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MSC1200EVM - MSC1200EVM
Precision with 8051 Microcontroller Flash Memory
Data Acquisition Products
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IMPORTANT NOTICE Texas Instruments (TI) provides enclosed product(s) under following conditions: This evaluation being sold intended ENGINEERING DEVELOPMENT EVALUATION PURPOSES ONLY considered commercial use. such, goods being provided complete terms required design-, marketing-, and/or manufacturing-related protective considerations, including product safety measures typically found product incorporating goods. prototype, this product does fall within scope European Union directive electromagnetic compatibility therefore meet technical requirements directive. Should this evaluation meet specifications indicated User's Guide, returned within days from date delivery full refund. FOREGOING WARRANTY EXCLUSIVE WARRANTY MADE SELLER BUYER LIEU OTHER WARRANTIES, EXPRESSED, IMPLIED, STATUTORY, INCLUDING WARRANTY MERCHANTABILITY FITNESS PARTICULAR PURPOSE. user assumes responsibility liability proper safe handling goods. Further, user indemnifies from claims arising from handling goods. Please aware that products received regulatory compliant agency certified (FCC, etc.). open construction product, user's responsibility take appropriate precautions with regard electrostatic discharge. EXCEPT EXTENT INDEMNITY FORTH ABOVE, NEITHER PARTY SHALL LIABLE OTHER INDIRECT, SPECIAL, INCIDENTAL, CONSEQUENTIAL DAMAGES. currently deals with variety customers products, therefore arrangement with user exclusive. assumes liability applications assistance, customer product design, software performance, infringement patents services described herein. Please read User's Guide and, specifically, Warnings Restrictions notice User's Guide prior handling product. This notice contains important safety information about temperatures voltages. further safety concerns, please contact application engineer. Persons handling product must have electronics training observe good laboratory practice standards. license granted under patent right other intellectual property right covering relating machine, process, combination which such products services might used.
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Copyright 2004, Texas Instruments Incorporated
WARNINGS RESTRICTIONS important operate this within specified input output ranges described User's Guide. Exceeding specified input range cause unexpected operation and/or irreversible damage EVM. there questions concerning input range, please contact field representative prior connecting input power. Applying loads outside specified output range result unintended operation and/or possible permanent damage EVM. Please consult User's Guide prior connecting load output. there uncertainty load specification, please contact field representative. During normal operation, some circuit components have case temperatures greater than 60°C. designed operate properly with certain components above 60°C long input output ranges maintained. These components include limited linear regulators, switching transistors, pass transistors, current sense resistors. These types devices identified using schematic located User's Guide. When placing measurement probes near these devices during operation, please aware that these devices very warm touch. Mailing Address: Texas Instruments Post Office 655303 Dallas, Texas 75265
Copyright 2004, Texas Instruments Incorporated
Read This First
About This Manual
This manual describes function operation MSC1200EVM evaluation module. Throughout this document, abbreviation term evaluation module synonymous with MSC1200EVM. This manual will help quickly accompanying software, that rapidly test evaluate MSC1200. complete circuit description, well schematic diagram bill materials, included.
This manual begins with introductory chapter which describes evaluation module what ready things start testing, suggest read least first chapters. These sections introduce board configure testing device. Later chapters into more detail design access many features.
Information About Cautions Warnings
This book contains cautions.
This example caution statement. caution statement describes situation that could potentially damage your software equipment.
information caution provided your protection. Please read each caution carefully.
Related Documentation From Texas Instruments
following documents provide information regarding Texas Instruments integrated circuits used assembly MSC1200EVM. These documents available from site. last character literature number corresponds document revision, which current time writing this User's Guide. obtain copy following document, visit website http://www.ti.com/ call Texas Instruments Literature Response Center (800) 477-8924 Product Information Center (972) 644-5580. When ordering, identify document both title literature number. Data sheet MSC1200 REG102NA-5, REG102NA-3.3 TUSB3410VF MAX3243CPWR Literature number SBAS289A SBVS024E SLLS519C SLLS350
TPS3837L30DBVT,TPS3838L30DBVT SLVS292 DAC8531E ADS8325IBDGKT SN74AHC1G07DBVR SBAS192 SBAS226A SCES296N
have questions regarding either this evaluation module, information contained accompanying documentation, other data converter evaluation modules devices, please contact Texas Instruments Product Information Center (972) 644-5580 visit site www.ti.com. Additionally, contact data converter applications team firstname.lastname@example.org. Include product name subject heading.
This equipment intended laboratory test environment only. generates, uses, radiate radio frequency energy been tested compliance with limits computing devices pursuant subpart part rules, which designed provide reasonable protection against radio frequency interference. Operation this equipment other environments cause interference with radio communications, which case user expense will required take whatever measures required correct this interference.
trademarks property their respective owners.
Introduction MSC1200 Characteristics System Overview Analog Inputs/Outputs Power Requirements Host Computer Requirements Getting Started Unpacking Default Configuration Quick Start 2.3.1 Connection 2.3.2 Wall Power Connection
Operation Jumpers 3.1.1 JMP1: Power Source Select 3.1.2 JMP2: DVDD Power Source Select 3.1.3 JMP3: TUSB3410 RESET 3.1.4 JMP4: Enable Voltage Output IDAC 3.1.5 JMP5: AVDD Power 3.1.6 JMP6: AINCOM AGND 3.1.7 JMP7: Enable 3.1.8 JMP8: Yellow Enable 3.1.9 JMP9: SPI/I2C Data Connection 3.1.10 JMP10: SPI/I2C Clock Select Switch Configuration 3.2.1 Switch 3.2.2 Reset Switch 3.2.3 Switch Connectors Signals 3.3.1 Type Connector 3.3.2 Serial RS-232 Connector 3.3.3 JMP1, JMP2, JMP5: Power Connectors 3.3.4 Analog Inputs, IDAC Output 3.3.5 TP16: Reference Output/Input 3.3.6 TP1-6: Test Points 3-10
Circuit Description 3.4.1 MSC1200 3.4.2 Programming Host Communication 3.4.3 Power Supply
3-11 3-11 3-11 3-11
Schematic Layout MSC1200 Schematics Component Locations Bill Materials
Wall Mount Power Supply
1-1. MSC1200EVM Overview 2-1. Installation Screen 2-2. Keil uVision2 Display Screen 2-3. Options Target Output Display Screen 4-1. Processor Analog Inputs 4-2. Power Communications Selection 4-3. MSC1200EVM Layout
2-1. Factory Jumper Settings 3-1. Jumper Function Reference 3-2. Port Pinout 3-3. RS-232 Port Pinout 3-4. Unregulated Power Input Connector 3-5. JMP1: Power Source Select 3-6. JMP2: DVDD Power Source Select 3-7. JMP5: AVDD Power 3-8. J13: Analog Inputs 3-9. TP1-6: Test Points 3-10 4-1. Bill Materials
This chapter provides overview MSC1200EVM evaluation module software.
MSC1200 Characteristics System Overview Analog Inputs/Outputs Power Requirements Host Computer Requirements
MSC1200 precision 24-bit delta-sigma analog-to-digital converter with 8051 microcontroller flash memory. eight fully differential single-ended analog input channels. delta-sigma architecture employed MSC1200 enables device achieve bits effective resolution (0.45ppm noise) data rate 10Hz. programmed other data rates that have lower effective resolution. addition standard 8051 peripherals functions, MSC1200 includes 32-bit accumulator, basic SPI/I2C interface, 16-bit output, 4/8K data flash memory, 1,280 bytes data RAM, UART dual DPTR registers. MSC1200 enhanced 8051 core which only requires four clock cycles machine cycle. extra timers well watchdog, brownout voltage detect circuits. Additionally, features power management control hardware breakpoint registers.
block diagram MSC1200 evaluation module shown Figure 1-1.
Figure 1-1. MSC1200EVM Overview
Analog Input Channels/IDAC
RS-232 Driver/Receiver COMM Select
Program Load Switch Reset Switch Switch
During normal operation, programs developed then downloaded into MSC1200 execution. primary development environment Raisonance assembly language programming. There also Basic interpreter available from MDL-Labs.
Analog input supplied through 11-way screw terminal block nine analog inputs (AN0-7, AINCOM) connected MSC1200 through resistor. There also terminal block AGND (GND). inputs have only resistor protect against overvoltage.
When MSC1200EVM uses (RS232) connector communications, power (5.5V 15V) must supplied (and pins JMP1) proper operation. wall mount power supply included with MSC1200EVM provide this power. When using communications, power provided from connector (J1) pins connected JMP1.
Host Computer Requirements
Keil Raisonance software development environments designed running Windows platform (Windows 9x/NT/2K/XP). Minimum operating system requirements are:
IBM-compatible higher 64MB 20MB available hard disk space CD-ROM drive Available RS232 serial port
This chapter will guide through unpacking setting begin using immediately.
Unpacking Default Configuration Quick Start Guide
After unpacking MSC1200EVM kit, verify that have received items listed here:
MSC1200EVM board wall mount power supply 9-pin D-sub male-female serial cable cable Software CD-ROM This user guide
these items missing, contact Texas Instruments receive replacements.
Although much MSC1200EVM operation controlled host some configuration must done directly board, using jumpers (shorting blocks). MSC1200EVM configured factory described Table 2-1:
Table 2-1. Factory Jumper Settings
Jumper Identifier JMP1 JMP2 JMP4 JMP5 JMP6 JMP7 JMP8 JMP9 JMP10 Description power supply source (USB) Digital power supply select (5V) IDAC Load Resistor AVDD Power Source (EVM) AINCOM AGND Connection enable Yellow enable SPI/I2C Select (SPI) SPI/I2C Clock Source Default Setting 1-3,
more information about jumpers, section 3-1.
Once MSC1200EVM been unpacked from shipping container, have verified that board configured shown Table powered tested. There options supplying power EVM: connection through host computer, from external wall mount power adapter.
Connect board host using supplied serial cable. When board properly powered green power good near power connector will glow brightly.
Wall Power Connection
Connect board host using supplied 9-pin serial cable. Then power board plugging wall power adapter into suitable power source plugging barrel plug into barrel jack MSC1200EVM. (You have connect serial cable first; also acceptable apply power board first.) When board properly powered green power good indicator lamps near power connectors will glow brightly. Place CD-ROM into PC's CD-ROM drive. should then installation screen shown Figure 2-1.
Figure 2-1. Installation Screen
Select tools that want install. Keil, Raisonance Wickenhauser compilers. Keil Raisonance tools include complete with debug support. Downloader used load compiled file into MSC1200EVM. Install compilers that wish use. Also, choose Downloader. (Note: running Windows Windows 2000, will need administrator privileges install software.) Follow instructions displayed installer. When software installed, select, Explore also find some example programs \Example Programs\MSC1200 directory. Once programs have been successfully installed, they executed. examine HelloWorld project when Keil uVision2 development system run, will display title screen; will message like that displayed Figure 2-2.
Figure 2-2. Keil uVision2 Display Screen
Refer Keil documentation Help menus more information about interact with Keil software environment. When program compiled, immediately downloaded into MSC1200EVM using download utility program. Project Menu, select Options target Then select output tab. will screen like shown Figure 2-3.
Figure 2-3. Options Target Output Display Screen
Check Create File User Program Then enter download command with parameters window. download.exe file will need current directory Windows path. operands should immediately follow switch character with spaces except between options; example: download.exe /Fconv.hex /B9600 filename, crystal frequency port included, then screen will prompt values. /Ffile file, Keil environment will substitute file (required) /Xfreq /Pport MSC1200 Xtal Clock frequency (required) Comm port (required)
/Bbaud Download baud rate (standard rates), otherwise computed from /Xfreq /Tbaud baud. this flag present, configuration bytes will erased This flag requests terminal window after download; specify
Debug mode. Displays terminal window command interactions. /Epages Specify partial erase flash memory
This chapter describes each function MSC1200EVM, well accompanying software program MSC1200.
Jumpers Switch Configuration Connectors Signals Circuit Descriptions 3-11
Table shows detailed summary each jumper EVM.
Table 3-1. Jumper Function Reference
Reference Designator JMP1 Setting/Pin Function Default Subsection (Information)
supplied supplied from 3.3V DVDD DVDD AGND RESET (TUSB3410) R15-1K Resistor AGND IDAC R18-10 AVDD (MSC1200) AGND AINCOM P3.4/T0 connected DVDD P3.5/T1 connected DVDD (DAC8531) DOUT (ADS8531) P1.2/DOUT P1.3/DIN (MCP_24LC256) (MCP_24LC256) SCLK (U11), DCLK (U13) P3.6/SCK (U12)
JMP1: Power Source Select
MSC1200EVM either voltage regulator source volts. When power connected from external supply (wall mount) communications board routed RS-232 signals associated with (MAX3243). Shorting pins connect filtered version power from USB. Shorting pins connect signal output voltage regulator
JMP2: DVDD Power Source Select
MSC1200 separate analog digital power supplies. JMP2 connect desired voltage source digital power supply DVDD. Shorting pins connect onboard 3.3V regulator; shorting pins connect DVDD
JMP3: TUSB3410 RESET
JMP3 provides method reset TUSB3410. Shorting will reset (TUSB3410).
JMP4: Enable Voltage Output IDAC
jumper between pins JMP4, resistor connected from output IDAC AGND. This provides method convert current from IDAC voltage.
JMP5: AVDD Power
jumper between pins JMP5. which derived from either regulator will filtered used AVDD power. another source AVDD voltage desired, then jumper removed voltage applied
JMP6: AINCOM AGND
shorting pins JMP6, AINCOM signal will connected AGND.
When this jumper inserted, connected port 3.4. other side connected resistor which connects DVDD voltage. This resistor provides current limiting when P3.4 output voltage.
JMP8: Yellow Enable
When this jumper inserted, Yellow connected port 3.5. other side connected resistor which connects DVDD voltage. This resistor provides current limiting when P3.5 output voltage.
JMP9: SPI/I2C Data Connection
This jumper provided configure data lines control. With jumpers pins 2-4, data lines configured communications with P1.2 P1.3. With jumpers 4-6, DOUT lines connected together operation.
3.1.10 JMP10: SPI/I2C Clock Select
When pins connected, clock signal (P3.6/SCK) connected devices. When pins connected, clock signal connected memory device.
Switch miniature pushbutton which, when pressed, shorts (through resistor) Port ground. This INT0 therefore cause interrupt when this goes low.
Switch miniature pushbutton which, when pressed, forces MSC1200 line high. When released, MSC1200 will enter reset cycle. communication becomes disrupted between host board, board unresponsive, pressing RESET will return system normal operation.
Switch miniature pushbutton which, when pressed, forces MSC1200 line high. also pulls PSEN line that when released, will enter reset cycle Program Load mode. Program execution will from on-chip first starts waiting carriage return that perform autobaud function. This mode used load file into flash memory execution.
This section describes various connectors MSC1200EVM.
This connector available with second UART MSC1200. Only lines used. connected connected pin. RS-232 electrical specification, -15V line indicates logic high (mark), +15V indicates logic (space). Line states described here according their logical states. Table describes port pinout configuration.
Table 3-2. Port Pinout
Number Signal Name Name Direction board) Input Bidirectional Function
Power Ground data Data- data Data+ power
Ground return power data
power (500mA max)
Serial RS-232 Connector
host communicates with MSC1200EVM through this connector, which 9-pin female D-shell type, pinned usual manner. Certain flow control lines used special purposes MSC1200EVM board; these described Table 3-3.
Table 3-3. RS-232 Port Pinout
Number Signal Name RS-232 Name Direction board) Output Output Input Input Function
Data Carrier Detect Receive Data Transmit Data Data Terminal Ready Signal Ground Data Ready Request Send
None Serial data output host Serial data input from host Connected reset circuit. high transition this line resets MCU. Ground reference None Connected PROG LOAD function. Used enter serial programming mode. high transition resets into serial programming mode. None None
Power Output Input
Clear Send Ring Indicator
RS-232 electrical specification, -15V line indicates logic high (mark), +15V indicates logic (space). Line states described here according their logical states. non-handshaking RS-232 cable used-that which connects only signal ground-the board still operate normally; however, cannot reset host bootstrap firmware upgrading cannot performed through serial port.
JMP1, JMP2, JMP5: Power Connectors
MSC1200EVM features flexible power supply. Externally generated power, USB, onboard regulator circuitry supplied wall mount adapter used supply power EVM. Furthermore, separated analog digital power supplies powered differently; example, analog power supply powered externally, digital power supply board regulator, same time. (This configured using jumpers JMP2 JMP5.) analog power AVDD always from either regulator from filtered version power, although external power could applied JMP5 provide desired AVDD voltage from 2.7V 5.25V with ground connected TP1. digital power DVDD supplied from JMP2. connected then DVDD will 3.3V from voltage regulator connected then DVDD input This come from either output USB; could supplied from external supply voltage center JMP1. JMP2 could also supplied from external supply voltage with ground connected TP2.
CAUTION: very careful when connecting external power supplies JMP5, JMP2 JMP1. These connectors protected against reversed polarity. they connected backwards (that with reversed polarity), likely that MSC1200EVM will permanently damaged.
Table through Table summarize power options MSC1200EVM.
Table 3-4. Unregulated Power Input Connector
Terminal Name Sleeve Function Positive power supply input Power ground
Table 3-5. JMP1: Power Source Select
Terminal Name Function voltage regulator output AVDD DVDD power
Table 3-6. JMP2: DVDD Power Source Select
Terminal Name Function 3.3V from voltage regulator DVDD from JMP1
Table 3-7. JMP5: AVDD Power
Terminal Name Function from JMP1 AVDD through (C27,C28)
Analog Inputs, IDAC Output
Terminal block main analog input MSC1200EVM. terminals provided each differential inputs MSC1200. Each terminal connected MSC1200 through resistor. Table summarizes analog inputs MSC1200EVM.
Table 3-8. J13: Analog Inputs
Terminal Number Terminal Name AINCOM AGND IDAC MSC1200 Number Function Analog input Analog input Analog input Analog input Analog input Analog input Analog input Analog input Analog common Analog ground IDAC output
TP16: Reference Output/Input
MSC1200EVM onboard 2.5V/1.25V bandgap reference. lowernoise reference source reference with different voltage desired, connected test point TP16. When using external reference, internal reference should shut (using ADCON0) since they same pin. provide bypassing Reference Inputs.
TP1-6: Test Points
test points (summarized Table 3-9) used monitor certain signals board. Consult MSC1200 datasheet information signals connected directly MSC1200.
Table 3-9. TP1-6: Test Points
Test Point Designator TP10 TP11 TP12 TP13 TP14 TP15 TP16 MSC1200 Number MSC1200 Name AGND DGND 100k Pull-up 100k Pull-up X1/CLKI AIN7 AIN6 AIN5 AIN4 AIN3 AIN2 AIN1 AIN0 REFOUT/ REFIN+ Function Analog ground Digital ground Uncommitted Uncommitted Clock input TUSB3410 Clock input MSC1200 Analog input Analog input Analog input Analog input Analog input Analog input Analog input Analog input Reset Internal Reference Output Positive Reference Input
MSC1200EVM combines MSC1200 microcontroller, 24LC256 32Kx8 EEPROM, DAC8531, ADS8325, 22.11842MHz crystal, support serial port, other support circuits evaluation MSC1200. addition, TUSB3410 microcontroller included that MSC1200 serial communications come either RS-232 USB.
MSC1200 (U3) clocked internal oscillator 22.1184MHz crystal. Analog Inputs come from through current-limiting resistors RA3. Programs loaded into bytes flash memory using serial port (RS-232 USB). MSC1200 bytes on-chip. detailed information about MSC1200, consult MSC1200 product datasheet.
Programming Host Communication
Keil Raisonance integrated software environments, combined with Downloader program, provide convenient system program development, download execution. Full source code MSC1200EVM test firmware included ROM.
board receives power through external power connectors USB, individual pins JMP1, JMP2 JMP5. wall power adaptor plugged into communications disabled. Power supplied through regulated voltage regulators which provide +3.3V digital analog supplies. Power supplied through JMP1, JMP2 JMP5 filtered; regulated power correct voltages must supplied these pins. board laid with separate analog digital power supplies. Analog power supplied from regulator USB, external power connected JMP1 JMP5. 3.3V digital power supplied from regulator JMP2. When external power connector used, supplies regulator which then supplies regulator
This chapter contains schematic drawings, layouts bill materials MSC1200EVM board. Note: Board layouts scale. These intended show board laid out; they intended used manufacturing MSC12000EVM PCBs.
MSC1200 Schematics Component Locations Bill Materials
Figure 4-1. Processor Analog Inputs
Figure 4-2. Power Communications Selection
Figure 4-3. MSC1200EVM Layout
Table 4-1. Bill Materials
Value 100R 100R 220R 1.5K 2.7K 100K 100K 10pF 22pF 33pF 220pF 0.01µF 0.1µF C33, C34, C37, C10, 1/10W Chip Resistor 1/10W Chip Resistor 1/16W Chip Resistor Array Ceramic Chip Capacitor, ±0.5pF, Ceramic Chip Capacitor, ±0.5pF, Ceramic Chip Capacitor, ±0.5pF, Ceramic Chip Capacitor, ±0.5pF, Ceramic Chip Capacitor, ±10%, Ceramic Chip Capacitor, ±10%, 1/10W Chip Resistor 1/10W Chip Resistor 1/4W Axial Lead Resistor R16, 1/10W Chip Resistor R12, R13, 1/10W Chip Resistor 1/16W Chip Resistor Array R19, R25, 1/10W Chip Resistor Panasonic Corporation Panasonic Panasonic Yageo Panasonic Panasonic Panasonic Panasonic Corporation Panasonic Panasonic Panasonic Panasonic Panasonic Panasonic 1/10W Chip Resistor Panasonic 1/8W Chip Resistor Panasonic R20, 1/8W Chip Resistor Panasonic Reference Designator Description Vendor Part Number ERJ-6GEY0R00V ERJ-6GEYJ100V ERJ-3GEYJ330V ERJ-3GEYJ330V 742C163101JTR ERJ-3GEYJ221V ERJ-3GEYJ102V MFR-25FBF-1K0 ERJ-3GEYJ152V ERJ-3GEYJ272V ERJ-3GEYJ103V ERJ-3GEYJ104V 742C163104JTR ECJ-1VC1H100D ECJ-1VC1H220J ECJ-1VC1H330J ECJ-1VC1H221J ECJ-1VB1H103K ECJ-1VB1H104K Bill Materials
R10, R11, R23, R21, R28, C25, C14, C12,
Value C17, C18, C19, C20, C21, C22, C23, C24, C28, C29, C30, C35, C36, 12MHz 22.1184 Quartz Crystal Quartz Crystal 250mA, Regulator 3.3V, 250mA, Regulator USB/ Serial Converter Green Yellow Ferrite Bead Core 200mA Schottky Diode 1/4W Axial Lead Resistor 50V, Diode Tantalum Chip Capacitor, ±10% 6.3V Ceramic Chip Capacitor, ±10%,X5R Panasonic Kemet Panasonic Micro Commercial Fairchild Semiconductor Lumex Lumex Lumex Panasonic Citizen Citizen Texas Instruments Texas Instruments Texas Instruments Ceramic Chip Capacitor, ±10%, Panasonic 6.3V Ceramic Chip Capacitor, ±10%, Panasonic Reference Designator Description Vendor ECJ-1VB1H105K Part Number 2.2µF 10µF 47µF ECJ-2FB1A225K ECJ-3YB0J106K T491D476K016AS EXC-CET222U DL4001 BAT54 SML-LX0603GW-TR SML-LX0603IW-TR SML-LX0603YW-TR EXC-ML20A390U HC49US12.000MABJ HC49US22.1184MABJ REG102NA-5 REG102NA-3.3 TUSB3410VF
Table 4-1. Bill Materials (continued)
Table 4-1. Bill Materials (continued)
Value U14, 16-Bit, Digital-Analog Converter 256K EEPROM 16-Bit, Analog-to-Digital Converter Single Gate, Open Drain Buffer MSC1200 Type Socket 2.5mm Power Jack Right Angle Female Connector Position Terminal Block, 3.5mm Spacing Position Terminal Block, 3.5mm Spacing Supervisory Circuit, Reset Supervisory Circuit, Reset High Precision ADC/DAC with 8051 Microcontroller Texas Instruments Texas Instruments Texas Instruments Texas Instruments Microchip Texas Instruments Texas Instruments Texas Instruments Mill-Max Inc. AMP/ Tyco Electronics Shore Technology Shore Technology Quad Buffer w/Tri-State Enable Texas Instruments Single Inverter Texas Instruments RS-232 Transceiver Texas Instruments Reference Designator Description Vendor Part Number MAX3243CPWR SN74LVC1G04DBVR SN74LVC125APW MSC1200Y3PFBT TPS3837L30DBVT TPS3838L30DBVT DAC8531E 24LC256-I/SN ADS8325IBDGKT SN74LVC1G07DBVT 6455915 897-30-004-90-000000 PJ-102B 747844-4 ED555/11DS ED555/2DS
Value JMP1, JMP2, JMP10 JMP3, JMP4, JMP5, JMP6, JMP7, JMP8 Position, Dual Jumper 0.1in Spacing Pushbutton Normally Open Switch Large Loop Test Point Terminal Miniature Test Point Terminal Samtec Panasonic Position Jumper 0.1in Spacing Samtec Position Jumper 0.1in Spacing Samtec Position, Dual Header, 0.1in Spacing Samtec Position, Dual Header, 0.1in Spacing Samtec Reference Designator Description Vendor TSW-105-07-L-D TSW-106-07-L-D TSW-103-07-L-S TSW-102-07-L-S Part Number TSW-103-07-L-D EVQ-PJU04K 5011 5000 JMP9 SW1, SW2, TP1, Keystone Electronics Keystone Electronics TP3, TP4, TP5, TP6, TP7, TP8, TP9, TP10, TP11, TP12, TP13, TP14, TP15, TP16 Shorting Jumper 1/4in .625 4-40 Threaded Standoff Head Machine Screws 4-40 1/2in Phillips SNT-00-BK-TH 1808 0050 Samtec Keystone Electronics Building Fasteners
Table 4-1. Bill Materials (continued)
Wall Mount Power Supply
Wall Mount Power Supply Wall Mount Power Supply
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