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EVALUATION BOARD/KIT IMPORTANT NOTICE

Texas Instruments (TI) provides the enclosed product(s) under the following conditions:

This evaluation board/kit is intended for use for ENGINEERING DEVELOPMENT, DEMONSTRATION, OR EVALUATION
PURPOSES ONLY 
and is not considered by TI to be a finished end-product fit for general consumer use. Persons handling the
product(s) must have electronics training and observe good engineering practice standards. As such, the goods being provided are
not intended to be complete in terms of required design-, marketing-, and/or manufacturing-related protective considerations,
including product safety and environmental measures typically found in end products that incorporate such semiconductor
components or circuit boards. This evaluation board/kit does not fall within the scope of the European Union directives regarding
electromagnetic compatibility, restricted substances (RoHS), recycling (WEEE), FCC, CE or UL, and therefore may not meet the
technical requirements of these directives or other related directives.

Should this evaluation board/kit not meet the specifications indicated in the User’s Guide, the board/kit may be returned within 30
days from the date of delivery for a full refund. THE FOREGOING WARRANTY IS THE EXCLUSIVE WARRANTY MADE BY
SELLER TO BUYER AND IS IN LIEU OF ALL OTHER WARRANTIES, EXPRESSED, IMPLIED, OR STATUTORY, INCLUDING
ANY WARRANTY OF MERCHANTABILITY OR FITNESS FOR ANY PARTICULAR PURPOSE.

The user assumes all responsibility and liability for proper and safe handling of the goods. Further, the user indemnifies TI from all
claims arising from the handling or use of the goods. Due to the open construction of the product, it is the user’s responsibility to
take any and all appropriate precautions with regard to electrostatic discharge.

EXCEPT TO THE EXTENT OF THE INDEMNITY SET FORTH ABOVE, NEITHER PARTY SHALL BE LIABLE TO THE OTHER
FOR ANY INDIRECT, SPECIAL, INCIDENTAL, OR CONSEQUENTIAL DAMAGES.

TI currently deals with a variety of customers for products, and therefore our 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 described herein.

Please read the User’s Guide and, specifically, the Warnings and Restrictions notice in the User’s Guide prior to handling the
product. This notice contains important safety information about temperatures and voltages. For additional information on TI’s
environmental and/or safety programs, please contact the TI application engineer or visit

www.ti.com/esh

.

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 such TI products or services might be or are used.

FCC Warning

This evaluation board/kit is intended for use for ENGINEERING DEVELOPMENT, DEMONSTRATION, OR EVALUATION
PURPOSES ONLY 
and is not considered by TI to be a finished end-product fit for general consumer use. It generates, uses, and
can radiate radio frequency energy and has not been tested for compliance with the limits of computing devices pursuant to part 15
of FCC rules, which are designed to provide reasonable protection against radio frequency interference. Operation of this
equipment in other environments may cause interference with radio communications, in which case the user at his own expense
will be required to take whatever measures may be required to correct this interference.

EVM WARNINGS AND RESTRICTIONS

It is important to operate this EVM within the input voltage range of 3.3 V to 5 V and the output voltage range of 0 V to 5 V.

Exceeding the specified input range may cause unexpected operation and/or irreversible damage to the EVM. If there are
questions concerning the input range, please contact a TI field representative prior to connecting the input power.

Applying loads outside of the specified output range may result in unintended operation and/or possible permanent damage to the
EVM. Please consult the 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 30

°

C. The EVM is designed to

operate properly with certain components above 85

°

C as long as the input and output ranges are maintained. These components

include but are not limited to linear regulators, switching transistors, pass transistors, and current sense resistors. These types of
devices can be identified using the EVM schematic located in the EVM User's Guide. When placing measurement probes near
these devices during operation, please be aware that these devices may be very warm to the touch.

Mailing Address: Texas Instruments, Post Office Box 655303, Dallas, Texas 75265

Copyright © 2007, Texas Instruments Incorporated

Содержание TSC2007EVM

Страница 1: ...CE LITERATURE NUMBER TSC2007 SBAS405 TAS1020B SLES025 REG1117 5 SBVS001 TPS767D318 SLVS209 SN74LVC125A SCAS290 SN74LVC1G125 SCES223 SN74LVC1G07 SCES296 Contents 1 EVM Overview 2 2 Analog Interface 2 3 Digital Interface 3 4 Power Supplies 3 5 EVM Operation 4 6 Kit Operation 5 7 EVM Bill of Materials 9 8 TSC2007EVM Schematic 11 9 USB MODEVM Schematic 11 List of Figures 1 TSC2007EVM PDK Block Diagram...

Страница 2: ... MODEVM interface board and evaluation software for use with a personal computer running Microsoft Windows operating systems For maximum flexibility the TSC2007EVM is designed for easy interfacing to multiple analog sources Samtec part numbers SSW 110 22 F D VS K and TSM 110 01 T DV P provide a convenient 10 pin dual row header socket combination at J1 This header socket provides access to the ana...

Страница 3: ...GND 5 6 AGND 1 8VD 7 8 Unused 3 3VD 9 10 Unused When power is supplied to J3 JMP1 allows for one of two different DC voltages to be selected as power for the TSC See the schematic and PCB silkscreen for details The TSC2007EVM PDK motherboard the USB MODEVM interface board supplies power to J3 of the TSC2007EVM Power for the motherboard is supplied either through its USB connection or via terminal ...

Страница 4: ...The 1 8VD and 3 3VD also can be generated on the board by the onboard regulators from the 5VD supply to enable this supply the switches on SW1 need to be set to enable the regulators by placing them in the ON position lower position looking at the board with text reading right side up If 1 8VD and 3 3VD are supplied externally disable the onboard regulators by placing SW1 switches in the OFF posit...

Страница 5: ... the TSC2007EVM This is the default mode The following section provides information on using the TSC2007EVM PDK including setup program installation and program usage A block diagram of the TSC2007EVM PDK is shown in Figure 1 The evaluation kit consists of two circuit boards connected together The motherboard is designated as the USB MODEVM interface board the daughtercard is the TSC2007EVM descri...

Страница 6: ...ce However provision is made for driving all the data buses I2 C SPI and I2 S AC97 externally The source of these signals is controlled by SW2 on the USB MODEVM Before installing the TSC2007EVM board on top of the USB MODEVM board check SW2 1 SW2 2 and SW2 3 on the USB MODEVM board to ensure that at least one of these three is OFF Ensure that the TSC2007EVM is installed on the USB MODEVM interface...

Страница 7: ...ured at the factory the board is powered from the USB interface so the power indicator LEDs on the USB MODEVM should light Once this occurs launch the TSC2007 evaluation software on your PC It is suggested that users read the readme_install txt file for up to date step by step instructions The software should automatically find the TSC2007EVM and a screen similar to the one shown in Figure 2 shoul...

Страница 8: ... by the RX plate resistance This value ranges from 0 to 3 and larger with larger numbers representing a more forceful press on the screen Using the Maximum Z Value to Display knob you can set a threshold so that the program does not display lightly pressed points This threshold setting helps to eliminate display of spurious points that may result from touch screen mechanical bouncing The display c...

Страница 9: ... start at any number then X Y Z1 Z2 AUX TEMP0 and TEMP1 columns Every new reading is a new row in the file Table 7 and Table 8 contain a complete bill of materials for the modular TSC2007EVM evaluation board and the USB MODEVM interface board respectively included only in the TSC2007EVM PDK Table 7 TSC2007EVM Bill of Materials Reference Designator Description Manufacturer Manufacturer s Part Numbe...

Страница 10: ... 1000pF 50V Ceramic TDK C1608C0G1H102J Chip Capacitor 5 NPO C15 0 1µF 16V Ceramic TDK C1608X7R1C104K Chip Capacitor 10 X7R C16 C17 0 33µF 16V Ceramic TDK C1608X5R1C334K Chip Capacitor 20 Y5V C9 C10 C11 C12 C22 C23 1µF 6 3V Ceramic TDK C1608X5R0J105K C24 C25 C26 C27 C28 Chip Capacitor 10 X5R C1 C2 C3 C4 C5 C6 C7 10µF 6 3V Ceramic TDK C3216X5R0J106K C8 Chip Capacitor 10 X5R D1 50V 1A Diode MELF SMD ...

Страница 11: ... 20 pin SMT socket Samtec SSW 110 22 F D VS K J13A J23A 10 pin SMT plug Samtec TSM 105 01 L DV P J13B J23B 10 pin SMT socket Samtec SSW 105 22 F D VS K J6 4 pin double row header 2x2 Samtec TSW 102 07 L D 0 1 J14 J15 12 pin double row header 2x6 Samtec TSW 106 07 L D 0 1 JMP1 JMP4 2 position jumper Samtec TSW 102 07 L S 0 1 spacing JMP8 JMP14 2 position jumper Samtec TSW 102 07 L S 0 1 spacing JMP...

Страница 12: ..._TSM 110 01 L DV P J2B BOTTOM SAM_SSW 110 22 F D VS J3A TOP SAM_TSM 105 01 L DV P J3B BOTTOM SAM_SSW 105 22 F D VS 1 2 3 JMP1 PWR SELECT TP10 SCL TP11 SDA TP4 X TP5 X TP6 Y TP7 Y TP8 AUX TP9 PENIRQ C3 0 1uF C1 0 1uF C2 10uF C4 NI C5 NI C6 NI C7 NI PENIRQ B1 SCL D1 SDA C1 A1 C2 A0 B2 VDD A2 X A3 Y B3 X C3 Y D3 AUX A1 GND D2 U1 TSC2007IZZZ A0 2 A1 4 A2 6 A3 8 A4 10 A5 12 A6 14 A7 16 REF 18 REF 20 A0...

Страница 13: ... C10 1uF C11 1uF C12 1uF USB SLAVE CONN EXT PWR IN 6 00 MHZ 6463996 RED 1OE 1 1A 2 1Y 3 2OE 4 2A 5 2Y 6 GND 7 3Y 8 3A 9 3OE 10 4Y 11 4A 12 4OE 13 VCC 14 U3 SN74LVC125APW 1OE 1 1A 2 1Y 3 2OE 4 2A 5 2Y 6 GND 7 3Y 8 3A 9 3OE 10 4Y 11 4A 12 4OE 13 VCC 14 U4 SN74LVC125APW 2 4 5 3 U5 SN74LVC1G07DBV IOVDD IOVDD C23 1uF R6 2 7K C22 1uF IOVDD C27 1uF 3 3VD 2 4 5 3 U7 SN74LVC1G07DBV C26 1uF R7 2 7K 3 3VD 3 ...

Страница 14: ... 17 AGND 19 J11 DAUGHTER ANALOG VA 2 5VA 4 DGND 6 VD1 8 5VD 10 VA 1 5VA 3 AGND 5 1 8VD 7 3 3VD 9 J23 DAUGHTER POWER GPIO0 2 DGND 4 GPIO1 6 GPIO2 8 DGND 10 GPIO3 12 GPIO4 14 SCL 16 DGND 18 SDA 20 CNTL 1 CLKX 3 CLKR 5 FSX 7 FSR 9 DX 11 DR 13 INT 15 TOUT 17 GPIO5 19 J22 DAUGHTER SERIAL 5VD 5VA A0 2 A1 4 A2 6 A3 8 A4 10 A5 12 A6 14 A7 16 REF 18 REF 20 A0 1 A1 3 A2 5 A3 7 AGND 9 AGND 11 AGND 13 VCOM 15...

Страница 15: ...roduct This notice contains important safety information about temperatures and voltages For additional information on TI s environmental and or safety programs please contact the TI application engineer or visit www ti com esh 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 such TI products...

Страница 16: ...siness practice TI is not responsible or liable for any such statements TI products are not authorized for use in safety critical applications such as life support where a failure of the TI product would reasonably be expected to cause severe personal injury or death unless officers of the parties have executed an agreement specifically governing such use Buyers represent that they have all necess...

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