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ADDITIONAL TERMS AND CONDITIONS, WARNINGS, RESTRICTIONS, AND DISCLAIMERS FOR

EVALUATION MODULES

Texas Instruments Incorporated (TI) markets, sells, and loans all evaluation boards, kits, and/or modules (EVMs) pursuant to, and user
expressly acknowledges, represents, and agrees, and takes sole responsibility and risk with respect to, the following:

1.

User agrees and acknowledges that EVMs are intended to be handled and used for feasibility evaluation only in laboratory and/or
development environments. Notwithstanding the foregoing, in certain instances, TI makes certain EVMs available to users that do not
handle and use EVMs solely for feasibility evaluation only in laboratory and/or development environments, but may use EVMs in a
hobbyist environment. All EVMs made available to hobbyist users are FCC certified, as applicable. Hobbyist users acknowledge, agree,
and shall comply with all applicable terms, conditions, warnings, and restrictions in this document and are subject to the disclaimer and
indemnity provisions included in this document.

2.

Unless otherwise indicated, EVMs are not finished products and not intended for consumer use. EVMs are intended solely for use by
technically qualified electronics experts who are familiar with the dangers and application risks associated with handling electrical
mechanical components, systems, and subsystems.

3.

User agrees that EVMs shall not be used as, or incorporated into, all or any part of a finished product.

4.

User agrees and acknowledges that certain EVMs may not be designed or manufactured by TI.

5.

User must read the user's guide and all other documentation accompanying EVMs, including without limitation any warning or
restriction notices, prior to handling and/or using EVMs. Such notices contain important safety information related to, for example,
temperatures and voltages. For additional information on TI's environmental and/or safety programs, please visit

www.ti.com/esh

or

contact TI.

6.

User assumes all responsibility, obligation, and any corresponding liability for proper and safe handling and use of EVMs.

7.

Should any EVM not meet the specifications indicated in the user’s guide or other documentation accompanying such EVM, the EVM
may be returned to TI within 30 days from the date of delivery for a full refund. THE FOREGOING LIMITED WARRANTY IS THE
EXCLUSIVE WARRANTY MADE BY TI TO USER AND IS IN LIEU OF ALL OTHER WARRANTIES, EXPRESSED, IMPLIED, OR
STATUTORY, INCLUDING ANY WARRANTY OF MERCHANTABILITY OR FITNESS FOR ANY PARTICULAR PURPOSE. TI SHALL
NOT BE LIABLE TO USER FOR ANY INDIRECT, SPECIAL, INCIDENTAL, OR CONSEQUENTIAL DAMAGES RELATED TO THE
HANDLING OR USE OF ANY EVM.

8.

No license is granted under any patent right or other intellectual property right of TI covering or relating to any machine, process, or
combination in which EVMs might be or are used. TI currently deals with a variety of customers, and therefore TI’s arrangement with
the user is not exclusive. TI assumes no liability for applications assistance, customer product design, software performance, or
infringement of patents or services with respect to the handling or use of EVMs.

9.

User assumes sole responsibility to determine whether EVMs may be subject to any applicable federal, state, or local laws and
regulatory requirements (including but not limited to U.S. Food and Drug Administration regulations, if applicable) related to its handling
and use of EVMs and, if applicable, compliance in all respects with such laws and regulations.

10. User has sole responsibility to ensure the safety of any activities to be conducted by it and its employees, affiliates, contractors or

designees, with respect to handling and using EVMs. Further, user is responsible to ensure that any interfaces (electronic and/or
mechanical) between EVMs and any human body are designed with suitable isolation and means to safely limit accessible leakage
currents to minimize the risk of electrical shock hazard.

11. User shall employ reasonable safeguards to ensure that user’s use of EVMs will not result in any property damage, injury or death,

even if EVMs should fail to perform as described or expected.

12. User shall be solely responsible for proper disposal and recycling of EVMs consistent with all applicable federal, state, and local

requirements.

Certain Instructions.

User shall operate EVMs within TI’s recommended specifications and environmental considerations per the user’s

guide, accompanying documentation, and any other applicable requirements. Exceeding the specified ratings (including but not limited to
input and output voltage, current, power, and environmental ranges) for EVMs may cause property damage, personal injury or death. If
there are questions concerning these ratings, user should contact a TI field representative prior to connecting interface electronics including
input power and intended loads. Any loads applied outside of the specified output range may result in unintended and/or inaccurate
operation and/or possible permanent damage to the EVM and/or interface electronics. Please consult the applicable EVM user's guide prior
to connecting any load to the EVM output. If there is uncertainty as to the load specification, please contact a TI field representative. During
normal operation, some circuit components may have case temperatures greater than 60°C as long as the input and output are maintained
at a normal ambient operating temperature. These components include but are not limited to linear regulators, switching transistors, pass
transistors, and current sense resistors which can be identified using EVMs’ schematics located in the applicable EVM user's guide. When
placing measurement probes near EVMs during normal operation, please be aware that EVMs may become very warm. As with all
electronic evaluation tools, only qualified personnel knowledgeable in electronic measurement and diagnostics normally found in
development environments should use EVMs.

Agreement to Defend, Indemnify and Hold Harmless.

User agrees to defend, indemnify, and hold TI, its directors, officers, employees,

agents, representatives, affiliates, licensors and their representatives harmless from and against any and all claims, damages, losses,
expenses, costs and liabilities (collectively, "Claims") arising out of, or in connection with, any handling and/or use of EVMs. User’s
indemnity shall apply whether Claims arise under law of tort or contract or any other legal theory, and even if EVMs fail to perform as
described or expected.

Safety-Critical or Life-Critical Applications.

If user intends to use EVMs in evaluations of safety critical applications (such as life support),

and a failure of a TI product considered for purchase by user for use in user’s product would reasonably be expected to cause severe
personal injury or death such as devices which are classified as FDA Class III or similar classification, then user must specifically notify TI
of such intent and enter into a separate Assurance and Indemnity Agreement.

Содержание AMC7812EVM-PDK

Страница 1: ...atform Block Diagram 6 4 AMC7812EVM Installer Directory 7 5 AMC7812EVM Install Path 8 6 Typical Hardware Connections on the AMC7812EVM 10 7 Confirmation of SDM USB DIG Platform Driver Installation 10...

Страница 2: ...of Tables 1 Contents of AMC7812EVM Kit 3 2 Related Documentation 3 3 J1 Signal Definition 5 4 Default Jumper Settings 9 5 AMC7812EVM Jumper and Shunt Resistor Settings 11 6 AMC7812EVM ADC Signal Conne...

Страница 3: ...USB DIG platform PCB 1 USB extender cable 1 24 V wall supply 1 1 2 Related Documentation from TI The following document provides information regarding TI integrated circuits used in the assembly of t...

Страница 4: ...communicate with the EVM board The EVM includes a 24 V wall supply that provides power to on board power regulators LDOs that regulate the analog and digital supplies Connectors are also included on t...

Страница 5: ...l output or measure input 8 DIG_GPIO5 GPIO Control output or measure input 9 MOSI SPI data output MOSI 10 DIG_GPIO6 GPIO Control output or measure input Switchable DUT power supply 3 3 V 5 V Hi Z disc...

Страница 6: ...the platform is the MSP430F5528 an ultra low power 16 bit MCU The microcontroller receives information from the host PC and translates it into I2 C SPI or other digital I O patterns The connected dev...

Страница 7: ...wn in Figure 4 When the software is launched an installation dialog opens and prompts the user to select an installation directory If left unchanged the software location defaults to C Program Files x...

Страница 8: ...oftware Setup www ti com Figure 5 AMC7812EVM Install Path 8 AMC7812EVM PDK User s Guide SBAU177D September 2010 Revised August 2014 Submit Documentation Feedback Copyright 2010 2014 Texas Instruments...

Страница 9: ...External supply Selecting AVCC voltage JP4 Shunt on 1 2 1 2 On board 14 V supply 2 3 External supply Selecting IOVDD voltage JP5 Shunt on 1 2 1 2 On board VDUT 2 3 External supply Installed Onboard t...

Страница 10: ...nds with a Found New Hardware USB Device popup dialog window The popup window then changes to Found New Hardware Virtual COM Port CDC This popup indicates that the device is ready for use The CDC driv...

Страница 11: ...DO supply R71 Not populated R71 3 3 V LDO supply Additionally IOVDD is supplied by the SDM USB DIG but can be externally sourced by setting the JP5 jumper and connecting the external source to the J6...

Страница 12: ...put DACD3 J2 9 DAC D3 output DACD4 J2 11 DAC D4 output DACD5 J2 13 DAC D5 output DACB6 J3 3 DAC B6 output DACB7 J3 5 DAC B7 output DACA8 J3 7 DAC A8 output DACA9 J3 9 DAC A9 output DACA10 J3 11 DAC A1...

Страница 13: ...CONNECTED Simulating is displayed in the top right area of the GUI If this text appears while the SDM USB DIG device is connected then unplug the SDM USB DIG and close the GUI Reconnect the SDM USB DI...

Страница 14: ...gure 11 Low Level Configuration Page This low level configuration page also provides the option to save the register map settings as a configuration file which is done by pressing the Save Config butt...

Страница 15: ...is configured individual channels can be enabled by selecting their respective ADC MUX button as shown in Figure 14 Figure 14 ADC Channel MUX CH0 to CH3 can be selected by using the dropdown menu and...

Страница 16: ...can be either Auto or Direct mode In Direct Mode the analog inputs specified in the ADC channel registers are converted sequentially one time In Auto Mode the analog inputs are converted sequentially...

Страница 17: ...e used with an Internal default or External reference To fully activate the DAC block set the Enable Reference Block To set the DAC channels individually select their respective checkbox in the Power...

Страница 18: ...ght of the Program DAC field are additional options that allow the user to configure each DAC for different events as shown in Figure 22 Starting from left to right the CLR EN0 CLR EN1 checkbox allows...

Страница 19: ...occur before the alarm is activated Additionally the bottom left of the GUI includes a checkbox function for enabling or disabling the alarm pin function and alarm latch settings Pressing the Read Ala...

Страница 20: ...MP button enables a temperature conversion and updates the temperature value for all temperature functions in Celsius C and hexadecimal Additionally these functions can be modified by adjusting the co...

Страница 21: ...GPIO Temp page also features four GPIO0 through GPIO3 general purpose I Os of the AMC7812 device as shown in Figure 32 Figure 32 GPIO Page Use the GPIO Block section of the GPIO tab as shown in Figur...

Страница 22: ...NI C19 NI C20 NI C32 NI C31 NI C30 NI C29 NI C28 NI C27 NI C26 NI C25 NI C24 NI C23 NI C22 NI C21 NI SDMini Dig connector RESET 1 DAV 2 CNVT 3 SDI SDA 4 SCLK SCL 5 DGND 6 IOVDD 7 DVDD 8 CS A0 9 SDO A1...

Страница 23: ...erature Diode Selection Jumper Table JP6 DIODE SELECT Remote temperature diode selection Installed shunt selects external temperature diodes connected to J2 1 2 and J3 1 2 Uninstalled shunt selects on...

Страница 24: ...F C51 0 1 F C49 1 F C50 GND 0 47 R68 GND GND 2 5V REF DNC 1 VIN 2 TEMP 3 GND 4 TRIM NR 5 VOUT 6 NC 7 DNC 8 U6 REF5025IDGK IN 3 OUT 2 GND 1 TAB 4 U5 LM1086CS 3 3 GND GND GND 10 F C45 10 F C44 3 3V D3...

Страница 25: ...t Figure 37 shows the layout of the components for the AMC7812EVM board Figure 37 AMC7812EVM PCB Components Layout 25 SBAU177D September 2010 Revised August 2014 AMC7812EVM PDK User s Guide Submit Doc...

Страница 26: ...pF 25V 10 X7R 0603 MuRata GRM188R71E272KA01D 16 1 C64 CAP CERM 0 01uF 50V 10 X7R 0603 TDK C1608X7R1H103K 17 1 D1 Diode Zener 5 1V 500mW SOD 123 Vishay Semiconductor MMSZ4689 V 18 2 D2 D3 LED Green SMD...

Страница 27: ...P1 TP2 Test Point Miniature Black TH Keystone 5001 44 7 TP3 TP4 TP5 TP6 TP7 TP8 TP9 Test Point Miniature Red TH Keystone 5000 45 1 U1 4 BIT 1 OF 2 FET MULTIPLEXER DEMULTIPLEXER HIGH BANDWIDTH BUS Texa...

Страница 28: ...e current version Revision C History Changes from B Revision June 2014 to C Revision Page Changed title of document to AMC7812EVM PDK User s Guide 1 Revision B History Changes from A Revision May 2013...

Страница 29: ...dling and use of EVMs and if applicable compliance in all respects with such laws and regulations 10 User has sole responsibility to ensure the safety of any activities to be conducted by it and its e...

Страница 30: ...his equipment generates uses and can radiate radio frequency energy and if not installed and used in accordance with the instruction manual may cause harmful interference to radio communications Opera...

Страница 31: ...age et ayant un gain admissible maximal et l imp dance requise pour chaque type d antenne Les types d antenne non inclus dans cette liste ou dont le gain est sup rieur au gain maximal indiqu sont stri...

Страница 32: ...sponsible for compliance with all legal regulatory and safety related requirements concerning its products and any use of TI components in its applications notwithstanding any applications related inf...

Страница 33: ...Mouser Electronics Authorized Distributor Click to View Pricing Inventory Delivery Lifecycle Information Texas Instruments AMC7812EVM PDK...

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