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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. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance
with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference
will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which
can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more
of the following measures:

Reorient or relocate the receiving antenna.

Increase the separation between the equipment and receiver.

Connect the equipment into an outlet on a circuit different from that to which the receiver is connected.

Consult the dealer or an experienced radio/TV technician for help.

3.2

Canada

3.2.1

For EVMs issued with an Industry Canada Certificate of Conformance to RSS-210 or RSS-247

Concerning EVMs Including Radio Transmitters:

This device complies with Industry Canada license-exempt RSSs. Operation is subject to the following two conditions:

(1) this device may not cause interference, and (2) this device must accept any interference, including interference that may
cause undesired operation of the device.

Concernant les EVMs avec appareils radio:

Le présent appareil est conforme aux CNR d'Industrie Canada applicables aux appareils radio exempts de licence. L'exploitation
est autorisée aux deux conditions suivantes: (1) l'appareil ne doit pas produire de brouillage, et (2) l'utilisateur de l'appareil doit
accepter tout brouillage radioélectrique subi, même si le brouillage est susceptible d'en compromettre le fonctionnement.

Concerning EVMs Including Detachable Antennas:

Under Industry Canada regulations, this radio transmitter may only operate using an antenna of a type and maximum (or lesser)
gain approved for the transmitter by Industry Canada. To reduce potential radio interference to other users, the antenna type
and its gain should be so chosen that the equivalent isotropically radiated power (e.i.r.p.) is not more than that necessary for
successful communication. This radio transmitter has been approved by Industry Canada to operate with the antenna types
listed in the user guide with the maximum permissible gain and required antenna impedance for each antenna type indicated.
Antenna types not included in this list, having a gain greater than the maximum gain indicated for that type, are strictly prohibited
for use with this device.

Concernant les EVMs avec antennes détachables

Conformément à la réglementation d'Industrie Canada, le présent émetteur radio peut fonctionner avec une antenne d'un type et
d'un gain maximal (ou inférieur) approuvé pour l'émetteur par Industrie Canada. Dans le but de réduire les risques de brouillage
radioélectrique à l'intention des autres utilisateurs, il faut choisir le type d'antenne et son gain de sorte que la puissance isotrope
rayonnée équivalente (p.i.r.e.) ne dépasse pas l'intensité nécessaire à l'établissement d'une communication satisfaisante. Le
présent émetteur radio a été approuvé par Industrie Canada pour fonctionner avec les types d'antenne énumérés dans le
manuel d’usage et ayant un gain admissible maximal et l'impédance requise pour chaque type d'antenne. Les types d'antenne
non inclus dans cette liste, ou dont le gain est supérieur au gain maximal indiqué, sont strictement interdits pour l'exploitation de
l'émetteur

3.3

Japan

3.3.1

Notice for EVMs delivered in Japan:

Please see

http://www.tij.co.jp/lsds/ti_ja/general/eStore/notice_01.page

日本国内に

輸入される評価用キット、ボードについては、次のところをご覧ください。

http://www.tij.co.jp/lsds/ti_ja/general/eStore/notice_01.page

3.3.2

Notice for Users of EVMs Considered “Radio Frequency Products” in Japan:

EVMs entering Japan may not be certified

by TI as conforming to Technical Regulations of Radio Law of Japan.

If User uses EVMs in Japan, not certified to Technical Regulations of Radio Law of Japan, User is required to follow the
instructions set forth by Radio Law of Japan, which includes, but is not limited to, the instructions below with respect to EVMs
(which for the avoidance of doubt are stated strictly for convenience and should be verified by User):

1.

Use EVMs in a shielded room or any other test facility as defined in the notification #173 issued by Ministry of Internal
Affairs and Communications on March 28, 2006, based on Sub-section 1.1 of Article 6 of the Ministry’s Rule for
Enforcement of Radio Law of Japan,

2.

Use EVMs only after User obtains the license of Test Radio Station as provided in Radio Law of Japan with respect to
EVMs, or

3.

Use of EVMs only after User obtains the Technical Regulations Conformity Certification as provided in Radio Law of Japan
with respect to EVMs. Also, do not transfer EVMs, unless User gives the same notice above to the transferee. Please note
that if User does not follow the instructions above, User will be subject to penalties of Radio Law of Japan.

Summary of Contents for HSS-MOTHERBOARDEVM

Page 1: ...nt description schematic bill of materials BOM and board layout of the EVM NOTE This EVM does NOT come with devices populated on the board The user MUST order samples separately Contents 1 Introduction 2 1 1 Descriptions 2 1 2 Applications 2 1 3 Features 3 2 HSS MOTHERBOARDEVM Schematic 4 3 Connections Descriptions 7 3 1 Connectors and Test Points 7 3 2 Jumpers 8 4 TPS2HB08 50EVM EVM Assembly Draw...

Page 2: ...in power pad on the back needs to be soldered correctly as to not affect performance Please see PowerPAD Thermally Enhanced Package app note for more details about the solder profile and techniques The current limiting resistors are on the bottom side of the daughterboard They are all 10 kΩ 0805 package For the desired current limit value the resistor can be replaced with different value Also for ...

Page 3: ...d 5 V logic compatible High accuracy current sense Analog current sense as a ratio of the load current or device temperature Protection Reverse battery protection with external ground network Short circuit protection Overvoltage protection Thermal shutdown and thermal swing with self recovery ESD protection Diagnostic On and off state output open or short to battery detection Overload and short to...

Page 4: ...December 2018 Submit Documentation Feedback Copyright 2018 Texas Instruments Incorporated High Side Switch Motherboard Evaluation Module 2 HSS MOTHERBOARDEVM Schematic Figure 1 and Figure 2 illustrate the TPS2HB08 50EVM motherboard and daughterboard schematics respectively ...

Page 5: ...M Schematic 5 SLVUBD4A January 2018 Revised December 2018 Submit Documentation Feedback Copyright 2018 Texas Instruments Incorporated High Side Switch Motherboard Evaluation Module Figure 1 HSS MOTHERBOARDEVM Motherboard Schematic ...

Page 6: ...ti com 6 SLVUBD4A January 2018 Revised December 2018 Submit Documentation Feedback Copyright 2018 Texas Instruments Incorporated High Side Switch Motherboard Evaluation Module Figure 2 HSS MOTHERBOARDEVM Sample Daughter Card Schematic ...

Page 7: ...tage Vout2_Sense TP12 Test point to measure VOUT2 Voltage EN1 TP3 Test point used to apply power to EN1 only use when J9 is not connected to 5V or GND EN2 TP7 Test point used to apply power to EN2 only use when J13 is not connected to 5V or GND Only for 2 channel devices DIA_EN TP4 Test point used to apply power to DIA_EN only use when J10 is not connected to 5 V or GND SEL1 TP5 Test point used to...

Page 8: ...o connect the SEL1 pin to 5 V 1 2 or GND 2 3 J11 This jumper is used to connect SEL2 pin to 5 V 1 2 or GND 2 3 J4 This jumper connects the TLV70450DBVR ground pin 1 to EVM GND This with J5 enables LDO J24 This jumper is used to bypass the ground network used for reverse polarity protection J3 This jumper is used to power the 5 V TLV70450DBVR LDO with the VBB input for the EVM J8 This jumper is use...

Page 9: ...out Figure 3 show the design of the HSS MOTHERBOARDEVM and daughterboard PCB The EVM was designed using FR4 material on a two layer board All components are located in an active area on the top side and active traces are provided in the top and bottom layers to allow the user to easily view probe and evaluate Moving components to both sides of the PCB can offer additional size reduction for space ...

Page 10: ...yout www ti com 10 SLVUBD4A January 2018 Revised December 2018 Submit Documentation Feedback Copyright 2018 Texas Instruments Incorporated High Side Switch Motherboard Evaluation Module Figure 4 HSS MOTHERBOARDEVM Layout and Routing Bottom View ...

Page 11: ...on The HSS MOTHERBOARDEVM comes with large footprints for TVS diodes if they are needed for any transient testing D3 is an SMB footprint while D4 D5 and D6 are SMC footprints In addition there are also some capacitor footprints that can be populated if need be such as C4 or C11 8 Soldering Down U2 The HSS MOTHERBOARDEVM allows the user to solder down a device directly to the board without going th...

Page 12: ...1 0KL Yageo America R2 R7 R11 R12 R13 R14 R15 7 10k RES 10 k 5 0 1 W 0603 0603 RC1608J103CS Samsung Electro Mechanics R6 1 4 7k RES 4 7 k 5 0 1 W AEC Q200 Grade 0 0603 0603 CRCW06034K7 0JNEA Vishay Dale R16 R17 2 10k RES 10 k 5 0 1 W AEC Q200 Grade 0 0603 0603 CRCW060310K 0JNEA Vishay Dale SH J1 SH J2 SH J3 SH J4 SH J5 SH J6 SH J7 SH J8 SH J9 SH J10 10 1x2 Shunt 100mil Gold plated Black Shunt SNT ...

Page 13: ... Mechanics R8 R9 0 0 RES 0 5 0 063 W AEC Q200 Grade 0 0402 0402 CRCW04020000 Z0ED Vishay Dale U1_S 0 40 V 8 mOhm Dual Channel Smart High Side Switch PWP0024L TSSOP 24 PWP0024L TPS2HB08DQP WPRQ1 Texas Instruments U2 U2_S 0 40 V 8 mOhm Dual Channel Smart High Side Switch PWP0024L TSSOP 24 PWP0024L TPS2HB08BQP WPRQ1 Texas Instruments U3_S U4_S U5_S 0 40 V 16 mOhm Dual Channel Smart High Side Switch T...

Page 14: ...y set forth above or credit User s account for such EVM TI s liability under this warranty shall be limited to EVMs that are returned during the warranty period to the address designated by TI and that are determined by TI not to conform to such warranty If TI elects to repair or replace such EVM TI shall have a reasonable time to repair such EVM or provide replacements Repaired EVMs shall be warr...

Page 15: ...the user guide with the maximum permissible gain and required antenna impedance for each antenna type indicated Antenna types not included in this list having a gain greater than the maximum gain indicated for that type are strictly prohibited for use with this device Concernant les EVMs avec antennes détachables Conformément à la réglementation d Industrie Canada le présent émetteur radio peut fo...

Page 16: ...ed loads Any loads applied outside of the specified output range may also result in unintended and or inaccurate operation and or possible permanent damage to the EVM and or interface electronics Please consult the EVM user 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 even ...

Page 17: ...COST OF REMOVAL OR REINSTALLATION ANCILLARY COSTS TO THE PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES RETESTING OUTSIDE COMPUTER TIME LABOR COSTS LOSS OF GOODWILL LOSS OF PROFITS LOSS OF SAVINGS LOSS OF USE LOSS OF DATA OR BUSINESS INTERRUPTION NO CLAIM SUIT OR ACTION SHALL BE BROUGHT AGAINST TI MORE THAN TWELVE 12 MONTHS AFTER THE EVENT THAT GAVE RISE TO THE CAUSE OF ACTION HAS OCCURRED 8 2 Specif...

Page 18: ...se 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 reproduction and display of these resources is prohibited No license is granted to any other TI intellectual property right or to any third party intellectual property right TI disclaims responsibility for...

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