Texas Instruments BOOSTXL-TMP107 Скачать руководство пользователя страница 4

Copyright © 2017, Texas Instruments Incorporated

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Hardware

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Copyright © 2017, Texas Instruments Incorporated

BOOSTXL-TMP107 User's Guide

2.1

Hardware Features

2.1.1

BoosterPack™ Pinout

Figure 3

shows the pinout of the BoosterPack Module.

Figure 3. BoosterPack™ Pinout

The TMP107 BoosterPack adheres to the 40-pin LaunchPad and BoosterPack standard (see

Figure 3

). A

standard was created to aid compatibility between LaunchPad and BoosterPack tools across the TI
ecosystem.

The 40-pin standard is compatible with the 20-pin standard that is used by other LaunchPads like the
MSP-EXP430G2. This allows for the 20-pin LaunchPads to be used with 40-pin BoosterPAcks with some
limited functionality.

More information about compatibility is found at

http://www.ti.com/launchpad

.

2.1.2

TMP107 Temperature Sensor (U2–U4)

BOOSTXL-TMP107 features three TMP107 temperature sensors. The sensors are connected to one
another sequentially using a unique one-wire bus. Device U2 is the first in the communication chain, and
resides on the main section of the PCB. Device U3 and U4 follow U2, and reside on the breakable
sections of the PCB. Each device independently measures and reports temperature on the bus, which can
support up to 32 TMP107 devices.

2.1.3

Communication Modes Pin Header (J3)

The TMP107 one-wire communication interface is compatible with UART. However, it is necessary to
combine the transmit (TX) and receive (RX) lines of UART in order to create the bidirectional bus which
TMP107 uses. BOOSTXL-TMP107 offers three methods of creating this bidirectional bus.

1. The first method makes use of the open-drain driver SN74LVC1G07 U1 and the pullup resistor R1.

This is the method presented in the TMP107 data sheet, and it provides the most robust
communication regardless of UART host. To use this mode, connect the shunt across pins 1 and 2.

2. The second method uses 10-k

Ω

series resistor R2 to simultaneously act as a pullup (since the TX pin

idles high) and a current limiter. This method has lower cost and complexity than the first method. This
method works with all UART hosts, and works well with MSP430 in the BOOSTXL-TMP107 examples.
To use this mode, connect the shunt across pins 3 and 4.

3. The third method directly connects the TX line, and requires special programming of the UART Master

to avoid bus collision from the two drivers. This method uses no additional components, but only works
with microcontrollers which have been specially programmed. To use this mode, connect the shunt
across pins 5 and 6, and

uncomment

line 71 in

hal.h

which reads “#define TMP107_OneWireUART.”

Содержание BOOSTXL-TMP107

Страница 1: ...ne 2017 BOOSTXL TMP107 User s Guide The BOOSTXL TMP107 BoosterPack see Figure 1 is an easy to use plug in module that adds high accuracy temperature sensors to your LaunchPad development kit Two of th...

Страница 2: ...re and TI Resource Explorer 11 4 4 TI E2E Community 11 5 Schematics 12 List of Figures 1 BOOSTXL TMP107 1 2 BOOSTXL TMP107 Overview 3 3 BoosterPack Pinout 4 4 J3 Header 5 5 Breakable PCB 5 6 Console O...

Страница 3: ...ors quantity 3 One temperature sensor on the main section of the PCB Two temperature sensors on perforated sections of the PCB Choice of three driver circuits for software evaluation Utilizes universa...

Страница 4: ...the breakable sections of the PCB Each device independently measures and reports temperature on the bus which can support up to 32 TMP107 devices 2 1 3 Communication Modes Pin Header J3 The TMP107 on...

Страница 5: ...ntation Feedback Copyright 2017 Texas Instruments Incorporated BOOSTXL TMP107 User s Guide Figure 4 J3 Header 2 1 4 Breakable PCB The BOOSTXL TMP107 PCB features perforations that allow sections to be...

Страница 6: ...ncluding schematics layout bill of materials BOM Gerber files and documentation are available on the BOOSTXL TMP107 download page 2 3 2 Software All design files including TI TXT object code firmware...

Страница 7: ...ter 7 10 or later 3 1 LibraryTestBench This section describes the functionality and structure of the LibraryTestBench demonstration included in TMP107 Firmware Library 3 1 1 Source File Structure Tabl...

Страница 8: ...n can also be used to check your understanding of the TMP107 The output of the demonstration is shown in Figure 6 Figure 6 Console Output From Compiled LibraryTestBench Demonstration 3 2 OutOfBox_MSP...

Страница 9: ...ast device in the bus If the number of devices on the bus has recently changed or if new TMP107 devices are being used hold the pushbutton S1 to initialize the bus addresses instead After either LastD...

Страница 10: ...7 library tmp107 h TMP107 library header 3 3 2 Operation This demonstration uses the MSP application UART to report temperature data to the PC The MSP application UART is a virtual COM port that is ma...

Страница 11: ...collection of code examples software libraries data sheets and other design resources for all MSP devices delivered in a convenient package essentially everything developers need to become MSP experts...

Страница 12: ...In I2S_SCLK 28 Analog_Out I2S_SDout 29 Analog_Out I2S_SDin 30 J1 SSQ 110 03 T D 1 2 3 4 5 6 J3 10k R2 V 1 R1 2 I O1 3 ALERT1 4 GND 5 ALERT2 6 I O2 7 R2 8 U2 TMP107BIDR NC 1 2 3 4 5 U1 SN74LVC1G07DBVR...

Страница 13: ...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...

Страница 14: ...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 great...

Страница 15: ...t 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 with the...

Страница 16: ...OST 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...

Страница 17: ...TI Resource NO OTHER LICENSE EXPRESS OR IMPLIED BY ESTOPPEL OR OTHERWISE TO ANY OTHER TI INTELLECTUAL PROPERTY RIGHT AND NO LICENSE TO ANY TECHNOLOGY OR INTELLECTUAL PROPERTY RIGHT OF TI OR ANY THIRD...

Страница 18: ...Mouser Electronics Authorized Distributor Click to View Pricing Inventory Delivery Lifecycle Information Texas Instruments BOOSTXL TMP107...

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