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        Blackfin CM-BF561 Hardware User Manual
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1.  BF561 module                        essen I  Fig  re 2 1  Detailed Block Diagram  m                 4  Figure 3 1  Mechanical outline and Bottom Connectors  bottom view                                     7  Figure 3 2  Side view with connector mounted eene eene nnns 8  Figure 3 3  Recommended footprint and spacing  top view      8  Figure 3 4  Top Overlay  top VIEW  eu a aa 9  Figure 3 5  Schematic Symbol of the CM BF561 Module 10  Figure 3 6  Optional Extension Connector avmbol   14  Figure 3 7  Schematic of reset circuit on the Core Module    15  Figure 4 1  Sample Application with SPI and JTAG Connector  no more pins required         16  Figure 4 2  Image Recognition System with Stereo Cameras           seeeeesssssssssseseeseerereeessssssssss 17  Figure 4 3  Block Diagram  Symmetric Processing Savstem  17  Figure 4 4  Real time Video Processing System            cccccecccccccceceeeeeeeeeeesseeeeeeeeeceeeeeeeeeeeneaaeeas 17  Tables   Table EM Momory MIP E                                                   D  Table 3 1  Core Module Connector Typ  ana 7  Tabl  2 Base Board Connector Kn E 8  Table 29 5  Connector PL Pin Ass  enment    uns ea 12  Table 3 4  Connector P2 Pin Assignment                  sssesssssssssseseseeee nennen nennen nnne nennen nnns 13  Table 3 5  Optional Connector X3 Pin Assignment eene 14  Table 7 1  Production Report CM BF561                     eeeeessssssssseeeeeeneneneene nennen nennen nnns 21  Tables  Ee Product EE 22  Table AE Revicon DB te 23   
2.  Blackfin CM BF561 Hardware User Manual Page 24    
3.  you use write accesses to the flash now you have to unlock the appropriate sectors first by  using the unlock command as shown in the c code segment below     nF lashAddr    unsigned short    FLASH_START_ADDRESS   pa_nSectorAddr     nFlashAddr   0x0050    reset statusregister   asm   ssync         nFlashAddr   0x0060     unlock command   asm   ssync         nFlashAddr   0x00d0     confirm unlock command    Also be aware that the flash 1s a bottom Boot which means the first 4 sectors have 32kByte  then all sectors have 128kByte as in the J3 Flash    This probably won t affect your application at all  since you may have read only code in these  sections anyway     SDRAM    The SDRAM size on V2 is 64MByte  32Mbyte on V1   If you want to be able to use the  upper 32MByte you have to change an entry in the SDRAM BANK CONTROL REGISTER  to enable the upper 32MB yte    For CM BF561 V2  64MB te     EBIU SDBCTL   0x0015   For version I  32MByte     EBIU SDBCTL   0x0013    If 32Mbytes is enough you can leave your V1 x software unchanged     Blackfin CM BF561 Hardware User Manual Page 22    BLUE Tinyboards    D    ECHNIX maximum performance at minimum size    9 Document Revision History    Version   11  Reset circuit added   7    Table 9 1  Revision History         Version _  un  ES  3  ES  6    Blackfin CM BF561 Hardware User Manual Page 23    BLUE Tinyboards    ECHNIX maximum performance at minimum size    A List of Figures and Tables    Figures   Figure 1 1  Main components of the CM
4. 6  Mem  zm  gt  Data  33 93      29 89  JTAG 2  92  30 90  3l   VIR          Figure 3 5  Schematic Symbol of the CM BF561 Module    Blackfin CM BF561 Hardware User Manual Page 10    3 3 Connector X1    1 60     Tinyboards    maximum performance at minimum size    Please mind the mounted pull up and pull down resistors on the Core Module  see the    third column      Pin No  Signal Signal Type   1 RSCLKO   PF28 I O  2 DROPRI    3 TSCLKO   PF29 I O  4 DTOPRI   PF18 I O  5 PF11 Clk_out   I O    1  1       0  1  16 PPI1D10   PF42   2   3   4   5          1  2  27 ARDY       10k pull up   3 DO   mo      Ans   7   8   9   O                     1  2 T      Blackfin CM BF561 Hardware User Manual    Page 11    BLUE Tinyboards    ECHNIX maximum performance at minimum size    43 PPI1D15   PF47 I O  44 PPI1D13   PF45 I O  45 PPI1D11   PF43 I O  46 PPI1D9   PF41 I O  47 PPI1D7 I O  48 PPI1D5 I O  49 PPI1D3 I O  50 PPI1D1 I O  51 GND PWR  52 GND PWR  53 PF4 SPISEL4 TMR4 I O    Table 3 3  Connector P1 Pin Assignment       All pin names of the connectors correspond to the names found in the Blackfin BF561  datasheet from Analog Devices      Mount option R1 and R2   Default is R2 mounted   PF11 at the pin 5 of the connector  unmounting R2 and mounting to  position R1 outputs the buffered clock on pin 5 of the connector   See Figure 3 4     3 4 Connector X2      61 120     Please mind the mounted pull up and pull down resistors on the Core Module  see the  third column      Pin No  Signal Sign
5. 9   DTISEC PE22     15 TFSI PE21   an RES1 PF24     on PFI5 EXTCLK 123                  gt  PFI4 GND  oe PI GND   Ge  133  pui  ap 1              CM BF561 X    Figure 3 6  Optional Extension Connector Symbol    Blackfin CM BF561 Hardware User Manual Page 14    BLUE Tinyboards    ECHNIX maximum performance at minimum size    3 6 Reset circuit    The reset of the flash and the processor are connected to a power monitoring IC  The output  can be used as power on reset for external devices  see Figure 3 7           Exte rnal AS    Figure 3 7  Schematic of reset circuit on the Core Module    Blackfin CM BF561 Hardware User Manual Page 15    Tinyboards    maximum performance at minimum size       4 Application Examples    4 1 Sample Application    In this sample application the Core Module is used as a high performance SPI based co   processor module     ON         G   J ka H  2    D       ON  N    keck        O    ON  Go      IS    ON  CA            nN    QN  ON    E  E  Nn    ON  SI    E  E  A    nN  oo       E       LA                See    ee       SN  CA                  ee       J  O                 Nel  Nel    SPI CS                MOSI  MISO  SCK             33V    SPI INTERFACE    RI  4K7 MHDR1X5       SU BUEN SUE NEESS ENNEN NEEN AE Ho Buta Bu Bn B                      EMU                   TMS  TCK  TRST  TDI  TDO                                              PATIENT                                        Header 7X2 CM BF561 X    JTAG INTERFACE    Figure 4 1  Sample Appli
6. BLUE  ECHNIX           Hardware User Manual       CM BF561 V2 0    Tinyboards from Bluetechnix  www bluetechnix com    Contact    Bluetechnix Mechatronische Systeme GmbH    Waidhausenstr  3 19  A 1140 Vienna  AUSTRIA EUROPE  office   bluetechnix at    http   www bluetechnix com    Document No   100 1211 2 0  Document Revision 11    Date  2009 03 19    Blackfin CM BF561 Hardware User Manual    Table of Contents    E EOC 0  T E E E E A E E I  EL O N                                            ee l  1 2 Differences between Board Versions NIx nennen nnn 2  Lo CS CAS n E 2  1 4 ME SE FC ALO INS E EE E 2  1 5  Burther Ree EN tl OM ernennen 3   PNE  sole E 4  21 curie d ple E Ion NE mme 4  22 BOOEN ONS ee een 4  PS MEN 1   1 10 aii dee 5  24 EE S PE O WE e   2  SUPPI VOC            nenn    212  SUPPI Meet eg 5  2 4 3 Input Clock Frequency                   eseseeeeeeeeeeeeeeeeen nennen nennen nnne nennen irren nes 5  E ME E e UU UU T UT 5  2 4 5 Core Voltage and Frequency Requirements    ieircaiiiie rn betta eire the Eb cub an 5  23 Environmental OCC A OM ern re 6  Zod Tp E 6  232 A ERRORI m mE 6   3  EM BE WEN 7   Su Me ENT It te 7  Sale  POO eer E ea UR UR ARMIN ENIPUS en 8  2  Top Moned Compon E 9   3 2 Schematic Symbol  Signals of Pl and Bi   10   33 WOM CLO A l  RE E 11   S COCO E Ole ee A 12   3 5 Optional Expansion Connector AS3    71 I0i  nennen 14   i FO WT RR RR TR 15   GE eler el 16  4 1 Sample ADDHOAOUOD E 16  ee  e E E EE 17  4 3 High Performance Symmetric Processing Sys
7. Core voltage can be adjusted by setting software registers on the Blackfin  processor  o Core voltage range  0 8     1 2V    Blackfin CM BF561 Hardware User Manual Page 1    BLUE Tinyboards    ECHNIX maximum performance at minimum size      Low Voltage Reset Circuit  o Resets module if power supply goes below 2 93V for at least 140ms    Connector Pl    SPORT 0   JTAG   UART   SPI   PPI 1  Parallel Port Interface 1   GPIO   s    O O O O ES      Connector P2    Data Bus   Address Bus  Control Signals  PPI 2  Parallel Port Interface 2   Power Supply    O QUO O      Expansion Connector P3    o SPORT 1  o PF Flags    1 2 Differences between Board Versions V1 x    Version 2 0 and higher differ from Version 1 x in the amount of RAM and FLASH  Both  versions are size and PIN Compatible  An additional expansion connector P3 has been  provided  The V1 x hardware is not supported any longer  Changes include the removal of the  BGA pads and the increase in RAM memory  2x 32MB Chips  providing a total of 64MB   and FLASH memory  Intel P30 8MB instead of Intel J3 4MB     This document contains information of Version 2 x hardware only  See Chapter 7 for  Software Changes     1 3 Key Features      The CM BF561 is very compact and measures only 36 5x31 5 mm     Allows quick prototyping of product that comes very close to the final design    Reduces development costs  faster time to market     Very cost effective for small and medium volumes    1 4 Target Applications    Generic high performan
8. al Type   61 ABE3 SDQM3  62 A3    63 A5   64 A7   65 A9   66 A11   67 A13   68 A15   69 PPI2SYNC1  70 PPI2SYNC2  71 PPI2D1   72 PPI2D3   73 PPI2D5   74 PPI2D7       Blackfin CM BF561 Hardware User Manual Page 12    75  76  77  78    79  80  81  82       PPI2D9   PF33  PPI2D11   PF35  PPI2D13   PF37  PPI2D15   PF39  GND   AMS1   AWE   NMI O       Tinyboards    maximum performance at minimum size    O  O      10k pull down    83 DO I O  84 D2 I O  87 D8 I O    96   97   98   99  100  101  102  103  104  105  106  107  108  109  110  111  112  113  114  115  116  117  118  119  120    Blackfin CM BF561 Hardware User Manual    D5   D3   D1   RESET   AOE   ARE   AMS2   N C    PPI2D14   PF38  PPI2D12   PF36  PPI2D10   PF34  PPI2D8   PF32  PPI2D6   PPI2D4   PPI2D2   PPI2DO  PPI2SYNC3  PPI2CLK   A14   A12   A10   A8   A6   A4   A2       I O  I O  I O        see chapter 3 6    O    Table 3 4  Connector P2 Pin Assignment    Page 13    BLUE Tinyboards    ECHNIX maximum performance at minimum size    3 5 Optional Expansion Connector X3      1 16     There is an optional expansion connector mounted on the bottom side of the Core Module  He  makes accessible some more GPIO pins via a 16 pol FFC  flat flex cable   See the following  Symbol and Table for detail information     Pin No  Signal Signal Type     121 GND PWR    GND PWR       Table 3 5  Optional Connector X3 Pin Assignment    U1B             SCLKO   oe RSCLK1 PF30   e TSCLK1 PF3 1  27 DRIPRI      4 DRISEC PE25      4 DIIPRIPE23  19
9. cation with SPI and JTAG Connector  no more pins required     Blackfin CM BF561 Hardware User Manual Page 16    BLUE Tinyboards    ECHNIX maximum performance at minimum size    4 2 Stereo Camera System          PPI1 Camera    LEFT  PPI2 Camera  RIGHT ea    Figure 4 2  Image Recognition System with Stereo Cameras                     Communication SPI  Interface UART                         4 3 High Performance Symmetric Processing System    PPI5  PPI6    Quad Port RAM    PPI7  PPI8    Figure 4 3  Block Diagram  Symmetric Processing System          PPI1       PPI2                   Multi Channel Input Output  Multi Channel Input Output    PPI3       PPIA                         4 4 Video Processing System          PPI1 Video ii    Decoder                  Ethernet Don    Bus       PPI2 Video  Encoder                                        SD Card CF Card                   Figure 4 4  Real time Video Processing System    Blackfin CM BF561 Hardware User Manual Page 17    BLUE j Tinyboards    ECHNIX maximum performance at minimum size  4 5 Design Services    Bluetechnix offers custom design services and software development     Blackfin CM BF561 Hardware User Manual Page 18    BLUE Tinyboards    ECHNIX maximum performance at minimum size    5 Software Support  5 1 BLACKSheep    The Core Module is delivered with a pre flashed basic version of the BLACKSheep VDK  multithreaded framework  It contains a boot loader for flashing the Core Module via the serial  port     Please mind the 
10. ce signal processor module      High performance web camera    Robotics  Tiny processor module for mobile robots    Blackfin CM BF561 Hardware User Manual Page 2    BLUE Tinyboards    ECHNIX maximum performance at minimum size  1 5 Further Information    Further information  and document updates are available on the product homepage   http   www bluetechnix com goto cm bf561    Blackfin CM BF561 Hardware User Manual Page 3    BLUE Tinyboards    ECHNIX maximum performance at minimum size  2 Specification    2 1 Functional Specification       Mem  Control  Boot Mode  JTAG                            Power Supply  32 Data Bus   16    Y    Dynamic  Core Voltage 64 MByte  Control  4      BF561 SDRam  up to  600 MHz 2x32MB  Low Voltage Chips  Heset                                                                   Data  amp  Address Bus                      3V3 Power   Reset                   Clock    Clock out PPI 1  PPI 2  SPORTO  UART  SPI  GPIO    Figure 2 1  Detailed Block Diagram          Address Bus                                                 Figure 2 1 shows a detailed block diagram of the CM BF561 module  Beside the SDRAM  control pins the CM BF561 has all other pins of the Blackfin processor at its two main 60 pin  connectors    A special feature of the CM BF561 module is the availability of two parallel port interfaces   PPI  for different applications such as the simultaneous use of one camera and one display  interface  the use of one stereo camera interface  or the 
11. d 1 2V Core Voltage    Operating conditions     o Both core CPUs running at 600MHz  Core Voltage 1 21V  SDRAM 20   bandwidth utilization   120MHz  ca  470mA   o Both core CPUs running at 300MHz  Core Voltage 0 8V SDRAM 20   bandwidth utilization   100MHz  ca  160mA   o One core CPUs running at 500MHz  Core Voltage 1 16V SDRAM 20   bandwidth utilization 9 125MHz  other core idle  ca  330mA    All measurements done at an environmental temperature of 25  C     2 4 5 Core Voltage and Frequency Requirements  Core voltage  1 21V  Core clock frequency  500 MHz  default setting     Be aware that the core voltage set in the VR  CTL register doesn t match exactly with the  effective core voltage measured  There is a difference of about 50mV  which is caused by the  processor itself    Don t operate the core module higher than these ratings without cooling otherwise there 1s a  risk of overheating     Blackfin CM BF561 Hardware User Manual Page 5    BLUE Tinyboards    ECHNIX maximum performance at minimum size  2 5 Environmental Specification    2 5 1 Temperature      Operating at full 500MHz   0 to   70   C    Industrial temperature range on request only    Please be aware to operate the CM BF561 in an environment with enough cooling  If you  mount the core module in an enclosure please be aware that there 1s enough air flow  If an    adequate air flow cannot be guaranteed we recommend the use of a heat sink or to reduce the  core voltage and or the core clock frequency     2 5 2 Humid
12. delivery terms and conditions and prices please  contact Bluetechnix  http   www bluetechnix com      Warnings  Due to technical requirements components may contain dangerous substances     The Core Modules and development  systems contain ESD  electrostatic  discharge  sensitive devices  Electro   static charges readily accumulate on  the human body and equipment and  can discharge without detection   Permanent damage may occur on  devices subjected to high energy    discharges  Proper ESD precautions  are recommended to avoid  performance degradation or loss of  functionality  Unused Core Modules  and Development Boards should be  stored in the protective shipping  package        Blackfin CM BF561 Hardware User Manual    BLACKFIN Products    Core Modules     CM BF533     CM BF537E     CM BF537U     TCM BF537     CM BF561     CM BF527     CM BF548     Development Boards   EVAL BF5xx     DEV BF5xxDA Lite     Blackfin Processor Module powered by Analog Devices single core  ADSP BF533 processor  up to 600MHz  32MB RAM  2MB Flash   120 pin expansion connector and a size of 36 5x31 5mm    Blackfin Processor Module powered by Analog Devices single core  ADSP BF537 processor  up to 600M Hz  32MB RAM  4MB Flash   integrated TP10 100 Ethernet physical transceiver  120 pin expansion  connector and a size of 36 5x31 5mm    Blackfin Processor Module powered by Analog Devices single core  ADSP BF537 processor  up to 600M Hz  32MB RAM  4MB Flash   integrated USB 2 0 Device  120 pin expans
13. e to be used     Matching Connector Manufacturer Manufacturer Part No   X1 X2 Hirose FX8 60S SV    X3 Molex FCC FPC Connector 527451696       Table 3 2  Base Board Connector Types    Info  A Library of the Baseboards module for the Altium Designer 6 x can be obtained from  Bluetechnix upon request     Blackfin CM BF561 Hardware User Manual Page 8    Tinyboards        maximum performance at minimum size    C          1   lt    LI  m  7 ct        Ferse C IJICcEICc7 CI CI  cI u CO ma  E JO Car mg    Figure 3 4  Top Overlay  top view      1  Li   1  LI   1  LI   1  LI   1  LI   1    L    u    See section 2 2 for the Boot Mode settings     The resistors RI and R2 switch between CIk out  R1 mounted  default  and PF11  R2  mounted  on pin 5 of the Core Module     By mounting a OR resistor at R6 you can write protect the on board flash     Blackfin CM BF561 Hardware User Manual Page 9    BLUE Tinyboards    ECHNIX maximum performance at minimum size    3 2 Schematic Symbol  Signals of P1 and P2     ON  m                                  1  60   120  2 62  59 119  SPORTO ae a  58 118  A 64  si 117  ES 65  56 116 Addr   6 66  55 115 Bus  GPIO T 67  54 114  8 68  53 113  9 69    52 12  10 70  5  dH  11 71  50 110  12 WP  49 109    13     lt a  48   108  14 4  JT 107    PPI 1    B  ES DER   E 4 106  16 76  45 105    17 77  A 104      IER 78  411  108    19 79  4 102  20 in 80  4I 101  AN 81 Mem   40 100  GPIO      amp 9  Control  390 99  3 ES  UART         E    SPI BE RE  2  36   96  26 8
14. ent Board with two sockets for any combination  of Blackfin Core Modules  Additional peripherals are available  such  as SD Card  Ethernet  USB host  multi port JTAG including a USB  based Debug Agent  connector for an LCD TFT Display and  connector for a digital camera system  A large on board SPARTAN 3  FPGA and Soft IPs make this board the most flexible Blackfin  development platforms ever developed     Get ready to program and debug Bluetechnix CM BF548 Core  Module with this tiny development platform including a USB Based  Debug Agent  The DEV BF548DA Lite is a low cost starter  development system including VDSP   Evaluation Software  License     The following Extender Boards are available  EXT BF5xx Audio   EXT BF5xx Video  EXT BF5xx Camera  EXT BF5xx Exp  EXT   BF5xx ETH USB  EXT BF5xx AD DA  Additional boards based on  customer request are also available     The BLACKSheep VDK is a multithreaded framework for the  Blackfin processor family from Analog Devices that includes driver  support for a variety of hardware extensions  It is based on the real   tme VDK kernel included within the VDSP   development  environment     LabVIEW embedded support for the CM BF537E  CM BF537U and  TCM BF537 Core Modules is based upon the BLACKSheep VDK  driver Framework     All the Core Modules are fully supported by uClinux  The required  boot loader and uClinux can be downloaded from     http   blackfin uClinux org     Upcoming Products and Software Releases     Keep up to date with a
15. ion connector and a size  of 36 5x31 5mm  will be replaced by CM BF527      Blackfin Processor Module powered by Analog Devices single core  ADSP BF537 processor  up to 500MHz  32MB RAM  8MB Flash   28x28mm  120 pin expansion connector  Ball Grid Array or Border  Pads for reflow soldering  industrial temperature range  40  C to   85  C     Blackfin Processor Module powered by Analog Devices dual core  ADSP BF561 processor  up to 2x 600MHz  64MB RAM  8MB  Flash  120 pin expansion connector and a size of 36 5x31 5mm     The new Blackfin Processor Module is powered by Analog Devices  single core ADSP BF527 processor  key features are USB OTG 2 0  and Ethernet  The 2x60 pin expansion connectors are backwards  compatible with other Core Modules     The new Blackfin Processor Module is powered by Analog Devices  single core ADSP BF548 processor  key features are 64MB DDR  SD RAM 2x100 pin expansion connectors     Low cost Blackfin processor Evaluation Board with one socket for  any Bluetechnix Blackfin Core Module  Additional peripherals are  available  such as an SD Card     Get ready to program and debug Bluetechnix Core Modules with this  tiny development platform including a USB Based Debug Agent  The  DEV BF5xxDA Lite is a low cost starter development system  including VDSP   Evaluation Software License     Blackfin CM BF561 Hardware User Manual    DEV BF5xx FPGA     DEV BF548DA Lite     EXT Boards     Software Support   BLACKSheep     LabVIEW     uClinux     Blackfin Developm
16. ity      Operating  10  to 90   non condensing     Blackfin CM BF561 Hardware User Manual Page 6    BLUE Tinyboards    ECHNIX maximum performance at minimum size  3 CM BF561    3 1 Mechanical Outline    Figure 3 1 shows the bottom view of the mechanical outline of the CM BF561 Core Module   All dimensions are given in millimeters     T       em T    HIT OTT ee    31 00    25 00    15 50    60       x1      rel    6 00    45 HIR    m C     5 20  18 00  36 00    Figure 3 1  Mechanical outline and Bottom Connectors  bottom view     The mechanical outline represents a bottom view of the connectors placed at the bottom of the  core board     The connectors on the CM BF561 are of the following type     MELA Manufacturer Part No     Hirose 3mm height FX8 60P SV 21   Molex FCC FPC Connector 527451696       Table 3 1  Core Module Connector Types    Blackfin CM BF561 Hardware User Manual Page 7    BLUE Tinyboards    ECHNIX maximum performance at minimum size       Figure 3 2  Side view with connector mounted    The total minimum mounting height including receptacle at the motherboard is 6 1 mm     3 1 1 Footprint    The optional 16 pole extension connector may be omitted if there is no need for the additional    GPIO pins  see chapter 3 5    ES 22 20    61  mm DOIT           Q R 0 50 R 0 35  co  a Ii  e  32  gt   ps  1  z  IHRE EE TI 2  x E      S ELI  X    9 30 Wm  36 00 2 50    Figure 3 3  Recommended footprint and spacing  top view     For the base board the following connectors hav
17. ll the changes to the Bluetechnix product line and software updates at     WWW  bluetechnix com    BLACKFIN Design Service    Based on more than five years of experience with Blackfin  Bluetechnix offers development  assistance as well as custom design services and software development     Blackfin CM BF561 Hardware User Manual    BLUE Tinyboards    ECHNIX maximum performance at minimum size    1 Introduction    The CM BF561 is an outstanding high performance and low power dual core processor  module incorporating Analog Devices Blackfin family of processors  The module allows easy  integration into high demanding very space and power limited applications     1 1 Overview    The Core Module CM BF561 consists of the following components           60 Pin Expansion Connector                               Dynami  MM EE 64MByte     8MByte     c 3  Up to SDRam Flash ee  600 MHz CS  Low Voltage    Rese                                     60 Pin Expansion Connector                      Figure 1 1  Main components of the CM BF561 module    Analog Devices Blackfin Processor BF561  o ADSP BF561SKBCZ600    64 MB SDRAM    o SDRAM Clock up to 133MHz  o 2x MT48LC16M16A2BG 75IT D  16Mx16  256Mbit at 3 3V       8 MB of Byte Addressable Flash  o PF48F2000POZBQ0  4Mx16  64Mbit at 3 3V  all 8MByte addressable     o Additional flash memory can be connected through the expansion board as  parallel Flash using asynchronous chip select lines or as a SPI flash       Dynamic Core Voltage Control    o 
18. software development documents   5 2 uClinux  The Core Module is fully supported by the open source platform at    http   blackfin uclinux org  Since the Core Modules are pre flashed with BLACKSheep you  have to flash uBoot first  To flash uBoot you can use the BLACKSheep boot loader     Blackfin CM BF561 Hardware User Manual Page 19    BLUE Tinyboards    ECHNIX maximum performance at minimum size  6 Anomalies    For the latest information regarding anomalies for this product  please consult the product  home page     http   www bluetechnix com goto cm bf561    Blackfin CM BF561 Hardware User Manual Page 20    BLUE Tinyboards    ECHNIX maximum performance at minimum size    7 Production Report for CM BF561  100 1211     MT4SLCI6MI6A2BG 75IT D ion  V2 0  R20 1000 to  R20 2999    V2 0  22 008  N   RAM  MTASLCIOMI6A2BG 7SIND  Micron              Table 7 1  Production Report CM BF561    Blackfin CM BF561 Hardware User Manual Page 21    BLU T Tinyboards    ECHNIX maximum performance at minimum size  8 Product Changes    For the latest product change information please consult the product web page at     http   www bluetechnix com goto cm bf561    Changes    V 1 x to V2 0 64 Mbit Flash  64MB RAM instead of 32Mbit Flash and 32MB RAM  Additional optional bottom FFC connector with 13 Processor pins    Table 8 1  Product Changes       How do these changes affect the Software developed for V1 x Modules   Flash chip     The flash chip has changed on CM BF561 V2 to an Intel P30 Flash   If
19. tem                   essere 17  A Video Processing Syste nennen 17  d SEET 18    Blackfin CM BF561 Hardware User Manual    J DONE E EE 19    Il BLACE DE re           19   32 WU Maser see tte ses ae scien E sh ern sutra dpe eee oh eaten daar 19  6  Sorel E 20  7   Production Report for CM BF561  OO III     21  EE 22  9 Document EEN iere 23   WEE e TE util                                    24    Blackfin CM BF561 Hardware User Manual    Edition 2007 02     Bluetechnix Mechatronische Systeme GmbH 2007  All Rights Reserved     The information herein is given to describe certain components and shall not be considered as  a guarantee of characteristics   Terms of delivery and rights of technical change reserved     We hereby disclaim any warranties  including but not limited to warranties of non   infringement  regarding circuits  descriptions and charts stated herein     Bluetechnix makes and you receive no warranties or conditions  express  implied  statutory or  in any communication with you  Bluetechnix specifically disclaims any implied warranty of  merchantability or fitness for a particular purpose     Bluetechnix takes no liability for any damages and errors causing of the usage of this board   The user of this board is responsible by himself for the functionality of his application  He is  allowed to use the board only if he has the qualification  More information is found in the  General Terms and Conditions  AGB      Information  For further information on technology  
20. use of two separate ports for  bandwidth hungry ADC and DAC interfaces    Dynamic voltage control allows the reduction of power consumption to a minimum by  adjusting the core voltage and the clock frequency dynamically in accordance to the required  processing power    A low voltage reset circuit guarantees a power on reset and resets the system when the input  voltage drops below 2 93V     2 2 Boot Mode    By default the Boot Mode is set to 01  BMODEO pin   HIGH  BMODEI pin   LOW   In this  configuration the BMODEO pin and the BMODEI pin have an on board pull down resistor   Figure 3 4  resistor RIO and R11 are mounted  and BMODEO has an additional OR resistor  connected to 3 3V  Figure 3 4  resistor R8 is mounted   For setting the BMODEI pin HIGH a  OR resistor must be mounted at R9  For Boot Mode 00 remove R8     Blackfin CM BF561 Hardware User Manual Page 4    BLUE j Tinyboards    ECHNIX maximum performance at minimum size    2 3 Memory Map    Memory Type Start Address End Address Size Comment  FLASH    0x20000000 Ox207FFFFF 8MB Intel PFA8F2000P0ZBOO    SDRAM Ox00000000 OxO3FFFFFF 64MB 32Bit Bus  2x Micron  MT48LC16M16A2BG       Table 2 1  Memory Map      Please be aware that you have to unlock the flash before starting an erase process     2 4 Electrical Specification  2 4 1 Supply Voltage    3 3V DC    10   2 4 2 Supply Voltage Ripple    100mV peak to peak 0 20 MHz  2 4 3 Input Clock Frequency      25MHz  2 4 4 Supply Current    Maximum supply current  550mA at 3 3V an
    
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