Summary of Contents for iWave iW-RainboW-G28M Zynq-7000 SoC SODIMM SOM
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Zynq-7000 SoC SODIMM SOM Hardware User Guide iW-RainboW-G28M Zynq-7000 SoC SODIMM SOM Hardware User Guide REL1.3 iWave Systems Technologies Pvt. Ltd. Page 1 of 52 Arrow.com. Downloaded from...
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If you are not the intended recipient (or authorized to receive for the recipient), you are hereby notified that any disclosure, copying distribution or use of any of the information contained within this document is STRICTLY PROHIBITED. Thank you. “iWave Systems Tech. Pvt. Ltd.” REL1.3 iWave Systems Technologies Pvt.
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No warranty of accuracy is given concerning the contents of the information contained in this publication. To the extent permitted by law no liability (including liability to any person by reason of negligence) will be accepted by iWave Systems, its subsidiaries or employees for any direct or indirect loss or damage caused by omissions from or inaccuracies in this document.
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3.3.2 Guidelines to insert the SODIMM SOM into Carrier board ............... 48 3.3.1 SODIMM SOM removing procedure from Carrier board ................48 ORDERING INFORMATION ..........................49 APPENDIX ................................. 51 Zynq-7000 SoC SODIMM SOM Development Platform ................51 REL1.3 iWave Systems Technologies Pvt. Ltd. Page 5 of 52 Arrow.com. Arrow.com. Arrow.com. Arrow.com.
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Table 6: Power Input Requirement ..........................43 Table 7: Power Consumption¹ ........................... 44 Table 8: Environmental Specification ........................45 Table 9: Orderable Product Part Numbers ......................... 49 REL1.3 iWave Systems Technologies Pvt. Ltd. Page 6 of 52 Arrow.com. Arrow.com. Arrow.com.
This document is the Hardware User Guide for the Zynq-7000 SODIMM System on Module based on the Xilinx’s Zynq- 7000 SoC. This board is fully supported by iWave Systems Technologies Pvt. Ltd. This Guide provides detailed information on the overall design and usage of the Zynq-7000 SODIMM System on Module from a Hardware Systems perspective.
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Real Time Clock Secure Digital System On Chip System On Module UART Universal Asynchronous Receiver/Transmitter Universal Serial Bus USB OTG USB On The Go REL1.3 iWave Systems Technologies Pvt. Ltd. Page 8 of 52 Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com.
Note: Signal Type does not include internal pull-ups or pull-downs implemented by the chip vendors and only includes the pull-ups or pull-downs implemented On-SOM. References • Zynq-7000 SoC Datasheet & Technical Reference Manual • 200 Pin DDR S.O.DIMM physical Specification REL1.3 iWave Systems Technologies Pvt. Ltd. Page 9 of 52 Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com.
• In PL, Bank13 is available only in Z-7014S & Z-7020 SoC. • If BT support is required, then two SE IOs from PL BANK35 can’t be connected to SODIMM edge connector. Figure 1:Zynq-7000 SoC SODIMM SOM Block Diagram REL1.3 iWave Systems Technologies Pvt. Ltd. Page 10 of 52 Arrow.com. Arrow.com.
USB 2.0 OTG x 1 Port (through On-SOM USB2.0 transceiver) • Debug UART • I2C x 1 Port • SD (4bit) x 1 Port (Optional) • JTAG Interface REL1.3 iWave Systems Technologies Pvt. Ltd. Page 11 of 52 Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com.
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In Zynq-7000 SoC SODIMM SOM, IO voltage of PL BANK13 is fixed to 3.3V by default and so this bank IOs can be used as only 3.3V Single Ended IOs. If 1.8V LVDS IOs support is required for BANK13, contact iWave.
Figure 2: Zynq-7000 CPU Simplified Block Diagram Note: Please refer the latest Zynq 7000 Datasheet & Reference Manual for more details which may be revised from time to time. REL1.3 iWave Systems Technologies Pvt. Ltd. Page 13 of 52 Arrow.com. Arrow.com.
SoC to route most of the IO peripheral interfaces to PL I/O pins called as EMIO. Zynq-7000 SoC PS Peripheral Pin mapping options between MIO & EMIO is shown below. Figure 4: Zynq-7000 SoC IOs REL1.3 iWave Systems Technologies Pvt. Ltd. Page 14 of 52 Arrow.com. Arrow.com.
The DA9062 PMIC’s Linear Regulators LDO1 and LDO4 are connected to PL BANK 34 and BANK 35 respectively. These LDO Outputs from PMIC can be configured from 1.2V to 3.3V through I2C0 in Uboot. REL1.3 iWave Systems Technologies Pvt. Ltd. Page 15 of 52 Arrow.com.
Note: In Zynq-7000 SoC SODIMM SOM, SD1 interface signals are connected to both eMMC Flash and MicroSD connector. So either one feature only can be supported at a time in the SOM and by default, eMMC is supported. REL1.3 iWave Systems Technologies Pvt. Ltd. Page 16 of 52 Arrow.com.
Note: In Zynq-7000 SoC PS, QSPI+SD/eMMC and NAND Signals are multiplexed in same pins and so either QSPI + SD/eMMC or NAND Flash can be supported. By default, QSPI + eMMC is supported in Zynq-7000 SoC SODIMM SOM. REL1.3 iWave Systems Technologies Pvt. Ltd. Page 17 of 52 Arrow.com.
Note: In Zynq-7000 SoC SODIMM SOM, IO voltage of PL BANK35 is connected from PMIC LDO4 and can be set to 1.8V or 3.3V to support 3.3V Single Ended IOs respectively. If On-SOM Bluetooth support is required, then BANK35 IO voltage has to be set to 3.3V only. REL1.3 iWave Systems Technologies Pvt. Ltd. Page 18 of 52 Arrow.com. Arrow.com.
Figure 5: SODIMM PCB Edge Connector Number of Pins - 200 Connector Part - Not Applicable (On Board PCB Edge connector) Mating Connector - 1473005-1 from TE Connectivity REL1.3 iWave Systems Technologies Pvt. Ltd. Page 19 of 52 Arrow.com. Arrow.com. Arrow.com.
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Wi-Fi/Bluetooth module or to SODIMM Edge connector. In Non-Wi-Fi/Bluetooth supported Zynq-7000 SoC SODIMM SOM, these pins can be used as SDIO & PL IOs at SODIMM Edge connector. REL1.3 iWave Systems Technologies Pvt. Ltd. Page 22 of 52 Arrow.com. Arrow.com.
RJ45 Magjack with two Green LED JK0654219NL Pulse 0°C to 70°C RJ45 Magjack with two Green LED 0826-1G1T-23-F Bel Fuse 0°C to 70°C REL1.3 iWave Systems Technologies Pvt. Ltd. Page 23 of 52 Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com.
USB VBUS for VBUS monitoring. Note: Recommending to connect always available 5V to this pin from carrier board to maintain compatibility with iWave’s other SODIMM SOMs. 2.8.3 Debug UART Interface The Zynq-7000 SoC SODIMM SOM support one UART interfaces on SODIMM Edge connector for Zynq-7000 SoC PS Debug.
Important Note: If 50MHz external reference clock has to be used in PL, then IO voltage of PL BANK34 has to be set to 3.3V only through PMIC LDO1. REL1.3 iWave Systems Technologies Pvt. Ltd. Page 26 of 52 Arrow.com.
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LVDS Channel23 Positive if Bank34 IO voltage is set to 1.8V. PL_IO_L13N_T2_MRC L13N_34/ IO, 3.3V Bank34 User I/O Single ended pin. C_34 LVCMOS REL1.3 iWave Systems Technologies Pvt. Ltd. Page 27 of 52 Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com.
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Bank34 User I/O Single ended pin. LVCMOS Same pin can be configured as Bank34 LVDS Channel6 Negative if Bank34 IO voltage is set to 1.8V. REL1.3 iWave Systems Technologies Pvt. Ltd. Page 28 of 52 Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com.
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Bank34 User I/O Single ended pin. LVCMOS Same pin can be configured as Bank34 LVDS Channel22 Positive if Bank34 IO voltage is set to 1.8V REL1.3 iWave Systems Technologies Pvt. Ltd. Page 29 of 52 Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com.
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Bank34 User I/O Single ended pin. LVCMOS Same pin can be configured as Bank34 LVDS Channel14 Negative if Bank34 IO voltage is set to 1.8V. REL1.3 iWave Systems Technologies Pvt. Ltd. Page 30 of 52 Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com.
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Same pin can be configured as Bank34 LVDS Channel15 Positive if Bank34 IO voltage is set to 1.8V. PL_IO_L3N_T0_DQS_3 L3N_34/ IO, 3.3V Bank34 User I/O Single ended pin. LVCMOS REL1.3 iWave Systems Technologies Pvt. Ltd. Page 31 of 52 Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com.
ATWILC3000 Bluetooth module or to SODIMM Edge connector. By default, these are connected to Bluetooth module. Important Note: In Zynq-7000 SoC SODIMM SOM, if On-SOM Bluetooth support is required, then BANK35 IO voltage has to be set to 3.3V only REL1.3 iWave Systems Technologies Pvt. Ltd. Page 32 of 52 Arrow.com. Arrow.com.
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PL_IO_L7N_T1_AD2N L7N_35/ IO, 3.3V Bank35 User I/O Single ended pin. LVCMOS Note: This pin is optionally connected to WIFI Bluetooth Request to Send. REL1.3 iWave Systems Technologies Pvt. Ltd. Page 33 of 52 Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com.
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IO, 3.3V Bank35 User I/O Single ended pin. LVCMOS PL_IO_L24N_T3_ L24N_35/ IO, 3.3V Bank35 User I/O Single ended pin. AD15N_35 LVCMOS REL1.3 iWave Systems Technologies Pvt. Ltd. Page 34 of 52 Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com.
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L1N_35/ IO, 3.3V Bank35 User I/O Single ended pin. LVCMOS PL_IO_L2N_T0_AD8N L2N_35/ IO, 3.3V Bank35 User I/O Single ended pin. LVCMOS REL1.3 iWave Systems Technologies Pvt. Ltd. Page 35 of 52 Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com.
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Note: In Zynq-7000 SoC SODIMM SOM, these signals from Zynq-7000 SoC Bank35 can be connected to either ATWILC3000 Wi-Fi/Bluetooth module or to SODIMM Edge connector. In the default Wi-Fi/Bluetooth supported Zynq- 7000 SoC SODIMM SOM, these signals are connected to ATWILC3000 Wi-Fi module. REL1.3 iWave Systems Technologies Pvt. Ltd. Page 36 of 52 Arrow.com. Arrow.com.
The IO voltage of this PL Bank13 is fixed to 3.3V to support 3.3V SE IOs. Optionally, 1.8V IO voltage can be supported to PL Bank13 in Zynq-7000 SoC SODIMM SOM to support LVDS IOs. Please contact iWave to support 1.8V IO voltage for PL Bank13.
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Bank13 User I/O Single ended pin. LVCMOS Same pin can be configured as Bank13 LVDS Channel17 Positive if Bank13 IO voltage is set to 1.8V. REL1.3 iWave Systems Technologies Pvt. Ltd. Page 38 of 52 Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com.
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Bank13 User I/O Single ended pin. LVCMOS Same pin can be configured as Bank13 LVDS Channel16 Positive if Bank13 IO voltage is set to 1.8V. REL1.3 iWave Systems Technologies Pvt. Ltd. Page 39 of 52 Arrow.com. Arrow.com. Arrow.com. Arrow.com. Arrow.com.
Important Note: This pin is directly /B10 connected to PMIC Power Enable pin. Use this pin only for connecting the reset push button in the carrier board. REL1.3 iWave Systems Technologies Pvt. Ltd. Page 40 of 52 Arrow.com. Arrow.com. Arrow.com. Arrow.com.
SOM, SOM will take around 30ms for all the powers to get stable and come out of reset, Make sure that from the carrier board IOs shall not driving before all the SOM powers are stable. REL1.3 iWave Systems Technologies Pvt. Ltd. Page 43 of 52 Arrow.com. Arrow.com. Arrow.com.
RTC coin cell power (when VIN_3V3 is off) VRTC_3V0 1.4uA ¹ Power consumption measurements have been done in Zynq-7020 SoC based SODIMM Development platform (iW- G28D-SM20-3D512M-E008G-LCA) with iWave’s Linux4.14.0 BSP (iW-PRFOZ-SC-01-R2.0-REL1.0-Linux4.14.0). REL1.3 iWave Systems Technologies Pvt. Ltd. Page 44 of 52 Arrow.com.
² To meet this humidity specification, conformal coating needs to be done on the board. By default, iWave boards doesn’t come with conformal coating. Please contact iWave to support conformal coating.
3.2.4 Electrostatic Discharge iWave’s Zynq-7000 SoC SODIMM SOM is sensitive to electro static discharge and so high voltages caused by static electricity could damage some of the devices on board. It is packed with necessary protection while shipping. Do not open or use the SOM except at an electrostatic free workstation.
(1.75mm) followed by LDO Regulator (1.23mm). Please refer the below figure which gives height details of the Zynq- 7000 SoC SOM. Figure 8: Mechanical dimension of Zynq-7000 SoC SODIMM SOM- Side View REL1.3 iWave Systems Technologies Pvt. Ltd. Page 47 of 52 Arrow.com. Arrow.com.
Important Note: Before touching any electronic components, make sure you are properly grounded by using some static control device to prevent static electricity stored on your body or clothing from damaging the system. REL1.3 iWave Systems Technologies Pvt. Ltd. Page 48 of 52 Arrow.com.
The below table provides the standard orderable part numbers for different Zynq-7000 SoC SODIMM SOM variations. Please contact iWave for orderable part number of higher RAM memory size or Flash memory size SOM configurations. Also if the desired part number is not listed in below table or if any custom configuration part number is required, please contact iWave.
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Heat Sink for Zynq-7000 SoC SODIMM SOM iW-HSKALU-CLASLR-SS03 Important Note: Some of the above-mentioned Part Number is subject to MOQ purchase. Please contact iWave for further details. Note: For SOM identification purpose, Product Part Number and SOM Unique Serial Number are pasted as Label with Barcode readable format on SOM.
Systems supports iW-RainboW-G28D – Zynq-7000 SoC SODIMM SOM Development Platform which is targeted for quick validation of Zynq-7000 SoC based SODIMM SOM. iWave's Zynq-7000 SoC SODIMM Development Board incorporates Zynq-7000 SoC SODIMM SOM and SODIMM Carrier board with complete BSP support. For more details on Zynq-7000 SoC SODIMM SOM Development Platform, visit the below web link.
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