
Altera Corporation
EP2AGX125EF29C6NES
EP2AGX125EF29C6NES ECAD Model
EP2AGX125EF29C6NES Attributes
Type | Description | Select |
---|---|---|
Part Life Cycle Code | Transferred | |
Supply Voltage-Nom | 900 mV | |
Number of CLBs | 124100 | |
Programmable Logic Type | FIELD PROGRAMMABLE GATE ARRAY | |
Temperature Grade | OTHER | |
Package Shape | SQUARE | |
Organization | 124100 CLBS | |
Clock Frequency-Max | 500 MHz | |
Supply Voltage-Max | 930 mV | |
Supply Voltage-Min | 870 mV | |
JESD-30 Code | S-PBGA-B780 | |
Qualification Status | Not Qualified | |
Operating Temperature-Max | 85 °C | |
Number of Terminals | 780 | |
Package Body Material | PLASTIC/EPOXY | |
Package Code | BGA | |
Package Shape | SQUARE | |
Package Style | GRID ARRAY | |
Surface Mount | YES | |
Terminal Form | BALL | |
Terminal Pitch | 1 mm | |
Terminal Position | BOTTOM | |
Width | 29 mm | |
Length | 29 mm | |
Seated Height-Max | 3.5 mm | |
Ihs Manufacturer | ALTERA CORP | |
Reach Compliance Code | unknown | |
HTS Code | 8542.39.00.01 | |
Part Package Code | BGA | |
Package Description | 29 X 29 MM, LEAD FREE, FBGA-780 | |
Pin Count | 780 |
EP2AGX125EF29C6NES Datasheet Download
EP2AGX125EF29C6NES Overview
The EP2AGX125EF29C6NES chip model is a highly advanced device designed for high-performance digital signal processing, embedded processing, and image processing. It is programmed with HDL language and is a powerful tool to accelerate the development of various applications. This chip model can be used in a wide range of scenarios, such as network applications, intelligent scenarios, and fully intelligent systems.
The EP2AGX125EF29C6NES chip model has a wide range of features, including a high-performance 32-bit RISC processor, a large memory capacity, and a variety of interfaces. It also supports a wide range of peripherals, such as Ethernet, USB, and serial ports, and can be used in various applications. This chip model also has a low power consumption, making it an ideal choice for applications that require low power consumption.
In terms of product design, the EP2AGX125EF29C6NES chip model has several key features that make it suitable for various applications. It has a powerful instruction set, a high-speed clock rate, and a wide range of peripherals. It also supports various communication protocols, such as Ethernet, USB, and serial ports. This chip model also supports a wide range of programming languages, such as C, C++, and HDL.
In terms of actual case studies, the EP2AGX125EF29C6NES chip model has been used in a variety of applications, including embedded systems, image processing, and network applications. In embedded systems, this chip model has been used to develop a variety of devices, such as smart home appliances, industrial control systems, and medical devices. In image processing, this chip model has been used to develop a variety of image processing algorithms, such as object recognition and image segmentation. In network applications, this chip model has been used to develop a variety of network applications, such as wireless sensor networks and Internet of Things applications.
When using the EP2AGX125EF29C6NES chip model, there are several key considerations to keep in mind. First, the chip model must be programmed with the correct HDL language. Second, the chip model must be programmed with the correct clock rate and peripherals. Third, the chip model must be programmed with the correct communication protocols. Finally, the chip model must be programmed with the correct programming language.
In conclusion, the EP2AGX125EF29C6NES chip model is an advanced device that can be used in a variety of applications, such as embedded systems, image processing, and network applications. It is programmed with HDL language and has a wide range of features, including a high-performance 32-bit RISC processor, a large memory capacity, and a variety of interfaces. When using this chip model, it is important to consider the correct programming language, clock rate, peripherals, and communication protocols. With the correct design, this chip model can be used in a variety of intelligent scenarios, such as smart home appliances, industrial control systems, and Internet of Things applications, as well as in the era of fully intelligent systems.
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