:
1. Data (DATA) - used to send configuration data to the FPGA.
2. Clock (DCLK) - provides the clock signal for synchronizing data transfers.
3. Configuration Enable (nCE) - enables the configuration process.
4. Configuration Done (nCONFIG) - used to initiate the configuration process.
5. Configuration Done (nSTATUS) - indicates the status of the configuration process.
6. Initialization Done (nINIT_CONF) - indicates completion of initialization.
7. Ground (GND) - power ground.
8. Supply Voltage (VCC) - power supply.
Other pins are used for additional control and power functions. EPC2LI20 is used in various applications to ensure the FPGA starts with the correct configuration data every time it's powered on.
Key pin functions include:
1. Data (DATA) - used to send configuration data to the FPGA.
2. Clock (DCLK) - provides the clock signal for synchronizing data transfers.
3. Configuration Enable (nCE) - enables the configuration process.
4. Configuration Done (nCONFIG) - used to initiate the configuration process.
5. Configuration Done (nSTATUS) - indicates the status of the configuration process.
6. Initialization Done (nINIT_CONF) - indicates completion of initialization.
7. Ground (GND) - power ground.
8. Supply Voltage (VCC) - power supply.
Other pins are used for additional control and power functions. EPC2LI20 is used in various applications to ensure the FPGA starts with the correct configuration data every time it's powered on.
Manufacturer
The EPC2LI20 is manufactured by Altera Corporation, which is now part of Intel Corporation after its acquisition in 2015. Altera was known for designing and manufacturing programmable logic devices (PLDs), including field-programmable gate arrays (FPGAs), complex programmable logic devices (CPLDs), and other related products. These devices are used in a wide range of applications, including telecommunications, automotive, industrial, and consumer electronics, where flexibility and customizability of digital circuits are required.
After being acquired, Altera became Intel's Programmable Solutions Group. Intel continues to develop and expand on Altera's original product lines, integrating them into Intel’s broader portfolio of semiconductor and technology solutions. Intel is a multinational corporation and technology company known for its significant contributions to the development and innovation of microprocessors and other semiconductor components. It plays a critical role in the computing, data storage, and communications industries.
After being acquired, Altera became Intel's Programmable Solutions Group. Intel continues to develop and expand on Altera's original product lines, integrating them into Intel’s broader portfolio of semiconductor and technology solutions. Intel is a multinational corporation and technology company known for its significant contributions to the development and innovation of microprocessors and other semiconductor components. It plays a critical role in the computing, data storage, and communications industries.
Application
The EPC2LI20 is a type of power inductor, which is a component used in various electronic applications. Its primary application areas include:
1. Power Supply Circuits: Used for energy storage, filtering, and voltage regulation.
2. DC-DC Converters: Essential in step-up or step-down voltage conversion processes.
3. RF Circuits: Helps in tuning and impedance matching.
4. Consumer Electronics: Found in smartphones, tablets, and laptops for power management.
5. Automotive Electronics: Supports electronic control units and infotainment systems.
6. Telecommunications: Utilized in network equipment for stable power delivery.
7. Industrial Equipment: Ensures efficient power handling in automation systems.
These inductors are selected for their efficiency, size, and ability to handle high currents.
1. Power Supply Circuits: Used for energy storage, filtering, and voltage regulation.
2. DC-DC Converters: Essential in step-up or step-down voltage conversion processes.
3. RF Circuits: Helps in tuning and impedance matching.
4. Consumer Electronics: Found in smartphones, tablets, and laptops for power management.
5. Automotive Electronics: Supports electronic control units and infotainment systems.
6. Telecommunications: Utilized in network equipment for stable power delivery.
7. Industrial Equipment: Ensures efficient power handling in automation systems.
These inductors are selected for their efficiency, size, and ability to handle high currents.