EPM2210F256C4N CPLD - Complex Programmable Logic Devices integrated circuits

EPM2210F256C4N CPLD - Complex Programmable Logic Devices
Altera | |
Product Category: | CPLD - Complex Programmable Logic Devices |
RoHS: | Details |
EPM2210 | |
SMD/SMT | |
FBGA-256 | |
2.5 V, 3.3 V | |
1700 Macrocell | |
272 I/O | |
3.6 V | |
2.375 V | |
0 C | |
+ 70 C | |
304 MHz | |
7 ns | |
Tray | |
Brand: | Altera |
Memory Type: | Flash |
Moisture Sensitive: | Yes |
Number of Logic Array Blocks - LABs: | 221 |
Number of Logic Elements: | 2210 |
Operating Supply Current: | 55 mA |
Product Type: | CPLD - Complex Programmable Logic Devices |
Subcategory: | Programmable Logic ICs |
Total Memory: | 8192 bit |
Tradename: | MAX II |
Part # Aliases: | 968057 |
Unit Weight: | 0.052911 oz |
EPM2210F256C4N is a model of Field-Programmable Gate Array (FPGA) device manufactured by Intel
(formerly Altera). It is a member of the Intel MAX® 10 FPGA family.
Here are the key features of the EPM2210F256C4N FPGA:
It has a logic capacity of 2,210 logic elements (LEs). Logic elements are programmable building blocks
- that can be configured to implement various digital functions.
- The device has 256 kilobits (Kb) of on-chip memory for data storage and processing.
- It supports up to 78 input/output (I/O) pins, allowing for connectivity with other components and devices.
- The EPM2210F256C4N FPGA operates at a maximum frequency of up to 300 megahertz (MHz), enabling
- high-speed data processing.
- It offers various I/O standards such as LVCMOS, LVTTL, and Schmitt triggers, providing flexibility in
- interfacing with different types of devices.
- The device supports configuration through various methods, including JTAG (Joint Test Action Group)
- and active serial configuration.
-
Architecture: The EPM2210F256C4N FPGA utilizes Intel's MAX® 10 FPGA architecture. This architecture
combines the benefits of a non-volatile FPGA with advanced features such as integrated analog blocks,
multi-voltage I/O, and embedded memory.
- Non-volatile Configuration: The device features non-volatile configuration, which means that the FPGA can
retain its configuration even when power is removed. This eliminates the need for external configuration
memory and simplifies the system design.
-
Embedded Memory: In addition to the on-chip memory mentioned earlier, the EPM2210F256C4N FPGA
also includes various types of embedded memory blocks, including single-port RAM, dual-port RAM,
and M20K memory. These memory resources can be used for data storage, buffering, and implementing
complex algorithms.
-
DSP Blocks: The FPGA contains digital signal processing (DSP) blocks that offer dedicated hardware
resources for performing signal processing tasks efficiently. These DSP blocks can be used for operations
such as multiplication, addition, accumulation, and filtering.
-
PLLs and Clock Management: The device includes phase-locked loops (PLLs) for generating stable and
precise clock signals. It also provides clock management resources, such as clock dividers and clock
multiplexers, to handle different clocking requirements within the design.
-
Development Tools: Intel provides a comprehensive suite of development tools, including Quartus Prime
software, to program, configure, and verify the EPM2210F256C4N FPGA. These tools offer a user-friendly
interface, simulation capabilities, and optimization features to streamline the FPGA design process.
-
Application Support: The EPM2210F256C4N FPGA is designed to support a wide range of applications,
including industrial automation, robotics, motor control, Internet of Things (IoT) devices, and communication
systems. Its flexible architecture and rich feature set make it suitable for both control-oriented and
data-processing applications.

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