Texas Instruments AFE5816 User Manual
Texas Instruments AFE5816 User Manual

Texas Instruments AFE5816 User Manual

16-channel analog front end evaluation module
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AFE5816 16-Channel Analog Front End Evaluation Module
This user's guide gives a general overview of the AFE5816 evaluation module (EVM) and provides a
general description of the features and functions to be considered while using this module. This manual is
applicable to the AFE5816 analog front-end, and to the Rev. C version of the EVM hardware. The
AFE5816 EVM provides a platform for evaluating the AFE under various signal, clock, reference, and ADC
output formats. In addition, the EVM supports the testing of the LVDS interface. Note that if using the
LVDS interface, the TSW1400EVM capture card is required.
This user's guide refers to software HMC-DAQ GUI v.2.8 or higher, and HSDCPro Software v.4.1 or
higher and requires Microsoft
For any further questions regarding the EVM, GUI or device, please contact: AFE5816-support@list.ti.com
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SLOU429A - December 2015 - Revised February 2016
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AFE5816 16-Channel Analog Front End Evaluation Module (EVM Rev. C)
Copyright © 2015-2016, Texas Instruments Incorporated
SLOU429A - December 2015 - Revised February 2016
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User's Guide
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Summary of Contents for Texas Instruments AFE5816

  • Page 1: Table Of Contents

    This manual is applicable to the AFE5816 analog front-end, and to the Rev. C version of the EVM hardware. The AFE5816 EVM provides a platform for evaluating the AFE under various signal, clock, reference, and ADC output formats.
  • Page 2 AFE5816 Rev C EVM Schematic ..................AFE5816 Rev C EVM Schematic ..................AFE5816 Rev C EVM Schematic AFE5816 16-Channel Analog Front End Evaluation Module (EVM Rev. C) SLOU429A – December 2015 – Revised February 2016 Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 3 Default Header Configuration Table Rev.C ....................EVM Rev.C Testpoints ..................AFE5816 EVM Bill of Materials SLOU429A – December 2015 – Revised February 2016 AFE5816 16-Channel Analog Front End Evaluation Module (EVM Rev. C) Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 4: Evm Hardware Overview

    Figure 1. For more hardware details and the default jumper map, see Appendix AFE5816 16-Channel Analog Front End Evaluation Module (EVM Rev. C) SLOU429A – December 2015 – Revised February 2016 Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 5: Gui Software Installation

    Figure 2. Provided Power Cable for J1 Connector GUI Software Installation The AFE5816 EVM and the TSW capture card EVM have individual software and both require software installations. Ensure that no USB connections are made to the EVMs until after the installations are complete.
  • Page 6: Quick Views Of Evaluation Setups For Lvds Interface

    Equipment Setup Overview As shown in Figure 3, mating the AFE5816 EVM with a TSW EVM allows for testing using the data interface. Figure 3. LVDS Evaluation Setup Overview TSW Capture Card EVM: The TSW1400 EVM is required for capturing data from the AFE5816EVM and its analysis using the graphical user interface (GUI), called High Speed Data Converter Pro (HSDCPro).
  • Page 7 For more information on clock configuration, see Section B.1.3. SLOU429A – December 2015 – Revised February 2016 AFE5816 16-Channel Analog Front End Evaluation Module (EVM Rev. C) Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 8: Testing The Evm Data Capture With Lvds

    A, connect the USB cable from PC to J5 (USB) located on the top side of the AFE5816 EVM. Connect the USB cable from PC to J5 (USB_IF) of the TSW1400 EVM. USB 2.0 or 3.0 ports are both acceptable for both EVMs. Note: TI recommends that the PC USB port be able to support USB2.0.
  • Page 9 SLOU429A – December 2015 – Revised February 2016 AFE5816 16-Channel Analog Front End Evaluation Module (EVM Rev. C) Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 10: Capturing An Analog Input Signal With The Lvds Interface

    Capturing an Analog Input Signal With the LVDS Interface This section describes the software setup for capturing an analog input using the AFE5816 EVM. If there is any issue with a data capture, refer to the troubleshooting section. Data capture is confirmed by using only the Quick Setup page of the HMC-DAQ GUI. Assuming the...
  • Page 11: Update Firmware

    TSW1400, D5 (USER_LED3) may be on, and D6 is off. Figure 10. TSW LEDs Turn On After FW Download 9. The AFE5816 EVM GUI (HMC-DAQ) opens automatically at this time. Wait until this is finished to continue. If any errors arise at this time, consult a TI engineer.
  • Page 12: Launching Device Gui Exe

    HMC-DAQ GUI Actions: 1. Verify the clock configuration by matching J36, J34, J31, and J37 to Figure AFE5816 16-Channel Analog Front End Evaluation Module (EVM Rev. C) SLOU429A – December 2015 – Revised February 2016 Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 13: Clock Configuration On Afe Evm For Lvds

    3. Press the Initialize Device button on the HMC-DAQ GUI. The progress bar indicates the device is configured over SPI. SLOU429A – December 2015 – Revised February 2016 AFE5816 16-Channel Analog Front End Evaluation Module (EVM Rev. C) Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 14: Initialize Device

    There is most likely an ADC clock issue. Figure 18. LED D5 Turns On When ADC is Ready 1. Choose VCA GAIN as Mid Gain. AFE5816 16-Channel Analog Front End Evaluation Module (EVM Rev. C) SLOU429A – December 2015 – Revised February 2016 Submit Documentation Feedback...
  • Page 15: Choose Vca Gain

    Hanning works, do not use Rectangular. Figure 20. Capture Button Figure 21. Analog Input Capture SLOU429A – December 2015 – Revised February 2016 AFE5816 16-Channel Analog Front End Evaluation Module (EVM Rev. C) Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 16: Testing The Evm In Cw Mode

    10 kHz and signals should be 90 degrees out of phase. 7. Trigger the oscilloscope on either channel. AFE5816 16-Channel Analog Front End Evaluation Module (EVM Rev. C) SLOU429A – December 2015 – Revised February 2016 Submit Documentation Feedback...
  • Page 17: Cw Output

    Testing the EVM in CW Mode www.ti.com Figure 24. CW Output SLOU429A – December 2015 – Revised February 2016 AFE5816 16-Channel Analog Front End Evaluation Module (EVM Rev. C) Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 18: Appendix A Software Installation

    GUI used to control a suite of FPGA capture solutions including the TSW1400. Section A.2 provides details for installing Healthtech Multi-Channel Data Acquisition (HMC-DAQ), the software GUI which controls a suite of AFE and ADC solutions, including the AFE5816. High Speed Data Converter Pro (HSDCPro) GUI Installation Go to the HSDCPro website.
  • Page 19: Hsdcpro Install (Ti License Agreement)

    Next button as shown in Figure Figure 26. HSDCPro Install (TI License Agreement) 4. Read the License Agreement from Texas Instruments and select I accept the agreement, then press the Next button as shown in Figure Figure 27. HSDCPro Install (TI License Agreement) SLOU429A –...
  • Page 20: Hsdcpro Install (Install Directory)

    Figure 28. HSDCPro Install (Install Directory) 6. Click Next to begin the installation, as in Figure Figure 29. HSDCPro Install (Installation Ready) Software Installation SLOU429A – December 2015 – Revised February 2016 Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 21: Hsdcpro Install (Cypress Driver Install)

    Figure 30. HSDCPro Install (Cypress Driver Install) 8. Click Finish to continue installation, as shown in Figure Figure 31. HSDCPro Install (Continue Cypress Driver Installation) SLOU429A – December 2015 – Revised February 2016 Software Installation Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 22: Hsdcpro Install (Continue Driver Installation)

    10. Finish HSDCPro installation by choosing the installation options and pressing Finish, as in Figure Figure 33. HSDCPro Install (Finish Installation) Software Installation SLOU429A – December 2015 – Revised February 2016 Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 23: Hmc-Daq Gui Install (Begin Installation)

    Run as Administrator. Press the Next button once the graphic in Figure 34 appears. Figure 34. HMC-DAQ GUI Install (Begin Installation) 2. Read the Texas Instruments License Agreement and select I accept the agreement followed by the Next button, as in Figure Figure 35. HMC-DAQ GUI Install (TI License Agreement) SLOU429A –...
  • Page 24: Hmc-Daq Gui Install(Ni License Agreement)

    4. Allow the software to be installed in the default location by pressing the Next button, as in Figure Figure 37. HMC-DAQ GUI Install (Install Directory) Software Installation SLOU429A – December 2015 – Revised February 2016 Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 25: Hmc-Daq Gui Install (Installation Ready)

    6. The window shown in Figure 39 appears showing that the installation is in progress. Figure 39. HMC-DAQ GUI Install (Installation Progress) SLOU429A – December 2015 – Revised February 2016 Software Installation Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 26: Hmc-Daq Gui Install (Labview Run-Time Engine Installation)

    Figure 40. HMC-DAQ GUI Install (LabView Run-time Engine Installation) 8. Press the Next button, as in Figure Figure 41. HMC-DAQ GUI Install (LabView Run-time Engine Installation) Software Installation SLOU429A – December 2015 – Revised February 2016 Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 27: Hmc-Daq Gui Install (Labview Run-Time Engine Installation)

    Figure 42. HMC-DAQ GUI Install (LabView Run-time Engine Installation) 10. Press the Next button, as in Figure Figure 43. HMC-DAQ GUI Install (LabView Run-time Engine Installation) SLOU429A – December 2015 – Revised February 2016 Software Installation Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 28: Hmc-Daq Gui Install (Labview Run-Time Engine Installation)

    12. The run-time engine installs unless it has already been detected as should be the case if the HSDCPro GUI was already installed. In this case, the following message appears. Press the Cancel button, as in Figure Software Installation SLOU429A – December 2015 – Revised February 2016 Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 29: Hmc-Daq Gui Install (Labview Run-Time Engine Installation)

    13. Press the Yes button to confirm, as in Figure Figure 46. HMC-DAQ GUI Install: (LabView RTE Cancel, if Installed Already) 14. Press the Finish button, as in Figure SLOU429A – December 2015 – Revised February 2016 Software Installation Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 30: Hmc-Daq Gui Install (Finished)

    HMC-DAQ is launched automatically from HSDCPro, once a device has been selected. Therefore, there is no need to launch HMC-DAQ manually and there is no need for a desktop shortcut. Software Installation SLOU429A – December 2015 – Revised February 2016 Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 31: Appendix B Hardware Configuration

    EVM that are useful for debug and general-use purposes. B.1.1 EVM Header Configuration The AFE5816 EVM is flexible in its configurability through the use of 2- and 3-pin headers. The default configuration of the EVM is set to facilitate initial testing, requiring minimal bench equipment. Figure 48 shows the default positions of all headers.
  • Page 32: Default Header Configuration Table Rev.c

    CW Output CW Quadrature-phase Output M/P – – B.1.2 EVM Testpoints Table 2 lists all test points on the AFE5816 EVM and their purposes. Table 2. EVM Rev.C Testpoints Testpoint Circuit Label Testpoint Description TP2,11–14 Digital Ground Reference for EVM...
  • Page 33: Evm Adc Clock Source Configuration

    LVDS mode (S-E and Differential), and two options of clock input for JESD204B mode (Differential). Figure 49. EVM ADC Clock Source Configuration SLOU429A – December 2015 – Revised February 2016 Hardware Configuration Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 34: Evm Adc Clock Source Configuration Examples

    4. Also, connect an external clock generator to J32. Set the clock source to 400 MHz, and +15-dBm amplitude. Consult a TI engineer to use this mode. Hardware Configuration SLOU429A – December 2015 – Revised February 2016 Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 35: Appendix C Triggering Options

    See the TSW or HSDCPro manual for more information. Figure 51. HSDCPro Trigger Configuration for SW Figure 52. HSDCPro Trigger Configuration for SW trigger SLOU429A – December 2015 – Revised February 2016 Triggering Options Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 36: Hsdcpro Trigger Configuration For Hw

    See the TSW or HSDCPro manual for more information. Figure 53. HSDCPro Trigger Configuration for HW Figure 54. HSDCPro Trigger Configuration for HW External Trigger Triggering Options SLOU429A – December 2015 – Revised February 2016 Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 37: Appendix D Common Hardware Modifications

    The AFE EVM allows for external access to the SPI bus for the AFE only, not the LMK device. This is done by connecting SPI signals at J4 and removing R22 near U9 on the bottom side of the board. SLOU429A – December 2015 – Revised February 2016 Common Hardware Modifications Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 38: Appendix E Hardware Reference

    SLOU429A – December 2015 – Revised February 2016 Hardware Reference AFE5816 EVM Hardware Overview The following images give an overview illustration of the EVM hardware. Figure 55. AFE5816 EVM Circuits Map Hardware Reference SLOU429A – December 2015 – Revised February 2016 Submit Documentation Feedback...
  • Page 39: Afe5816 Evm Block Diagram

    AFE5816 EVM Hardware Overview www.ti.com Figure 56. AFE5816 EVM Block Diagram SLOU429A – December 2015 – Revised February 2016 Hardware Reference Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 40: Afe5816 Rev C Evm Schematic

    3.01k AGND Device Vout AFE58xx16 1.9V 1.66k 3.01k 280pF AFE58xx18 3.3V 5.1k 3.01k 158pF Figure 57. AFE5816 Rev C EVM Schematic Hardware Reference SLOU429A – December 2015 – Revised February 2016 Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 41: Afe5816 Rev C Evm Schematic

    USB_GND +3.3_ISO +1.8VD Super Red VCCA VCCB C260 C261 SDOUT_PRE 0.1uF 0.1uF SDOUT SN74AVCH1T45DBVR Figure 58. AFE5816 Rev C EVM Schematic SLOU429A – December 2015 – Revised February 2016 Hardware Reference Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 42: Afe5816 Rev C Evm Schematic

    SMA_INP12 SMA_INP5 SMA_INP13 SMA_INP6 SMA_INP14 SMA_INP7 SMA_INP15 SMA_INP8 SMA_INP16 SMA_INP16 AGND AGND AGND AGND Figure 59. AFE5816 Rev C EVM Schematic Hardware Reference SLOU429A – December 2015 – Revised February 2016 Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 43: Afe5816 Rev C Evm Schematic

    R101 C180 CW_CLKP1X_LMK AGND C181 0.1uF R102 0.1uF CW1X_CLEAN_P AGND C182 CLKP_1X 0.1uF AGND Figure 60. AFE5816 Rev C EVM Schematic SLOU429A – December 2015 – Revised February 2016 Hardware Reference Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 44: Afe5816 Rev C Evm Schematic

    C164 C165 C166 10pF 2200pF 100pF 0.1uF Vcont TP49 C167 OSCINn 0.01uF 100 MHz Figure 61. AFE5816 Rev C EVM Schematic Hardware Reference SLOU429A – December 2015 – Revised February 2016 Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 45: Afe5816 Rev C Evm Schematic

    LNA HPF ATGC/DTGC BYP_G5 BAND_GAP BIAS_2P5 BYP_D5 LNA_INCM BYP_F5 SRC_BIAS BYP_D14 No Connects OTHER Figure 62. AFE5816 Rev C EVM Schematic SLOU429A – December 2015 – Revised February 2016 Hardware Reference Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 46: Afe5816 Rev C Evm Schematic

    TSW_GPIO_1 DOUTP15 DOUTM7 TSW_GPIO_2 DOUTP7 TSW_GPIO_3 DOUTM16 TSW_GPIO_4 DOUTP16 DCLKM TSW_GPIO_5 DCLKP TSW_GPIO_6 TSW_GPIO_7 Figure 63. AFE5816 Rev C EVM Schematic Hardware Reference SLOU429A – December 2015 – Revised February 2016 Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 47: Afe5816 Rev C Evm Schematic

    AGND CW_Q_OUT/AMPIN_M R179 3300pF R168 AGND DC_OUTP_QP C238 1200pF AGND R181 C239 R182 DC_INM_QP Figure 64. AFE5816 Rev C EVM Schematic SLOU429A – December 2015 – Revised February 2016 Hardware Reference Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 48 I/O, GTS3 LED2 I/O, GTS0 LED3 I/O, GTS1 CPLD_IO_4 CPLD_IO_5 CPLD_IO_6 U13C CPLD_IO_7 INPUT Figure 65. AFE5816 Rev C EVM Schematic Hardware Reference SLOU429A – December 2015 – Revised February 2016 Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 49 I/O, GTS3 LED2 I/O, GTS0 LED3 I/O, GTS1 CPLD_IO_4 CPLD_IO_5 CPLD_IO_6 U13C CPLD_IO_7 INPUT Figure 66. AFE5816 Rev C EVM Schematic SLOU429A – December 2015 – Revised February 2016 Hardware Reference Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 50 TSW_GPIO_1 TGC_PROF_2/DIG_CTRL R139 TGC_UP_DOWN_EXT TSW_GPIO_2 R140 TGC_SLOPE_EXT TSW_GPIO_3 R141 TGC_UP_DOWN_EXT CPLD_UD R142 TGC_SLOPE_EXT CPLD_SL Figure 67. AFE5816 Rev C EVM Schematic Hardware Reference SLOU429A – December 2015 – Revised February 2016 Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 51 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF TR_EN_OUT_4 C135 49.9 0.1uF AGND Figure 68. AFE5816 Rev C EVM Schematic SLOU429A – December 2015 – Revised February 2016 Hardware Reference Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 52 These assemblies must comply with workmanship standards IPC-A-610 Class 2, unless otherwise specified. Assembly Note Indication for all LEDs has been marked with their cathode side. Figure 69. AFE5816 Rev C EVM Schematic Hardware Reference SLOU429A – December 2015 – Revised February 2016 Submit Documentation Feedback Copyright ©...
  • Page 53: Afe5816 Evm Bill Of Materials

    EVM Bill of Materials www.ti.com EVM Bill of Materials Table 3 lists the AFE5816 EVM bill of materials (BOM). Table 3. AFE5816 EVM Bill of Materials Designator Value Description Package Reference Part Number Alternate Part Number Alternate MFR C1, C2, C4, C6, C9, C10, C12, 22 µF...
  • Page 54 EVM Bill of Materials www.ti.com Table 3. AFE5816 EVM Bill of Materials (continued) Designator Value Description Package Reference Part Number Alternate Part Number Alternate MFR C141, C144, C159, C165 100pF CAP, CERM, 100 pF, 50 V, +/- 10%, 0402 CC0402KRX7R9BB101...
  • Page 55 EVM Bill of Materials www.ti.com Table 3. AFE5816 EVM Bill of Materials (continued) Designator Value Description Package Reference Part Number Alternate Part Number Alternate MFR J7, J8, J11, J12, J15, J16, J18, Connector, End launch SMA, 50 ohm, End Launch SMA...
  • Page 56 EVM Bill of Materials www.ti.com Table 3. AFE5816 EVM Bill of Materials (continued) Designator Value Description Package Reference Part Number Alternate Part Number Alternate MFR R143, R144 RES, 10 k, 5%, 0.063 W, 0402 0402 CRCW040210K0JNED Vishay-Dale R148, R164, R166, R181 RES, 499, 1%, 0.063 W, 0402...
  • Page 57 EVM Bill of Materials www.ti.com Table 3. AFE5816 EVM Bill of Materials (continued) Designator Value Description Package Reference Part Number Alternate Part Number Alternate MFR U16, U18 HIGH-SPEED, LOW-NOISE, FULLY- DGN0008D THS4131CDGNR Texas THS4131CDGN Texas Instruments DIFFERENTIAL I/O AMPLIFIERS, Instruments...
  • Page 58 EVM Bill of Materials www.ti.com Table 3. AFE5816 EVM Bill of Materials (continued) Designator Value Description Package Reference Part Number Alternate Part Number Alternate MFR R73, R76, R81, R85, R86, R88, RES, 10 k, 5%, 0.063 W, 0402 0402 CRCW040210K0JNED...
  • Page 59: Appendix Ffaq And Troubleshooting

    – Missing Data output clock from the AFE to the FGPA. With LVDS, this could be the FCLK or DCLK. D5 of the TSW1400 should turn on, and if not, this is probably the reason. With JESD204B data, a SLOU429A – December 2015 – Revised February 2016 FAQ and Troubleshooting Submit Documentation Feedback Copyright © 2015–2016, Texas Instruments Incorporated...
  • Page 60: Read Ddr Error For No Capture

    Added the Triggering Options section................• Added the Common Hardware Modifications section........• Added the AFE5816 EVM Hardware Overview and Schematics sections to Appendix E..................• Updated the Bill of Materials in Appendix E..................• Added the FAQ and Troubleshooting section.
  • Page 61 STANDARD TERMS AND CONDITIONS FOR EVALUATION MODULES Delivery: TI delivers TI evaluation boards, kits, or modules, including any accompanying demonstration software, components, or documentation (collectively, an “EVM” or “EVMs”) to the User (“User”) in accordance with the terms and conditions set forth herein. Acceptance of the EVM is expressly subject to the following terms and conditions.
  • Page 62 FCC Interference Statement for Class B EVM devices NOTE: This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation.
  • Page 63 【無線電波を送信する製品の開発キットをお使いになる際の注意事項】 開発キットの中には技術基準適合証明を受けて いないものがあります。 技術適合証明を受けていないもののご使用に際しては、電波法遵守のため、以下のいずれかの 措置を取っていただく必要がありますのでご注意ください。 1. 電波法施行規則第6条第1項第1号に基づく平成18年3月28日総務省告示第173号で定められた電波暗室等の試験設備でご使用 いただく。 2. 実験局の免許を取得後ご使用いただく。 3. 技術基準適合証明を取得後ご使用いただく。 なお、本製品は、上記の「ご使用にあたっての注意」を譲渡先、移転先に通知しない限り、譲渡、移転できないものとします。 上記を遵守頂けない場合は、電波法の罰則が適用される可能性があることをご留意ください。 日本テキサス・イ ンスツルメンツ株式会社 東京都新宿区西新宿6丁目24番1号 西新宿三井ビル 3.3.3 Notice for EVMs for Power Line Communication: Please see http://www.tij.co.jp/lsds/ti_ja/general/eStore/notice_02.page 電力線搬送波通信についての開発キットをお使いになる際の注意事項については、次のところをご覧くださ い。http://www.tij.co.jp/lsds/ti_ja/general/eStore/notice_02.page SPACER EVM Use Restrictions and Warnings: 4.1 EVMS ARE NOT FOR USE IN FUNCTIONAL SAFETY AND/OR SAFETY CRITICAL EVALUATIONS, INCLUDING BUT NOT LIMITED TO EVALUATIONS OF LIFE SUPPORT APPLICATIONS.
  • Page 64 Notwithstanding the foregoing, any judgment may be enforced in any United States or foreign court, and TI may seek injunctive relief in any United States or foreign court. Mailing Address: Texas Instruments, Post Office Box 655303, Dallas, Texas 75265 Copyright © 2015, Texas Instruments Incorporated...
  • Page 65 IMPORTANT NOTICE Texas Instruments Incorporated and its subsidiaries (TI) reserve the right to make corrections, enhancements, improvements and other changes to its semiconductor products and services per JESD46, latest issue, and to discontinue any product or service per JESD48, latest issue.

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