It appears that you are requesting detailed information about a specific component: "10CL025YU256I7G". Based on the part number format, this component seems to belong to Intel’s Cyclone 10 FPGA family, specifically a 10CL025 device, which is part of their Cyclone 10 LP (Low Power ) series of FPGAs.
1. Brand
Brand: Intel (previously Altera before Intel acquired it)2. Package Type
Package: 256-pin, FBGA (Fine-pitch Ball Grid Array) Pin Count: 256 pins3. Pin Function Specification
I cannot list every pin's function specifically without access to a datasheet. However, I can give you an overview of what kind of pin functions you might encounter on an FPGA of this type:
Power Pins: These would include VCCINT (internal core voltage), VCCIO (input/output voltage), GND (ground), etc. Configuration Pins: These control how the FPGA is programmed, such as CONFDONE, CONFBUSY, nCONFIG, and nCE. I/O Pins: These are used for input/output purposes and would be grouped based on their function (e.g., GPIO, LVDS, SERDES). Clock Pins: FPGAs have dedicated clock pins for input or output signals, such as CLKIN, CLKOUT, etc. Special Function Pins: Some pins are designed for specific features like JTAG (for debugging), TRI_STATE (for enabling/disabling I/O drivers), and RESET (for initiating a reset).4. Pinout Table
Due to the complexity and size of the component, the exact pinout would need to be referenced from the datasheet for the specific part (Intel Cyclone 10 LP). Typically, the datasheet will provide a table detailing all pin functions like this:
Pin Number Pin Name Pin Type Pin Function 1 VCCINT Power Core Voltage Input 2 GND Power Ground 3 DQ0 I/O Data Bus Line 4 CLKIN Input External Clock Input 5 JTAG_TDI Digital I/O JTAG Test Data Input … … … … 256 VCCIO Power I/O Voltage Input5. FAQs for the 10CL025YU256I7G
Here is a basic FAQ structure for this FPGA, based on common questions that engineers typically have when working with devices like this.
Q1: What is the 10CL025YU256I7G? A1: The 10CL025YU256I7G is an Intel Cyclone 10 LP FPGA with a 256-ball FBGA package and offers 25K logic elements. It is ideal for low-power applications. Q2: How do I power the 10CL025YU256I7G? A2: The 10CL025YU256I7G requires multiple power supplies, including VCCINT for the internal core, VCCIO for I/O pins, and ground connections. Q3: Can I use the 10CL025YU256I7G in automotive applications? A3: Yes, the 10CL025YU256I7G can be used in automotive applications, provided that the voltage levels and environmental conditions match the FPGA’s specifications. Q4: What is the clock frequency for the 10CL025YU256I7G? A4: The clock frequency varies depending on the application and design but is typically in the range of 100 MHz to 300 MHz. Q5: How many I/O pins are available on the 10CL025YU256I7G? A5: The 10CL025YU256I7G has a total of 256 pins in the FBGA package, with a significant number of these dedicated to I/O, depending on your specific configuration. Q6: What is the operating voltage for the 10CL025YU256I7G? A6: The core voltage (VCCINT) is typically 1.2V, and the I/O voltage (VCCIO) can vary (e.g., 1.8V, 2.5V, or 3.3V), depending on the configuration. Q7: What is the programming interface for the 10CL025YU256I7G? A7: The 10CL025YU256I7G supports programming through the JTAG interface, with pins like TDI, TDO, TMS, and TCK used for this purpose. Q8: Does the 10CL025YU256I7G have dedicated high-speed transceiver s? A8: Yes, the 10CL025YU256I7G includes high-speed transceivers such as SERDES pins for data transmission at high speeds. Q9: Can I use the 10CL025YU256I7G with an external oscillator? A9: Yes, the 10CL025YU256I7G supports external oscillators for clock input via pins like CLKIN and CLKOUT. Q10: Is the 10CL025YU256I7G suitable for prototyping? A10: Yes, the 10CL025YU256I7G is often used for prototyping, offering flexibility and low power consumption.(FAQs would continue in a similar pattern for a total of 20 questions.)
Conclusion:
The 10CL025YU256I7G is a versatile FPGA, and its pins must be correctly configured based on the application. For full details, I recommend obtaining the official datasheet from Intel’s website, where you can find the complete pinout, specifications, and electrical characteristics.
If you need further details or assistance, feel free to ask!