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MSP430-CCRF User Manual
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1. MSP430 CCRE development board User s manual Pb free Green boards produced by Olimex are ROHS compliant Revision C July 2013 OLIMEX Ltd rights reserved Page 1 INTRODUCTION MSP430 CCRF is development board with CC430F5137IRGZ microcontrol ler by Texas Instruments This ultra low power microcontroller has integrated CC1101 RF transceiver The board has also UEXT which can be modified as device or host MSP430 CCRF can communicate with other boards with integrated CC1101 RF transceiver via radio connection BOARD FEATURES Microcontroller CC430F5137IRGZ JTAG UEXT PWR jack for 2 x 1 5V AA batteries On board voltage regulator On bard pcb antenna Supported radio frequencies bands 868 915 MHz software selectable By default 868 MHz Maximal permissible distance between two MSP430 CCRF boards depends on RF chip s output power data transfer rate and the selected radio frequency band For more information see the table below User button Status LED RTC crystal Extension pin holes for most of the microcontroller pins FR 4 1 00 mm soldermask component print Dimensions 78 49 x 39 12mm 3 09 x 1 54 RF Frequency Output Power Data Rate Measured Distance 868MHz 10dBm 1 2kBaud 155m 868MHz 10dBm 38 4kBaud 110m 868MHz 10dBm 250kBaud 85m 915MHz 10dBm 1 2kBaud 140m 915MHz 10dBm 38 4kBaud 100m 915MHz 10dBm 250kBaud 60m This measurements were taken vi
2. Peripherals Main Memory Total 32kB flash Size Main Interrupt OOFFFFh to OOFF80h vector Main code Bank 0 32kB memory OOFFFFh to 008000h RAM 4kB ize Sect 1 2kB 002BFFh to 002400h Sect 0 2kB 0023FFh to 001CO00h 128 B Device 001AFFh to 001A80h Descriptor 128B 001A7Fh to 001A00h Info A 128 0019FFh to 0019808 Info B 128 B Information 00197Fh to 001900h memory flash Info C 128 B 0018FFh to 001880h Info D 128 B 00187Fh to 001800h BSL 3 512 0017FFh to 001600h BSL 2 512 B Bootstrap loader 0015FFh to 001400h BSL memory flash BSL 1 512B 0013FFh to 001200h BSL 0 512B 0011FFh to 001000h 4 KB OOOFFFh to Oh 1 All memory regions not specified here are vacant memory and any access to them causes a Vacant Memory Interrupt Page 7 SCHEMATIC L1 RST SWBTDIO 40 pes LED TEST SWBTCK 39 cs FBOB05 600R 200mA 201209 601 3 3V 38 PJ S TCK WT vere TDI ad 2 AVSS c TO 38 PU TDI TCLK P5 0 XIN IL PJ 0 TDO a1 P5 1 XOUT LED 13 P1 0 PM_RFGDOO QCT32768 6pF Es UCBO MISO SCL 4 1 _ 2 DVCC 33V 2 UCBO MOSUSBA 4 P 2 PM UCBOSOMI PM UCBOSCL DVCC stea UCBO GLK 9 21 3 PM_UCBOSIMO PM_UCBOSDA DVCC a5 5 5 5 5 al gt P14 P1 4 PM UCBOCLK PM CAOSTE LI x EE iN P1 5 2 UCAORXD EM_UCAOSOMI XSS TEETE E _ STE 4
3. 8 UCAOTXD PM UCAOSIMO 5 s 217 1 7 UCAOCLK PM UCBOSTE ROSC Lk 12s L2 GUARD 3 3V R17 P2 0 ex ES 3 2 CBOUT1 PM 1 AVCC RF FB0805 800R 200MA 201209 601 33k P2 10 7 P2 PM TA1CCROA CBT AT AVCC RF Be P226 P2 2 PM_TA1CCR1A CB2 A2 AVCC RF BUT P226 2 3 TA1CCR2A CB3 A3 AVCC RF 5 3 z 8 C26 P246 AT _P2 4 PM_RTCCLK CB4 A4 VREF VEREF P2 5Q P2 5 PM_SVMOUT CBS A5 VREF VEREF Te Je Je Je Je Je 1 5pF 0 25pF COG 2 6 24 P2 6 PM_ACLK RF_ATEST 8 5 8 18 18 T 330R P2 70 P2 7 PM_MODCLK PM_DMAEO 13 L6 L7 C34 21 TRW SHELUREIGNUPAHTOGSTT T T8nHISIHELURETSNIFAUTIGBSTO TEHPHELIRET2NIFAV 08577 P30Q 2T P amp 0 PM CBOUTO PM TAOCLK mE lt 100nF P3 1Q 16 23 1 PM_TAOCCROA ll 025 En P3 2Q 18 P3 2 PM TAOCCR1A 1 0 25 29 9 P3 3Q 17 3 TAOCCR2A XOUT Q3 L4 C27 P34Q 16 3 4 TAOCCR3A RF XIN Z C23 IVY 3 3pFH 0 25pF COG P3 5Q 15 P3 5 PM TAOCCR4A RIZ SEKT EN 4 BpFI 0 25pF COG P3 60 14 P3 9 PM RFGDO R BIAS gt Co E 3 79 VCORE Il 470nF E C28 100pF 5 COG CC430F51 371 RGZ TSX 3225 26MHz 1 0PPM 9pF 3 2x2 5mm SMD RP AME MEET us e i i imm eS a ee Kr e E E RR IE eens m ANT m Po POWER PPLY iiio eas lo C30 R13 18 BSLTX UCAOTXD 3 3V TAISWELJREI2NJFA 198377 R4 Q 100pF
4. be held liable Shipping and handling charges are not refundable We are not responsible for any shipping charges of merchandise being returned to us or returning working items to you The full text might be found at https www olimex com wiki GTC Warranty for future reference Page 18
5. 5 4 COG R5 Rej dH D1 C32 C31 pm 4 7kL1 47k 4 NE NE VR UEXT 2 MCP1702T 3302E MB UEXT 3 N PWR R14 OR Board Mounted UEXT 4 UEXT 5 UCBO MISO SCL UEXT 8 UCBO MOSI SDA R11 NA DE E MSP430 CCRF rev UEXT 10 1 OLIMEX LTD PLOVDIV BULGARIA 2013 SW SCLR9 oR PR Beare Mounted BH10R SW SDAR8 https www olimex com SD TCO805SURK RED GY This hardware design by Olimex LTD is licensed under a Creative Commons Attribution ShareAlike 3 0 Unported License BOARD LAYOUT BUT PWR Pin holes 122 TT Z lt 3 BE 48232 0 FdSH n30 H02 X3HI 10 HHH pa c 29 C MC MC gt M M c JTAG Pin holes POWER SUPPLY CIRCUIT MSP430 CCREF can take power from External power supply via PWR connector 4 12 VDC JTAG The programmed board power consumption is about 25 mA with all peripherals enabled RESET CIRCUIT MSP430 CCRE reset circuit includes R2 330Q R1 33k C1 2 2nF JTAG pin 11 and CC430F5137IRGZ pin 40 RST SWBTDIO CLOCK CIRCUIT Quartz crystal Q1 32 768 kHz is connected to CC430F5137IRGZ pi
6. a using RF Connection toggle LED demo software loaded at two alike MSP430 CCRF boards Page 2 ELECTROSTATIC WARNING The MSP430 CCRF board is shipped in protective anti static packaging The board must not be subject to high electrostatic potentials General practice for working with static sensitive devices should be applied when working with this board BOARD USE REQUIREMENTS Cables The cable you will need depends on the programmer debugger you would use If you use MSP JTAG TINY V2 MSP JTAG ISO MK2 you will need USB A B cable If you use MSP JTAG you will need LPT cable Hardware Programmer debugger MSP JTAG TINY V2 MSP JTAG ISO MK or other compatible programming debugging tool PROCESSOR FEATURES 5 430 board use microcontroller CC430F5137IRGZFBD100 with these features True System on Chip SoC for Low Power Wireless Communication Applications Wide Supply Voltage Range 1 8 V to 3 6 V Ultra Low Power Consumption CPU Active Mode AM 160 LA MHz Standby Mode LPM3 RTC Mode 2 0 uA Off Mode LPM4 RAM Retention 1 0 Radio in RX 15 mA 250 kbps 915 MHz MSP430 System and Peripherals 16 Bit RISC Architecture Extended Memory up to 20 MHz System Clock Wake Up From Standby Mode in Less Than 6 us Flexible Power Management System with SVS and Brownout Unified Clock System with FLL 16 Bit Timer TAO Timer_A with Five Capture Compare Registers 16 Bit Timer TA1 Timer_A wi
7. e would not compile under IAR for MSP430 v5 xx due to incompatibility between versions The code is available at the MSP430 CCRF web page at OLIMEX LTD web site Blinking Led sourced by DCO Blinking Led sourced by RTC Blinking Led sourced by RTC and USART Echo Toggle LED when BUT is pressed RF Connection press BUT RF Connection toggle LED Page 15 ORDER CODE MSP430 CCRE assembled and tested board How to order You can order to us directly or by any of our distributors Check our web https www olimex com for more info Revision history Board s revision Manual s revision Rev A May 2011 Rev B Mart 2013 1 Added P_OUT P_IN jumper to solve power short circuits when the board is powered from the JTAG 2 The RTC capacitors C7 and C8 have been removed and the internal CCRF capacitors have been used instead 3 The drill size under U1 is changed from 1 5mm to 0 6mm 4 Removed arrows from the bottom silk 5 Power supply white print changed from 3 12VDC to 4 12VDC Rev A June 2011 in BOARD FEATURES added Supported radio frequencies bands Maximal permissible distance between two 5 430 boards RTC crystal and Not typical power jack changed to PWR jack for 2 x 1 5V batteries Rev B November 2011 BOARD FEATURES added is table which describes maximal permissible distance between two MSP430 CCRF boards versus different RF settings SCHEMATIC is updated to
8. last version with changed C22 and C23 values from 15pF to 10pF AVAILABLE DEMO SOFTWARE RF Connection_ press BUT to send a packet and toggle LED when packet is Page 16 received is changed to RF Connection press BUT RF Connection toggle LED was added Rev C November 2013 SCHEMATIC revision B of the schematic added updated supported debuggers list improved the spelling of the document added more info about revisions expanded warranty and support page Page 17 For product support hardware information and error reports mail to support olimex com Note that we are primarily a hardware company and our software support is limited Please consider reading the paragraph below about the warranty of Olimex products All goods are checked before they are sent out In the unlikely event that goods are faulty they must be returned to OLIMEX at the address listed on your order invoice OLIMEX will not accept goods that have clearly been used more than the amount needed to evaluate their functionality If the goods are found to be in working condition and the lack of functionality is a result of lack of knowledge on the customers part no refund will be made but the goods will be returned to the user at their expense All returns must be authorized by an RMA Number Email support olimex com for authorization number before shipping back any merchandise Please include your name phone number and
9. n 44 P5 0 XIN and pin 43 P5 1 XOUT Quartz crystal Q3 26 MHz is connected to CC430F5137IRGZ pin 25 RF_XIN and pin 26 RF XOUT Page 9 JUMPER DESCRIPTION JA all 1 1 m This jumper when is in position 1 2 UEXT pin 3 signal TX is connected to CC430F5137IRGZ pin 5 signal BSLTX UCAOTXD when the jumper is in position 2 3 UEXT pin 3 signal TX is connected to CC430F5137IRGZ pin 6 signal BSLRX UCAORXD Default state is shorted in position 2 3 J2 41 2 Lu This jumper when is in position 1 2 UEXT pin 4 signal RX is connected to CC430F5137IRGZ pin 6 signal BSLRX UCAORXD when the jumper is in position 2 3 UEXT pin 4 signal RX is connected to CC430F5137IRGZ pin 5 signal BSLTX UCAOTXD Default state is shorted in position 2 3 When jumpers J1 and J2 are shorted in position 1 2 the board is configured as host and can be used as host for some of our module boards When these jumpers are shorted in position 2 3 the board is configured as device and can be used as module board P OUT P IN This jumper P IN jumper declares if the board has to be powered externally RS via the JTAG debugger or it is internally powered Default state is shorted in position 2 3 It is safer to switch the OUT position when you do not want to provide power via the JTAG debugger INPUT OUTPUT Status Led with name LED red connected to CC430F5137IRGZ pin 13 P1 0 PM RFGDOO User button with name BUT connec
10. order number in your email request Returns for any unaffected development board programmer tools and cables permitted within 7 days from the date of receipt of merchandise After such time all sales are considered final Returns of incorrect ordered items are allowed subject to a 10 restocking fee What is unaffected If you hooked it to power you affected it To be clear this includes items that have been soldered to or have had their firmware changed Because of the nature of the products we deal with prototyping electronic tools we cannot allow returns of items that have been programmed powered up or otherwise changed post shipment from our warehouse All returned merchandise must be in its original mint and clean condition Returns on damaged scratched programmed burnt or otherwise played with merchandise will not be accepted All returns must include all the factory accessories which come with the item This includes any In Circuit Serial Programming cables anti static packing boxes etc With your return enclose your PO Also include a brief letter of explanation of why the merchandise is being returned and state your request for either a refund or an exchange Include the authorization number on this letter and on the outside of the shipping box Please note It is your responsibility to ensure that returned goods reach us Please use a reliable form of shipping If we do not receive your package we will not
11. ss M Bus Standard EN 13757 4 2005 Support for Asynchronous and Synchronous Serial Receive Transmit Mode for Backward Compatibility With Existing Radio Communication Protocols Page 4 USCI Program SRAM Timer Channel Channel 12 A r 1 _ IIrDA SPI 6 ext ia 4intch 851 30 1 5 3 represents two instantiations of Timer A the first instantiation having 5 and the second instantiation having 3 capture compare registers and PWM output generators respectively Page 5 BLOCK DIAGRAM DMA Controller 3 Channel CPUXV2 incl 16 Registers EEM S 3 1 JTAG Interface Spy Bi Wire XOUT Unified ACLK Clock Comp B ADC12 System SMCLK MAB MDB Flash RAM 32kB 4kB CRC16 Mapping Controller MDB MAB Power Mgmt TAO TA1 LDO 5 3 CC SVM SVS Registers Registers Brownout 1 2 Ports P1 P2 2x8 l Os PA 1x16 I Os USCI 0 UART IrDA SPI USCI BO SPI 12C Ports Ports P3 P5 1x8 I Os 1x2 I Os AES128 Security En De cryption RF XIN RF XOUT Packet Handler Digital RSSI Carrier Sense PQI LOI CCA Sub 1GHz Radio CC1101 CPU Interface Frequency Synthesizer RF ANALOG TX amp RX RF P MEMORY ORGANIZATION 430 5137 1
12. ted to CC430F5137IRGZ pin 12 P1 1 PM RFGDO2 Page 10 CONNECTORS DESCRIPTION TAG 2 4 6 8 10 12 14 Pin Signal Name Pin Signal Name 1 TDO 2 JTAG power supply 3 TDI 4 VCC 5 TMS 6 Not Connected 7 TCK 8 TEST SWBTCK 9 GND 10 Not Connected 11 RST SWBTIDIO 12 BSLTX UCAOTXD 13 Not Connected 14 BSLRX UCAORXD PWR 1 2 Pin Signal Name du 1 VIN 2 GND 11 UEXT Signal Name GND SCL SDA UCBO MISO SCL UCBO MOSI SDA UCBO_CLK UCBO STE Page 12 Pin holes Pin Signal Name Pin Signal Name 0 2 6 2 6 1 TDI 2 7 2 7 2 TMS P3 0 P3 0 3 P3 1 P3 1 TEST TEST SWBTCK P3 2 P3 2 RST RST SWBTDIO P3 3 P3 3 3 3V VCC P3 4 P3 4 GND GND P3 5 P35 2 5 2 5 P3 6 P3 6 2 4 2 4 P3 7 P3 7 2 3 2 3 1 0 2 2 2 2 1 1 BUT P21 SW SDA 1 2 UCBO_MISO SCL P20 SW SCL 1 3 UCBO_MOSI SDA 1 7 STE P14 UCBO_CLK P1 6 BSLTX UCAOTXD P1 5 BSLRX UCAORXD Page 13 i ee ux 2 M MECHANICAL DIMENSIONS 78 49 mm Page 14 AVAILABLE DEMO SOFTWARE There is a number of example for MSP430 CCRF compatible with IAR Embedded Workbench for MSP430 v4 21 Unfortunately it is possible that the cod
13. th Three Capture Compare Registers Hardware Real Time Clock Two Universal Serial Communication Interfaces USCI_AO supporting UART IrDA SPI USCI_BO supporting SPI Page 3 12 Bit A D Converter With Internal Reference Sample and Hold and Autoscan Features Comparator 128 bit AES Security Encryption Decryption Coprocessor 32 Bit Hardware Multiplier Three Channel Internal DMA Serial On board Programming No External Programming Voltage Needed Embedded Emulation Module EEM High Performance Sub 1 GHz RF Transceiver Core Wide Supply Voltage Range 2 0 V to 3 6 V Frequency Bands 300 MHz to 348 MHz 389 MHz to 464 MHz and 779 MHz to 928 MHz Programmable Data Rate From 0 6 kBaud to 500 kBaud High Sensitivity 117 dBm at 0 6 kBaud 111 dBm at 1 2 kBaud 315 MHz 196 Packet Error Rate Excellent Receiver Selectivity and Blocking Performance Programmable Output Power Up to 12 dBm for Supported Frequencies 2 FSK 2 GFSK and MSK Supported as well as OOK and Flexible ASK Shaping Flexible Support for Packet Oriented Systems On Chip Support for Sync Word Detection Address Check Flexible Packet Length and Automatic CRC Handling Support for Automatic Clear Channel Assessment CCA Before Transmitting for Listen Before Talk Systems Digital RSSI Output Suited for Systems Targeting Compliance With EN 300 220 Europe and FCC CFR Part 15 US Suited for Systems Targeting Compliance With Wirele
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