Allicdata Part #: | 544-1321-ND |
Manufacturer Part#: |
EPM1270F256C3 |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Intel FPGAs/Altera |
Short Description: | IC CPLD 980MC 6.2NS 256FBGA |
More Detail: | N/A |
DataSheet: | EPM1270F256C3 Datasheet/PDF |
Quantity: | 1000 |
Series: | MAX® II |
Packaging: | Tray |
Part Status: | Active |
Programmable Type: | In System Programmable |
Delay Time tpd(1) Max: | 6.2ns |
Voltage Supply - Internal: | 2.5V, 3.3V |
Number of Logic Elements/Blocks: | 1270 |
Number of Macrocells: | 980 |
Number of I/O: | 212 |
Operating Temperature: | 0°C ~ 85°C (TJ) |
Mounting Type: | Surface Mount |
Package / Case: | 256-BGA |
Supplier Device Package: | 256-FBGA (17x17) |
Base Part Number: | EPM1270 |
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Embedded - CPLDs (Complex Programmable Logic Devices)
The EPM1270F256C3 is a field programmable gate array (FPGA) from Altera, a global leader in FPGA, CPLD and ASIC technologies. This device is highly versatile, allowing for a combination of up to 13 million logic gates and 32 million blocks of RAM, as well as a wide range of other features, making it suitable for a variety of applications. In this article, we\'ll take a closer look at the applications, working principle and other features of the EPM1270F256C3.
Applications
The EPM1270F256C3 is suitable for a variety of applications ranging from telecoms, automotive, consumer and industrial applications. It is ideal for applications with high-speed I/O design, network protocols, encryption, HPC and scientific computing as it supports various high performance I/O and transceivers. Some of the other applications it can be used for include:
- Protocol conversion
- Data encoders/decoders
- Video, audio and image processing
- Medical imaging
- Wireless communications
Working Principle
At the core of the EPM1270F256C3 is Altera\'s Matrix Architecture, a powerful programmable logic design technology that allows users to rapidly configure complete systems. The Matrix Architecture is designed to support concurrency and multiple transactions, making it easy to implement complex logic designs without the need to use difficult and error prone multiplexers and registers. Furthermore, it offers outstanding performance and scalability, allowing users to quickly develop highly reliable designs.
The EPM1270F256C3 is fully programmable and comes with the ability to use hard cores, meaning testing and debugging can be quickly and efficiently done prior to any system deployment. Additionally, the device is programmed with an Altera Embedded Design Environment (EDE), which includes a Hardware Configuration Design (HCD) tool and Code Compiler, as well as the Cadence and Mentor Graphics design suites. This gives users the power to quickly and efficiently configure the EPM1270F256C3 to their own specific needs.
Features
The EPM1270F256C3 has numerous features designed to make prototyping and developing complex systems a quick and straightforward process. It features 64-bit arithmetic, dynamic address routing, four-word pre-charge cycle and support for high-performance processors. In addition, the device also features an integrated microcontroller, which provides a variety of memory protection options, allowing users to protect their design from being corrupted. Moreover, the device provides eight high-speed I/O channels, allowing users to connect to external devices such as FPGAs, ASICs, system-on-chips, processors and other components.
In order to help developers take advantage of the FPGA\'s capabilities, the EPM1270F256C3 includes high-level synthesis capabilities. This allows developers to quickly and efficiently create complex logic systems without the need to write tedious and complex hardware descriptions. Additionally, the device also features a variety of intellectual property cores, making it easier than ever to create embedded subsystems such as digital microcontrollers, communications systems, digital signal processing, arithmetic units and more.
The EPM1270F256C3 also supports a wide range of power management options, allowing users to run their systems in either active or standby mode. Furthermore, the device supports both low and high-voltage operations, making it suitable for a variety of applications. Finally, the device operates at a maximum frequency of 200 MHz, allowing for quick and reliable data processing. This makes it an ideal solution for FPGA or CPLD applications that demand high speed and performance.
Conclusion
The EPM1270F256C3 from Altera is a powerful FPGA suitable for a range of applications. It features a versatile Matrix Architecture that supports concurrent and multiple transaction execution, 64-bit arithmetic, four-word pre-charge cycle, support for high-performance processors, high-level synthesis capabilities, and a variety of intellectual property cores. Furthermore, it has a maximum frequency of 200 MHz and supports both low and high-voltage operations, making it an ideal solution for demanding applications. With its extensive features, the EPM1270F256C3 is the perfect choice for developers looking for high-speed and reliable performance.
The specific data is subject to PDF, and the above content is for reference
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EPM1270F256C5N | Intel FPGAs/... | -- | 17 | IC CPLD 980MC 6.2NS 256FB... |
EPM1270T144I5N | Intel FPGAs/... | -- | 1000 | IC CPLD 980MC 6.2NS 144TQ... |
EPM1270T144C4N | Intel FPGAs/... | -- | 622 | IC CPLD 980MC 6.2NS 144TQ... |
EPM1270F256I5N | Intel FPGAs/... | -- | 2411 | IC CPLD 980MC 6.2NS 256FB... |
EPM1270F256C4N | Intel FPGAs/... | -- | 131 | IC CPLD 980MC 6.2NS 256FB... |
EPM1270T144C3N | Intel FPGAs/... | -- | 2 | IC CPLD 980MC 6.2NS 144TQ... |
EPM1270F256I5 | Intel FPGAs/... | -- | 141 | IC CPLD 980MC 6.2NS 256FB... |
EPM1270F256C3N | Intel FPGAs/... | 410.44 $ | 100 | IC CPLD 980MC 6.2NS 256FB... |
EPM1270GF256C5N | Intel FPGAs/... | -- | 90 | IC CPLD 980MC 6.2NS 256FB... |
EPM1270T144I5 | Intel FPGAs/... | -- | 1000 | IC CPLD 980MC 6.2NS 144TQ... |
EPM1270T144C5 | Intel FPGAs/... | -- | 1000 | IC CPLD 980MC 6.2NS 144TQ... |
EPM1270GT144C5 | Intel FPGAs/... | 21.63 $ | 1000 | IC CPLD 980MC 6.2NS 144TQ... |
EPM1270M256C5N | Intel FPGAs/... | -- | 2 | IC CPLD 980MC 6.2NS 256MB... |
EPM1270GM256C5N | Intel FPGAs/... | 24.43 $ | 1000 | IC CPLD 980MC 6.2NS 256MB... |
EPM1270F256C5 | Intel FPGAs/... | -- | 3 | IC CPLD 980MC 6.2NS 256FB... |
EPM1270GF256C5 | Intel FPGAs/... | -- | 1000 | IC CPLD 980MC 6.2NS 256FB... |
EPM1270GT144C4N | Intel FPGAs/... | 27.55 $ | 1000 | IC CPLD 980MC 6.2NS 144TQ... |
EPM1270GT144I5N | Intel FPGAs/... | 27.55 $ | 1000 | IC CPLD 980MC 6.2NS 144TQ... |
EPM1270T144C4 | Intel FPGAs/... | 65.67 $ | 119 | IC CPLD 980MC 6.2NS 144TQ... |
EPM1270GT144C4 | Intel FPGAs/... | 30.3 $ | 1000 | IC CPLD 980MC 6.2NS 144TQ... |
EPM1270GT144I5 | Intel FPGAs/... | 30.3 $ | 1000 | IC CPLD 980MC 6.2NS 144TQ... |
EPM1270T144A5N | Intel FPGAs/... | -- | 1000 | IC CPLD 980MC 6.2NS 144TQ... |
EPM1270M256C4N | Intel FPGAs/... | -- | 1 | IC CPLD 980MC 6.2NS 256MB... |
EPM1270GM256I5N | Intel FPGAs/... | 34.22 $ | 1000 | IC CPLD 980MC 6.2NS 256MB... |
EPM1270GF256C4N | Intel FPGAs/... | 34.22 $ | 1000 | IC CPLD 980MC 6.2NS 256FB... |
EPM1270GF256I5N | Intel FPGAs/... | -- | 1000 | IC CPLD 980MC 6.2NS 256FB... |
EPM1270F256C4 | Intel FPGAs/... | -- | 1000 | IC CPLD 980MC 6.2NS 256FB... |
EPM1270GF256C4 | Intel FPGAs/... | 37.64 $ | 1000 | IC CPLD 980MC 6.2NS 256FB... |
EPM1270GF256I5 | Intel FPGAs/... | 37.64 $ | 1000 | IC CPLD 980MC 6.2NS 256FB... |
EPM1270GT144C3N | Intel FPGAs/... | 39.33 $ | 1000 | IC CPLD 980MC 6.2NS 144TQ... |
EPM1270F256A5N | Intel FPGAs/... | 41.06 $ | 1000 | IC CPLD 980MC 6.2NS 256FB... |
EPM1270T144C3 | Intel FPGAs/... | 43.25 $ | 1000 | IC CPLD 980MC 6.2NS 144TQ... |
EPM1270GT144C3 | Intel FPGAs/... | 43.25 $ | 1000 | IC CPLD 980MC 6.2NS 144TQ... |
EPM1270GF256C3N | Intel FPGAs/... | -- | 1000 | IC CPLD 980MC 6.2NS 256FB... |
EPM1270F256C3 | Intel FPGAs/... | -- | 1000 | IC CPLD 980MC 6.2NS 256FB... |
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