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FCC Interference Statement for Class B EVM devices

This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to part 15 of the FCC Rules.
These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment
generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause
harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If
this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and
on, the user is encouraged to try to correct the interference by one or more of the following measures:

• Reorient or relocate the receiving antenna.

• Increase the separation between the equipment and receiver.

• Connect the equipment into an outlet on a circuit different from that to which the receiver is connected.

• Consult the dealer or an experienced radio/TV technician for help.

For EVMs annotated as IC – INDUSTRY CANADA Compliant

This Class A or B digital apparatus complies with Canadian ICES-003.

Changes or modifications not expressly approved by the party responsible for compliance could void the user’s authority to operate the
equipment.

Concerning EVMs including radio transmitters

This device complies with Industry Canada licence-exempt RSS standard(s). Operation is subject to the following two conditions: (1) this
device may not cause interference, and (2) this device must accept any interference, including interference that may cause undesired
operation of the device.

Concerning EVMs including detachable antennas

Under Industry Canada regulations, this radio transmitter may only operate using an antenna of a type and maximum (or lesser) gain
approved for the transmitter by Industry Canada. To reduce potential radio interference to other users, the antenna type and its gain should
be so chosen that the equivalent isotropically radiated power (e.i.r.p.) is not more than that necessary for successful communication.

This radio transmitter has been approved by Industry Canada to operate with 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
greater than the maximum gain indicated for that type, are strictly prohibited for use with this device.

Cet appareil numérique de la classe A ou B est conforme à la norme NMB-003 du Canada.

Les changements ou les modifications pas expressément approuvés par la partie responsable de la conformité ont pu vider l’autorité de
l'utilisateur pour actionner l'équipement.

Concernant les EVMs avec appareils radio

Le présent appareil est conforme aux CNR d'Industrie Canada applicables aux appareils radio exempts de licence. L'exploitation est
autorisée aux deux conditions suivantes : (1) l'appareil ne doit pas produire de brouillage, et (2) l'utilisateur de l'appareil doit accepter tout
brouillage radioélectrique subi, même si le brouillage est susceptible d'en compromettre le fonctionnement.

Concernant les EVMs avec antennes détachables

Conformément à la réglementation d'Industrie Canada, le présent émetteur radio peut fonctionner avec une antenne d'un type et d'un gain
maximal (ou inférieur) approuvé pour l'émetteur par Industrie Canada. Dans le but de réduire les risques de brouillage radioélectrique à
l'intention des autres utilisateurs, il faut choisir le type d'antenne et son gain de sorte que la puissance isotrope rayonnée équivalente
(p.i.r.e.) ne dépasse pas l'intensité nécessaire à l'établissement d'une communication satisfaisante.

Le présent émetteur radio a été approuvé par Industrie Canada pour fonctionner avec les types d'antenne énumérés dans le manuel
d’usage et ayant un gain admissible maximal et l'impédance requise pour chaque type d'antenne. Les types d'antenne non inclus dans
cette liste, ou dont le gain est supérieur au gain maximal indiqué, sont strictement interdits pour l'exploitation de l'émetteur.

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Содержание TMDXRM42HDK

Страница 1: ...RM42 Hercules Development Kit HDK User s Guide Literature Number SPNU567 September 2012...

Страница 2: ...20 Pin Compact TI JTAG Header 10 2 2 3 CAN Interface 10 2 2 4 J4 XDS100V2 USB JTAG Interface 11 2 2 5 P1 5 V to 12 V Input 11 2 2 6 Virtual COM Port Interface 12 2 2 7 Daughter Card Interface 12 2 3 L...

Страница 3: ...Map 7 1 2 Power Supply Selection 7 1 3 Power Test Points 7 2 1 Connectors on HDK Board 9 2 2 20 Pin ARM JTAG Header 10 2 3 20 Pin CTI JTAG Header 10 2 4 Expansion Connector P2 J9 Right TopView 13 2 5...

Страница 4: ...nventions The RM42 HDK will sometimes be referred to as the HDK Program listings program examples and interactive displays are shown in a special italic typeface Here is a sample program listing equat...

Страница 5: ...microcontroller Integrated USB JTAG emulator XDS100v2 External JTAG headers ARM 20 pin and TI compact 20 pin CTI One DIP switch to select pull up or pull down for JTAG nTRST Two CAN transceivers SN65H...

Страница 6: ...everything needed to develop and run applications for RM42 microcontrollers including Cables and Accessories 12 V power supply with power adapters for US or Europe Type A to mini B USB cable for usin...

Страница 7: ...000 0x0840 7FFF RAM ECC 1 8 Power Supply The HDK board operates from either 5V supplied from the USB connector J4 or 5 V to 12 V supplied from the power supply connected to the main power input P1 a 2...

Страница 8: ...HDK board a 4 9 x 4 3 inch 125 x 109 mm six layer printed circuit board that is powered by either 5 V USB power from an external 5 V to 12 V only power supply or by USB VBUS Figure 2 1 shows the layo...

Страница 9: ...Compact TI 20 pin JTAG header J9 33x2 2mm Exp P1 SPI1 ADC nPORRST J10 33x2 2mm EXP P2 SPI2 nRST ECLK nERROR J11 40x2 2mm EXP P3 GIO CAN LIN EQEP NHET SPI3 J15 Micro SD slot SD card P1 2 5mm 12 V In 2...

Страница 10: ...pin screw terminal blocks J1 and J2 are used to interface with 12 the DCAN bus The pinouts for this connector are shown in Figure 2 3 H means CAN High CAN H and L means CAN Low CAN L CAN Bus terminat...

Страница 11: ...ed as SCI The CPLD is also programmed to route the JTAG signals to the MCU There is a circuitry to detect an external JTAG emulator If an external emulator is plugged onto the header J3 and J5 the DS1...

Страница 12: ...SB interface via a standard PC serial emulation port 2 2 7 Daughter Card Interface The HDK provides expansion connectors that can be used to accept plug in daughter cards The daughter card allows user...

Страница 13: ...2 GND EXP_12V 3 4 GND SPI1ENA NHET23 NHET30 68 5 6 67 SPI1CLK SPI1CS 1 93 7 8 73 SPI1CS 0 SPI1CS 3 NHET26 39 9 10 27 SPI1CS 2 NHET19 NHET20 SPI1SIMO 65 11 12 66 SPI1SOMI GND 13 14 GND NC 15 16 NC NC...

Страница 14: ...NC EXP_12V 65 66 GND Table 2 5 Expansion Connector P1 J9 Left TopView Signal Name Pin Number Number Number Pin Number Signal Name EXP_12V 1 2 GND ECLK 84 3 4 82 nERROR nRST 81 5 6 NC NC 7 8 NC NC 9 10...

Страница 15: ...A 5 EXTCLKIN 10 23 24 9 GIOA 4 GIOA 7 NHET29 18 25 26 12 GIOA 6 NC 27 28 NC NC 29 30 NC NC 31 32 NC NC 33 34 NC GND 35 36 GND NC 37 38 19 NHET1 0 NC 39 40 22 NHET1 2 NC 41 42 25 NHET1 4 NC 43 44 26 NH...

Страница 16: ...RROR Red D9 XDS100V2 SCI RX Blue D8 XDS100V2 SCI TX Blue D10 XDS100V2 PWRENn Blue D1 JTAG TDI Blue DS1 External JTAG Emulator Used Blue DS5 VCC_1V2 Blue DS3 VCC_5V Blue DS2 VCC_3V3 Blue DS4 VCC_12V Bl...

Страница 17: ...eset signal from window watchdog will also assert a warm reset to MCU The System Reset can be invoked by pushing nRST button or by RESET signals from XDS100 CPLD ARM JTAG SREST and CTI JTAG SREST 2 8...

Страница 18: ...problems or need additional information regarding the embedded emulation please refer to the XDS100 USB wiki on the TI web site The URL for this site is http tiexpressdsp com index php title XDS100 Co...

Страница 19: ...ncy energy and has not been tested for compliance with the limits of computing devices pursuant to part 15 of FCC or ICES 003 rules which are designed to provide reasonable protection against radio fr...

Страница 20: ...na type and its gain should be so chosen that the equivalent isotropically radiated power e i r p is not more than that necessary for successful communication This radio transmitter has been approved...

Страница 21: ...roduct only after you obtained the license of Test Radio Station as provided in Radio Law of Japan with respect to this product or 3 Use of this product only after you obtained the Technical Regulatio...

Страница 22: ...property damage personal injury or death If there are questions concerning these ratings please contact a TI field representative prior to connecting interface electronics including input power and in...

Страница 23: ...ncy energy and has not been tested for compliance with the limits of computing devices pursuant to part 15 of FCC or ICES 003 rules which are designed to provide reasonable protection against radio fr...

Страница 24: ...na type and its gain should be so chosen that the equivalent isotropically radiated power e i r p is not more than that necessary for successful communication This radio transmitter has been approved...

Страница 25: ...roduct only after you obtained the license of Test Radio Station as provided in Radio Law of Japan with respect to this product or 3 Use of this product only after you obtained the Technical Regulatio...

Страница 26: ...property damage personal injury or death If there are questions concerning these ratings please contact a TI field representative prior to connecting interface electronics including input power and in...

Страница 27: ...egulatory and safety related requirements concerning its products and any use of TI components in its applications notwithstanding any applications related information or support that may be provided...

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