Omega ICD TFT Display (Preliminary Draft Copy)

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Transcription:

Omega ICD TFT Display (Preliminary Draft Copy) The Omega ICD is a high performance 6.2 TFT display with integrated data logger. Powered by a dual core 1GHz Nvidia Tegra 2 microprocessor, with an integrated graphics processor to render smooth, feature rich display pages. Custom configurable display layouts High brightness tri colour RGB LEDs 1GB integrated data logger with max logging rate of 1kHz Integrated 100MB/s Ethernet switch for PC Comms and Ethernet expansion 2 HSD outputs with PWM control 4 CAN ports each with 64 message buffers 20 analogue inputs (software configurable) 16 digital inputs 3 serial ports & 1 LIN Bus Specifications Designed for 12 / 24 Volt systems Programmable 5 or 12V Excitations LDR auto brightness control Black anodized rugged aluminium case Compatible with Pi Toolbox Data Analysis Software. Electrical Data Operating voltage Current Consumption Display Logging Digital Inputs CAN Ports Serial Ports 6.5 to 35V 570mA @ 12V 6.2 (16:9) TFT 800 x 480 pixel 16million colours Contrast Ratio 600:1 Luminance 400cd/m 2 hard antiglare coating Viewing angle ±75 Hor ±70 Vert 1GB 1kHz max logging rate 50KB/s total logging bandwidth 4 x high freq (10kHz) inputs suitable for hall effect/vrs/df11i sensors 1 x high freq (10kHz) suitable for hall effect / VRS sensors 1 x Lap beacon 10 x switch inputs 4 x Independent CAN ports Max BAUD rate: 1MBit/s 64 message buffers per port Software selectable 120Ω resistor 3 x bi-directional RS232 ports Max BAUD rate: 115200 Electrical Data Ethernet Outputs Shift/Alarm LEDs LIN Bus Internal Sensors Mechanical Data Size excluding connectors Weight Environmental Operating Temperature Storage Temperature Ordering Information Part Number 1 x 100MB/s PC Setup 1 x 100MB/s Expansion 2 x 1A HSD Output Voltage: VBatt PWM control to 400Hz 16 x RGB LEDs 1 x LIN Bus Master for custom applications Battery Voltage Monitoring Internal Temperature Tri-axis accelerometer ±5G 190 x 116 x 40 mm 640 grams IP65-20 o C to +55 o C -30 o C to +80 o C Omega ICD 01D-032953 www.cosworth.com Page 1 of 5

Dimensions Installation When installing the Omega ICD: Ensure unit is protected against severe vibrations by mounting using supplied AV mounting kit. Also ensure unit is not fouling other structures which may experience severe vibrations. Ensure unit is positioned in an area with an ambient temperature of less than 50 C or with sufficient cooling air flow to prevent over heating. Ensure unit is mounted away from sources of electrical interference Ensure unit is mounted in position where unit will not come into contact with water www.cosworth.com Page 2 of 5

Connector Information C1 - System Connector Connector AS216-35PA Mating Connector AS616-35SA Pin Function Signal Description 1 BAT- Battery supply ve 2 BAT+ Battery supply +ve (shared with pins 2 and 3) 3 BAT+ Battery supply +ve (shared with pins 2 and 3) 4 5/12Vout1 5V or 12V software selectable excitation #1 5 0V Ground 6 LIN Lin interface 7 SW1 Switch Input 1 8 ETHTX+1 Ethernet TX+ for PC comms 9 ETHTX-1 Ethernet TX- for PC comms 10 5/12Vout2 5V or 12V software selectable excitation #2 11 CANH1 CANH for port 1 12 CANL1 CANL for port 1 13 0V Ground 14 5Vout1 5V excitation #1 (shared with pins 14 and 15) 15 5Vout1 5V excitation #1 (shared with pins 14 and 15) 16 SERTX3 Serial Port 3 (RS232 data from ICD) 17 SERRX2 Serial Port 2 (RS232 data to ICD) 18 CANH2 CANH for port 2 19 CANL2 CANL for port 2 20 AI1-PD330R Analogue Input 1 with software selectable 330Ω pull-down 21 SW2 Switch Input 2 22 SW3 Switch Input 3 23 ETHRX+1 Ethernet RX+ for PC comms 24 ETHRX-1 Ethernet RX- for PC comms 25 0V Ground 26 0V Ground 27 AI2-PD330R Analogue Input 2 with software selectable 330Ω pull-down 28 0V Ground 29 AI3-PD330R Analogue Input 3 with software selectable 330Ω pull-down 30 AI4-PD330R Analogue Input 4 with software selectable 330Ω pull-down 31 0V Ground 32 BCN Digital Input 5 Lap Beacon Input 33 DI1 Digital Input 1 - Wheelspeed 34 DI2 Digital Input 2 - Wheelspeed 35 AI5-PD10K Analogue Input 5 with software selectable 10kΩ pull-down 36 AI6-PD10K Analogue Input 6 with software selectable 10kΩ pull-down 37 AI7 Analogue Input 7 38 ETHTX+2 Ethernet TX+ 2 ( connects to internal Ethernet switch) 39 ETHTX-2 Ethernet TX- 2 (connects to internal Ethernet switch) 40 DI3 Digital Input 3 - Wheelspeed 41 DI4 Digital Input 4 - Wheelspeed 42 AI8 Analogue Input 8 43 0V Ground 44 5Vout2 5V excitation #2 (shared with pins 44, 45) 45 5Vout2 5V excitation #2 (shared with pins 44, 45) 46 +12Vout 12V excitation (shared with Sensor connector pins 4, 10, 11, 19, 20, 27) 47 RPM Digital Input 6 - RPM Input 48 USB-GND Debug port USB ground 49 USB-VBUS Debug port USB VBUS 50 SW4 Switch Input 4 51 ETHRX+2 Ethernet RX+ 2 (connects to internal Ethernet switch) 52 ETHRX-2 Ethernet RX- 2 (connects to internal Ethernet switch) 53 USB-D+ Debug port USB data +ve 54 USB-D- Debug port USB data -ve 55 SW5 Switch Input 5 www.cosworth.com Page 3 of 5

C2 - Sensors Connector Connector AS216-35SN Mating Connector AS616-35PN Pin Function Signal Description 1 5/12Vout4 5V or 12V software selectable excitation #4 2 AI17 Analogue Input 17 3 AI20 Analogue Input 20 4 +12Vout 12V excitation (shared with pins 4, 10, 11, 19, 20, 27 and System connector pin 46) 5 0V Ground 6 SW6 Switch Input 6 7 SW7 Switch Input 7 8 0V Ground 9 HSD1 High Side Driver 1 (return current to be taken outside of ICD) 10 +12Vout 12V excitation (shared with pins 4, 10, 11, 19, 20, 27 and System connector pin 46) 11 +12Vout 12V excitation (shared with pins 4, 10, 11, 19, 20, 27 and System connector pin 46) 12 0V Ground 13 AI9 Analogue Input 9 14 AI10 Analogue Input 10 15 AI11 Analogue Input 11 16 N/C Do not connect to this pin, it is reserved for future development. 17 CANH3 CANH for port 3 18 CANL3 CANL for port 3 19 +12Vout 12V excitation (shared with pins 4, 10, 11, 19, 20, 27 and System connector pin 46) 20 +12Vout 12V excitation (shared with pins 4, 10, 11, 19, 20, 27 and System connector pin 46) 21 AI12 Analogue Input 12 22 0V Ground 23 N/C Do not connect to this pin, it is reserved for future development. 24 0V Ground 25 0V Ground 26 0V Ground 27 +12Vout 12V excitation (shared with pins 4, 10, 11, 19, 20, 27 and System connector pin 46) 28 AI15 Analogue Input 15 29 0V Ground 30 AI16 Analogue Input 16 31 HSD2 High Side Driver 2 (return current to be taken outside of ICD) 32 SERTX2 Serial Port 2 (RS232 data from ICD) 33 AI13 Analogue Input 13 34 AI14 Analogue Input 14 35 0V Ground 36 AI18 Analogue Input 18 37 AI19 Analogue Input 19 38 0V Ground 39 5/12Vout3 5V or 12V software selectable excitation #3 40 SERTX3 Serial Port 3 (RS232 data from ICD) 41 SERTX1 Serial Port 1 (RS232 data from ICD) 42 N/C Do not connect to this pin, it is reserved for future development. 43 0V Ground 44 SW8 Switch Input 8 45 SERRX1 Serial Port 1 (RS232 data to ICD) 46 N/C Do not connect to this pin, it is reserved for future development. 47 SERRX3 Serial Port 3 (RS232 data to ICD) 48 CANH4 CANH for port 4 49 SW10 Switch Input 10 50 CUSB-VBUS Colibri module USB VBUS 51 CUSB-GND Colibri module USB ground 52 SW9 Switch Input 9 53 CANL4 CANL for port 4 54 CUSB-D+ Colibri module USB data +ve 55 CUSB-D- Colibri module USB data -ve www.cosworth.com Page 4 of 5

Recycling and Environmental Protection Cosworth Electronics is committed to conducting its business in an environmentally responsible manner and to strive for high environmental standards. Manufacture Cosworth products comply with the appropriate requirements of the Restriction of Hazardous Substances (RoHS) directive (where applicable). Disposal Electronic equipment should be disposed of in accordance with regulations in force and in particular in accordance with the Waste in Electrical and Electronic Equipment directive (WEEE). Battery This equipment contains a rechargable battery (Lithium Vanadium Pentoxide). The equipment may be returned to Cosworth Electronics for a replacement battery. (A charge will be made for this service). Removal of the battery by the user may void any warranty on the equipment. To remove the battery for recycling: Remove the case cover(s). Remove the printed circuit boards from the case. Remove the battery from the printed circuit board. Dispose of the battery in accordance with regulations in force. Declaration of Conformity Required www.cosworth.com Page 5 of 5