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WARNING

General Texas Instruments High Voltage Evaluation (TI HV EVM) User Safety Guidelines

www.ti.com

2

SBOU244 – June 2020

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Copyright © 2020, Texas Instruments Incorporated

INA281EVM

1

General Texas Instruments High Voltage Evaluation (TI HV EVM) User Safety Guidelines

Always follow TI’s setup and application instructions, including use of all interface components within their
recommended electrical rated voltage and power limits. Always use electrical safety precautions to help
ensure your personal safety and those working around you. Contact TI's Product Information Center

http://support/ti./com

for further information.

Save all warnings and instructions for future reference.

WARNING

Failure to follow warnings and instructions may result in personal injury,
property damage or death due to electrical shock and burn hazards.

The term TI HV EVM refers to an electronic device typically provided as an open framed, unenclosed
printed circuit board assembly. It is

intended strictly for use in development laboratory environments,

solely for qualified professional users having training, expertise and knowledge of electrical safety risks in
development and application of high voltage electrical circuits. Any other use and/or application are strictly
prohibited by Texas Instruments.

If you are not suitable qualified, you should immediately stop from further

use of the HV EVM.

1. Work Area Safety

a. Keep work area clean and orderly.

b. Qualified observer(s) must be present anytime circuits are energized.

c. Effective barriers and signage must be present in the area where the TI HV EVM and its interface

electronics are energized, indicating operation of accessible high voltages may be present, for the
purpose of protecting inadvertent access.

d. All interface circuits, power supplies, evaluation modules, instruments, meters, scopes and other

related apparatus used in a development environment exceeding 50Vrms/75VDC must be
electrically located within a protected Emergency Power Off EPO protected power strip.

e. Use stable and nonconductive work surface.

f.

Use adequately insulated clamps and wires to attach measurement probes and instruments. No
freehand testing whenever possible.

2. Electrical Safety

As a precautionary measure, it is always a good engineering practice to assume that the entire EVM
may have fully accessible and active high voltages.

a. De-energize the TI HV EVM and all its inputs, outputs and electrical loads before performing any

electrical or other diagnostic measurements. Revalidate that TI HV EVM power has been safely
de-energized.

b. With the EVM confirmed de-energized, proceed with required electrical circuit configurations,

wiring, measurement equipment connection, and other application needs, while still assuming the
EVM circuit and measuring instruments are electrically live.

c. After EVM readiness is complete, energize the EVM as intended.

WARNING

While the EVM is energized, never touch the EVM or its electrical
circuits, as they could be at high voltages capable of causing electrical
shock hazard.

Summary of Contents for INA281EVM

Page 1: ...ule EVM This EVM is designed to evaluate the performance of the INA281 voltage output current shunt monitor in a variety of configurations Throughout this document the terms evaluation board evaluatio...

Page 2: ...Keep work area clean and orderly b Qualified observer s must be present anytime circuits are energized c Effective barriers and signage must be present in the area where the TI HV EVM and its interfac...

Page 3: ...ight 2020 Texas Instruments Incorporated INA281EVM 3 Personal Safety a Wear personal protective equipment for example latex gloves or safety glasses with side shields or protect EVM in an adequate luc...

Page 4: ...upply voltages between 2 7 V and 20 V and draws a typical of 1 7 mA at room temperature Table 1 INA281 Gain Option Summary Product Gain V V INA281A1 and INA281B1 20 INA281A2 and INA281B2 50 INA281A3 a...

Page 5: ...inouts of the A and B versions the layouts and test point locations are also different Each of the PCB cutouts consists of one INA281Xn device where X is A or B and n is 1 2 3 4 or 5 and test points a...

Page 6: ...d Vin J1_Xn tabs Given the internal GND reference of the device make sure that the Vin pin is the more positive of the two inputs 2 Additionally if the differential voltage supply is a floating supply...

Page 7: ...Vin and Vin pads which are sensed by IN and IN input pins If used make sure R1_Xn has proper power dissipation for the selected current load The chosen resistor must have a 2512 footprint 5 4 U1_Xn I...

Page 8: ...show how the board is laid out they are not intended to be used for manufacturing INA281EVM PCBs 6 1 Schematics Figure 1 shows the schematic of the INA281EVM for all gain versions for the A pinout The...

Page 9: ...ww ti com Schematic PCB Layout and Bill of Materials 9 SBOU244 June 2020 Submit Documentation Feedback Copyright 2020 Texas Instruments Incorporated INA281EVM Figure 2 INA281EVM Schematic Gain B1 Pane...

Page 10: ...0 SBOU244 June 2020 Submit Documentation Feedback Copyright 2020 Texas Instruments Incorporated INA281EVM 6 2 PCB Layout Figure 3 through Figure 9 illustrate the PCB layout for the INA281EVM Figure 3...

Page 11: ...Schematic PCB Layout and Bill of Materials 11 SBOU244 June 2020 Submit Documentation Feedback Copyright 2020 Texas Instruments Incorporated INA281EVM Figure 5 INA281EVM Top Layer Figure 6 INA281EVM Bo...

Page 12: ...B Layout and Bill of Materials www ti com 12 SBOU244 June 2020 Submit Documentation Feedback Copyright 2020 Texas Instruments Incorporated INA281EVM Figure 7 INA281EVM Top Solder Figure 8 INA281EVM Bo...

Page 13: ...www ti com Schematic PCB Layout and Bill of Materials 13 SBOU244 June 2020 Submit Documentation Feedback Copyright 2020 Texas Instruments Incorporated INA281EVM Figure 9 INA281EVM Drill Drawing...

Page 14: ...3_A5 R3_B1 R3_B2 R3_B3 R3_B4 R3_B5 R4_A1 R4_A2 R4_A3 R4_A4 R4_A5 R4_B1 R4_B2 R4_B3 R4_B4 R4_B5 30 0 RES 0 5 0 1 W AEC Q200 Grade 0 0603 0603 ERJ 3GEY0R00V Panasonic TP1_A1 TP1_A2 TP1_A3 TP1_A4 TP1_A5...

Page 15: ...SOT23 5 INA281B4IDBVR Texas Instruments U1_B5 1 INA281 4 V to 110 V 1 3 MHz Current Sense Amplifier SOT23 5 INA281B5IDBVR Texas Instruments C2_A1 C2_A2 C2_A3 C2_A4 C2_A5 C2_B1 C2_B2 C2_B3 C2_B4 C2_B5...

Page 16: ...e resources are subject to change without notice TI grants you permission to use these resources only for development of an application that uses the TI products described in the resource Other reprod...

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