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EPC1PC8
+Lista de MateriaisIC CONFIG DEVICE 1MBIT 8DIP
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Peça do Fabricante #EPC1PC8
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Pacote DIP-8
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Especificações
| Atributo | Valor |
| Package / Case | Tube |
| Series | EPC |
| Part Status | Obsolete |
| Programmable Type | OTP |
| Memory Size | 1Mb |
| Voltage - Supply | 3V ~ 3.6V, 4.75V ~ 5.25V |
| Operating Temperature | 0°C ~ 70°C |
| Mounting Type | Through Hole |
Visão Geral
Description
- EPC1 to EPC8 represent different sections or classes within this classification system. Each section covers a broad technological field, which is further divided into subclasses for more specific categorization.
- Purpose: The EPC system helps patent offices, inventors, and researchers to streamline the patent application process, conduct prior art searches, and identify relevant patents within a specific technological domain.
- Structure: Each class is denoted by a combination of letters and numbers, where the initial letter typically corresponds to a major category (e.g., A for Human Necessities, B for Performing Operations and Transporting), followed by numbers that specify more precise subcategories.
Understanding the EPC codes from 1 to 8 can be crucial for anyone involved in patent law, intellectual property management, or innovation tracking. This classification aids in navigating the complex landscape of patents and ensuring that inventions are appropriately categorized and protected.
Equivalent
Pinout
The EPC1PC8 comes in an 8-pin PLCC package. The primary function of this device is to store configuration data that can be used to program an FPGA upon power-up. The pins of the EPC1PC8 typically include:
1. VCC: Power supply pin.
2. GND: Ground pin.
3. DATA: Data output pin used for transferring configuration data to the FPGA.
4. nCS (Chip Select): Active-low chip select input to enable the device.
5. DCLK (Data Clock): Clock input for synchronizing the data transfer.
6. nINIT_CONF: Used to initiate configuration.
7. nOE (Output Enable): Active-low output enable pin to control data output.
8. nRESET: Active-low reset to reset the configuration device.
These pins work together to ensure data transfer between the PROM and the FPGA, allowing the device to configure the FPGA upon startup.
Manufacturer
Application
- EPC1: Human necessities, including medical technology, agriculture, and personal or domestic articles.
- EPC2: Performing operations and transporting, focusing on industrial processes and transportation technologies.
- EPC3: Chemistry and metallurgy, including pharmaceuticals and materials science.
- EPC4: Textiles and paper.
- EPC5: Fixed constructions, such as buildings and mining.
- EPC6: Mechanical engineering and lighting, including engines and pumps.
- EPC7: Physics, encompassing optics and computing.
- EPC8: Electricity, covering electrical machinery and telecommunications.
These classifications facilitate patent searches and innovation tracking across industries.