EP1SGX40FF1020C6 ApplicationField
-Industrial Control
-Wireless Technology
-Cloud Computing
-Artificial Intelligence
-Internet of Things
-Medical Equipment
-Consumer Electronics
-5G Technology
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EP1SGX40FF1020C6 FAQ Chips
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Q: Where can I purchase Altera EP1SGX40 Development Boards, Evaluation Boards, or Stratix GX FPGA Starter Kit? also provide technical information?
A: RAYPCB does not provide development board purchase services for the time being, but customers often consult about ZedBoard, Basys 3 board, TinyFPGA BX, Nexys4-DDR, Terasic DE10-Nano, Digilent Arty S7, etc. If you need relevant technical information, you can submit feedback information, our technicians will contact you soon.
Q: How can I obtain software development tools related to the Altera FPGA platform?
A: Quartus Prime Modelsim is the corresponding programming software for FPGA produced by Altera/Intel. The specific choice depends on personal habits and functional requirements to specifically select a more suitable match. You can search and download through the FPGA resource channel.
Q: How to obtain EP1SGX40FF1020C6 technical support documents?
A: Enter the “EP1SGX40FF1020C6” keyword in the search box of the website, or find these through the Download Channel or FPGA Forum .
ICs EP1SGX40FF1020C6 Features
■ Integrates serializer/deserializer (SERDES), clock data recovery (CDR), word aligner, channel aligner, rate matcher, 8B/10B encoder/decoder, byte serializer/deserializer, and phase compensation first-in first-out (FIFO) modules
■ Supports flexible reference clock generation capabilities, including a dedicated transmitter phase-locked loop (PLL) and four receiver PLLs per gigabit transceiver block
■ Supports programmable pre-emphasis, equalization, and programmable VOD settings in I/O buffers, and dynamic reprogrammability for each of these features
■ Implements XAUI physical media attachment (PMA) and physical coding sublayer (PCS) functionality for 10GBASE-X systems
■ Provides individual transmitter and receiver power-down capability for reduced power consumption during non-operation
■ Includes three independent loopback paths for system verification
■ Includes built-in self test (BIST) capability, including embedded Pseudo Random Binary Sequence (PRBS) pattern generation and verification
Each self-contained Stratix GX gigabit transceiver
block supports a variety of embedded functions and does the following:
■ Supports frequencies from 500 megabits per second (Mbps) to 3.1875 Gbps
■ Provides built-in Gigabit Ethernet (GigE) physical coding sublayer functionality
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Xilinx EP1SGX40FF1020C6 Overview
Stratix EP1SGX40FF1020C6 devices combine highly advanced 3.1875-gigabit-per-second (Gbps) four-channel gigabit transceiver blocks with one of the industry’s most advanced FPGA architectures. Stratix GX devices are manufactured on a 1.5-V, 0.13-µm, all-layer copper CMOS process technology with 1.5- V PCML I/O standard support.Historically, designers have used high-speed transceivers in strictly structured, line-side applications. Now, with the new gigabit transceiver blocks embedded in FPGAs, you can use transceivers in a host of new systems that require flexibility, increased time-to-market, high performance, and top-of-the-line features.Stratix GX EP1SGX40FF1020C6 devices are organized into four-channel blocks with four 3.1875 Gbps full-duplex channels per block and up to 20 channels (in five blocks) per device.
EP1SGX40FF1020C6 Tags integrated circuit
1. Stratix GX evaluation kit
2. EP1SGX40 development board
3. Altera EP1SGX40
4. Altera Stratix GX development board
5. EP1SGX40FF1020C6 Datasheet PDF
6. EP1SGX40 reference design
7. EP1SGX40 evaluation board
8. Stratix GX EP1SGX40
9. Altera Stratix GX development board
Xilinx EP1SGX40FF1020C6 TechnicalAttributes
-Series Stratix GX
-Packaging Tray
-Maximum Operating Temperature + 70 C
-Distributed RAM 3.4 Mbit
-Mounting Style SMD/SMT
-Minimum Operating Temperature 0 C
-Operating Supply Voltage 1.5 V to 3.3 V
-Number of I/Os 624
-Number of Logic Blocks 4125
-Package / Case FBGA-1020
-Maximum Operating Frequency 684 MHz