Atlas-I-Z7e
Low Power Zynq® System-on-a-Module (SoM)
Zynq 7020

Processor
- Dual ARM® Cortex™ – A9 Core up to 800 MHz
- NEON™ SIMD and SP/DP FPU Extensions
- 32KB I/D L1 Cache, 512KB L2 Cache, 256KB On-chip
Zynq FPGA
- AMD Zynq®7020
- 85K Logic Cells (1.3M Approximate ASIC Gates)
- 220 Programmable DSP Slices
- 560KB of Internal Block RAM
- iVeia Velocity-EHF Processor/FPGA Framework
Memory/Flash
- 256MB LPDDR2 connected to the processor (option for 512MB)
- 256MB LPDDR2 connected to the FPGA (option for 512MB)
- On-board microSD Flash memory card slot (up to 32GB)
Dedicated I/O
- USB 2.0 On-The-Go (OTG)
- USB 2.0 host (two total USB interfaces)
- Secure-Digital memory card (SD and SDIO)
- I2C and UART
- Analog Audio Line In, Stereo Headphone/Line Out
- 3-by-4 keypad matrix
- JTAG
- High-performance Samtec QTH connector
Flexible I/O
- 54 user-configurable flex-I/O in two independent banks
- Gigabit Ethernet (RGMII)
- Additional SD/SDIO
- CAN, I2C, SPI, UART, and general-purpose I/O
- Digital video: DVI/HDMI, Camera Link, GigE Vision, BT656
- High-speed ADC and DAC interfaces
- I2S digital audio
- High-performance Samtec QTH connector
Features
- Size – 1.25″W x 3.37″L x 0.25″H (3.18cm x 8.60cm x 0.64cm)
- Programmable Logic – AMD Zynq®-7020
- Processor – Dual Core Cortex™-A9 up to 800 MHz
- Low-Power LPDDR2 Memory
- External memory dedicated to programmable logic, a must for serious processing
- Operating System – Linux 3.x OpenEmbedded Distribution Supported by iVeia
- Scalable Atlas Form Factor: Compatible with any Atlas-I, Atlas-II, or Atlas-III base board
The Atlas-I-Z7e™ is a low power, small form factor system-on-a-module (SoM) featuring the AMD Zynq™-7000 Extensible Processing Platform. The Zynq-7000 architecture consists of a dual core 800 MHz ARM® Cortex™-A9 and 28nm programmable logic inside a single chip. The ARM cores and logic are connected by a series of high-speed AXI interconnects and cross-point switches. Excellent for high-performance low-power applications, the Atlas-I-Z7e features low-power sleep modes for applications with lower duty cycles.