Zebra-X
Dylanfg123·Zebra-X
About the Zebra-X PCB
Zebra-X is an open source FPGA PCB design by Dylanfg123, published on GitHub. It is a 10-layer board measuring 90 × 60 mm, with 423 components from 58 distinct parts.
Its main chip is the XC7Z010-2CLG400I, from the FPGA family. Other key parts include the LS1205EVD33, SY8003ADFC, BD3539FVM, FT2232HL and 93LC65B-I/SN. By type, the board carries 199 capacitors, 158 resistors, 18 ICs, 18 diodes, 12 inductors and 7 connectors.
It belongs with the usb & debug tools designs in this gallery.
From the project
A Xilinx Zynq Demo Board based on Phil's Lab ZettBrett board
The ZeBra-X board is my take on the Phil's Lab ZettBrett board. The heart of this board is a Xilinx Zynq (XC7Z010-2CLG400) SOC demo board featuring a 1Gig ethernet interface, USB-UART/USB-JTAG FTDI, USB HS, 1GB DDR3 memory, 4GB eMMC memory, and 16MB QSPI Flash. The main purpose of this board is to learn more about advanced PCB design techniques and get more familiar with the Xilinx software suite.
Main components on the Zebra-X
Zebra-X bill of materials (BOM)
423 components, 58 distinct parts.
| Qty | Part | Footprint | Refs |
|---|---|---|---|
| 1 | LS1205EVD33 Littelfuse | DFN-10-1EP_3x3mm_P0.5mm_EP1.55x2.48mm | U100 |
| 4 | SY8003ADFC Silergy | DFN-8-1EP_2x2mm_P0.5mm_EP1.05x1.75mm | U101, U102, U103, U104 |
| 1 | BD3539FVM ROHM | MSOP-8_3x3mm_P0.65mm | U105 |
| 1 | XC7Z010-2CLG400I AMD Xilinx | CLG400_XIL | U200 |
| 1 | FT2232HL FTDI | LQFP-64_10x10mm_P0.5mm | U300 |
| 1 | 93LC65B-I/SN Microchip | SOIC-8_3.9x4.9mm_P1.27mm | U301 |
| 2 | 74LVC1G07 Texas Instruments | SOT-23-5 | U400, U401 |
| 1 | W25Q128JVEIQ Winbond | WSON-8-1EP_8x6mm_P1.27mm_EP3.4x4.3mm | U402 |
| 1 | S40FC004C1B2C00000 SkyHigh Memory | BGA153C50P14X14_900X750X80 | U403 |
| 2 | MT41K256M16TW-107 IT:P Micron Technology Inc. | FBGA96_TW_MRN | U700, U701 |
| 1 | RTL8211F-CG Realtek Semicon | QFN-40-1EP_5x5mm_P0.4mm_EP3.8x3.8mm | U800 |
| 1 | USB3320C-EZK Microchip Technology | QFN32_5X5MC_MCH | U900 |
| 1 | TPS2051CDBV Texas Instruments | SOT-23-5 | U901 |
| 4 | T2N7002AK,LM TOSHIBA | SOT23_TOS | Q100, Q300, Q400, Q500 |
| 1 | ECS-2520MV-120-BN ECS | Oscillator_SMD_ECS_2520MV-xxx-xx-4Pin_2.5x2.0mm | X300 |
| 1 | ECS-2520MV-333.3-BN-TR ECS | Oscillator_SMD_ECS_2520MV-xxx-xx-4Pin_2.5x2.0mm | X400 |
| 1 | ECS-2520MV-250-BN-TR ECS | Oscillator_SMD_ECS_2520MV-xxx-xx-4Pin_2.5x2.0mm | X800 |
| 1 | ECS-2520MV-130-BN-TR ECS | Oscillator_SMD_ECS_2520MV-xxx-xx-4Pin_2.5x2.0mm | X900 |
| 1 | CON-SOCJ-2155 Gravitech | GRAVITECH_CON-SOCJ-2155 | J100 |
| 1 | DigilentH2SHeader | PinHeader_1x06_P2.54mm_Vertical | J300 |
Show 38 more
| Qty | Part | Footprint | Refs |
|---|---|---|---|
| 1 | USB3100-30-A GCT | CONN_USB3100-30-A_GCT | J301 |
| 1 | HR911130A HanRun | HANRUN_HR911130A | J800 |
| 1 | GMSB0522132EU Amphenol | GMSB0522132EU | J900 |
| 2 | 10144518-082802LF Amphenol | CONN_10144518_AMP | J1000, J1001 |
| 2 | SKRPANE010 Alpsalpine | SW_Push_1P1T_NO_Vertical_Wuerth_434133025816 | SW300, SW400 |
| 1 | 219-3LPST CTS | SW_DIP_SPSTx03_Slide_6.7x9.18mm_W8.61mm_P2.54mm_LowProfile | SW301 |
| 3 | PMEG1030EJ,115 Nexperia | D_SOD-323F | D100, D305, D903 |
| 6 | LED_GREEN Yongyu | LED_0402_1005Metric | D101, D300, D308, D309, D400, D500 |
| 9 | CG0402MLU-3.3G Bourns | D_0402_1005Metric | D301, D302, D303, D304, D306, D307, D900, D901 +1 |
| 7 | 120R Murata | L_0402_1005Metric | FB1, FB200, FB300, FB301, FB302, FB800, FB900 |
| 4 | 2u2 TAIYO YUDEN | L_Taiyo-Yuden_NR-60xx | L100, L101, L102, L103 |
| 1 | 3u3 Murata Electronics | L_0603_1608Metric | L800 |
| 16 | 22u Samsung | C_1210_3225Metric | C100, C103, C104, C107, C108, C109, C112, C113 +8 |
| 48 | 100n YAGEO | C_0402_1005Metric | C101, C102, C105, C110, C115, C120, C300, C304 +40 |
| 4 | 22p Murata | C_0402_1005Metric | C106, C111, C116, C121 |
| 44 | 4u7 Samsung | C_0402_1005Metric | C125, C126, C128, C129, C201, C205, C210, C213 +36 |
| 1 | 1n Johanson Dielectrics | C_1206_3216Metric | C130 |
| 11 | 100u Samsung | C_1210_3225Metric | C200, C204, C209, C212, C221, C224, C230, C233 +3 |
| 33 | 470n Murata | C_0201_0603Metric | C202, C203, C206, C207, C208, C211, C214, C215 +25 |
| 42 | 47n Murata | C_0201_0603Metric | C600, C601, C602, C603, C612, C613, C700, C701 +34 |
| 15 | 100K YAGEO | R_0402_1005Metric | R100, R104, R107, R109, R112, R114, R117, R119 +7 |
| 25 | 12K RALEC | R_0402_1005Metric | R101, R103, R105, R108, R110, R113, R115, R118 +17 |
| 15 | 4K7 YAGEO | R_0402_1005Metric | R102, R300, R301, R302, R303, R304, R403, R625 +7 |
| 5 | 68K YAGEO | R_0402_1005Metric | R106, R421, R422, R423, R424 |
| 1 | 200K YAGEO | R_0402_1005Metric | R111 |
| 1 | 124K YAGEO | R_0402_1005Metric | R116 |
| 1 | 435K YAGEO | R_0402_1005Metric | R121 |
| 8 | 510R YAGEO | R_0402_1005Metric | R123, R309, R336, R337, R412, R503, R822, R823 |
| 13 | 1K YAGEO | R_0402_1005Metric | R127, R311, R313, R315, R318, R321, R500, R803 +5 |
| 31 | 22R YAGEO | R_0402_1005Metric | R305, R306, R307, R308, R329, R330, R331, R332 +23 |
| 7 | 20K YAGEO | R_0402_1005Metric | R310, R312, R314, R316, R319, R404, R405 |
| 3 | DNP_0R - | R_0402_1005Metric | R317, R320, R428 |
| 2 | 2K49 YAGEO | R_0402_1005Metric | R325, R821 |
| 3 | 100R YAGEO | R_0201_0603Metric | R600, R626, R627 |
| 24 | 49R9 YAGEO | R_0201_0603Metric | R601, R602, R603, R604, R605, R606, R607, R608 +16 |
| 2 | 240R YAGEO | R_0402_1005Metric | R700, R701 |
| 1 | DNP_4K7 YAGEO | R_0402_1005Metric | R802 |
| 1 | 8K06 YAGEO | R_0402_1005Metric | R902 |
Zebra-X design files
The KiCad project lives in the Dylanfg123/Zebra-X repository on GitHub; these links point at the commit this page was built from.
- LayoutZeBra-X.kicad_pcb
- SchematicZeBra-X.kicad_sch
Zebra-X: common questions
What microcontroller does the Zebra-X use?
The Zebra-X is built around the XC7Z010-2CLG400I, from the FPGA family.
How big is the Zebra-X PCB?
The Zebra-X measures 90 × 60 mm, has 10 copper layers and is 1.5488 mm thick.
How many components are on the Zebra-X?
423 components, from 58 distinct parts. The full bill of materials is listed on this page.
Where can I download the Zebra-X design files?
From the Dylanfg123/Zebra-X repository on GitHub, which has the KiCad layout and the schematic; the links under Design files point to each one.
Can I use the Zebra-X design in my own project?
The repository has no license, so all rights stay with Dylanfg123. Use it as a reference, and ask the author before reusing the design.
Can I test firmware for the Zebra-X without the hardware?
Yes. HardLabs builds a simulation of the board from its netlist and BOM, so you can run and debug FPGA firmware against it before you order a PCB.
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