OFF-THE-SHELF-PRODUCTSElectronic control units (ECU)
FAAR-PRONERGY offers a range of electronic control units that can be programmed using with Matlab Simulink and the Model Based Design tool suite. They are based on motor, hydraulic and general-purpose control units from Visteon, Bosch and Continental. They have been adapted to Model Based Design software. These modules offer the combination of flexibility of prototypes with the robustness of mass-produced automotive controllers.

Products

ECM S12 24
- Microprocessor : 64Mhz Freescale S9S12
- Inputs : 11 Outputs : 6
- Communications : 1 CAN
- Operating Voltage : 8 – 16 VDC
- Operating Temperature: -40° to 105° C
GCM S12 24
- Microprocessor : 24 MHz Freescale MC9S12DT128
- Inputs : 10
- Outputs : 5
- Communications : 2 CAN
- Operating Voltage : 8 -16 VDC
- Operating Temperature: -40° to 105° C

CM0711
- Microprocessor : 64 MHz Freescale MPC5604
- Inputs : 9
- Outputs : 11 Communications : 2 CAN,
- Operating Voltage : 5.5-36 VDC
- Operating Temperature: -40°C to 85°C

ECM 555 48
- Microprocessor : 40 MHz Freescale MPC 555
- Inputs : 16 to 22
- Outputs : 14
- Communications : 2 CAN
- Operating Voltage : 8 – 16 VDC
- Operating Temperature: -40° to 85° C
ECM 563 48
- Microprocessor : 40 MHz Freescale MPC 563
- Inputs : 16 to 24
- Outputs : 13
- Communications : 2 CAN
- Operating Voltage : 8 – 16 VDC
- Operating Temperature: -40° to 105° C
GCM 563 48
- Microprocessor : 56 MHz Freescale MPC 563
- Inputs : 20 Outputs : 11
- Communications : 3 CAN
- Operating Voltage : 8 – 32 VDC
- Operating Temperature: -40° to 85° C
HCM 563 48
- Microprocessor : 40 MHz Freescale MPC 563
- Inputs : 26
- Outputs : 13
- Communications : 2 CAN
- Operating Voltage : 8 – 16 VDC
- Operating Temperature: -40° to 105° C

BCM48
Microprocessor : 120 MHz FreFreescale SPC5646C
Inputs : 9
Outputs : 12
Communications : 4 CAN, 4 LIN, 1 Ethernet
Operating Voltage : 6-26 VDC
Operating Temperature: -40°C to 85°C

GCM48-2104
Microprocessor : 64 MHz
Inputs : 17
Outputs : 9
Communications : 6 CAN / 3 LIN
Operating Voltage : 8 – 16 V VDC
Operating Temperature: -40° to 105° C

ES 12
- Microprocessor : 200 MHz MPC5744
- Inputs : 19
- Outputs : 14
- Communications : 4 CAN, 1LIN,CANA
- Operating Voltage : 9 – 32 VDC
- Operating Temperature: -40°C to 100°C

ECM S12X 70
- Microprocessor : 50 MHz Freescale MC9S12X EP100
- Inputs : 24
- Outputs : 20
- Communications : 2 CAN, 1 RS485
- Operating Voltage : 6.5 – 16 VDC
- Operating Temperature: -40° to 105° C
ECM 5642 70
- Microprocessor : 80 MHz Freescale MPC 5634
- Inputs : 22
- Outputs : 26
- Communications : 2 CAN
- Operating Voltage : 8 – 32 VDC
- Operating Temperature: -40° to 105° C

ET 32
- Microprocessor : 64 MHz NXP S9S08
- Inputs : 31
- Outputs : 12
- Communications : 3 CAN,
- Operating Voltage : 9-32 VDC
- Operating Temperature: -40°C to 85°C

GCM 5607
- Microprocessor : 64 MHz Dual NXP MPC5607B & S12GN32
- Inputs : 32
- Outputs : 22
- Communications : 4 CAN, 1 LIN
- Operating Voltage : 9-16 VDC
- Operating Temperature: -40°C to 105°C*

RCM 5743
- Microprocessor : 200 MHz NXP MPC5743R
- Inputs : 36
- Outputs : 19
- Communications : 4 CAN, 1 LIN
- Operating Voltage : 8-32 VDC
- Operating Temperature: -40°C to 105°C

ECM 5554 112
- Microprocessor : 80 MHz Freescale MPC 5554
- Inputs : 43
- Outputs : 35 Communications : 3 CAN, 1 RS485
- Operating Voltage : 9 – 16 VDC
- Operating Temperature: -40° to 105° C
GCM 5554 112
- Microprocessor : 80 MHz Freescale MPC 5554
- Inputs : 51
- Outputs : 27
- Communications : 3 CAN, 1 RS485
- Operating Voltage : 9 – 16 VDC
- Operating Temperature: -40° to 105° C

ECM 564 112 OH (SECM)
- Microprocessor : 120 MHz MPC5642 (Flash) and MPC5644 (Cal)
- Inputs : 50
- Outputs : 39
- Communications : 3 CAN,
- Operating Voltage : 8 – 32 VDC
- Operating Temperature: -40° to 105° C

RCM 58NN 112
- Microprocessor : 200 MHz ST SPC58NN84C3
- Inputs : 45
- Outputs : 40
- Communications : 5 CAN, 1LIN, 1 Ethernet, 4 Sent
- Operating Voltage : 8 – 32 VDC
- Operating Temperature: -40° to 105° C

EH 22
- Microprocessor : 200 MHz Infineon Aurix TC275
- Inputs : 38
- Outputs : 36
- Communications : 4 CAN, 1 LIN, 1 FlexRay
- Operating Voltage : 9 – 32 VDC
- Operating Temperature: -40° to 85° C

ET 32
- Microprocessor : 64 MHz NXP S9S08
- Inputs : 31
- Outputs : 12
- Communications : 3 CAN
- Operating Voltage : 9 – 32 VDC
- Operating Temperature: -40° to 85° C

VCU – EV 22 A57
- Microprocessor : 200 MHz MC33CFS6500
- ISO26262 ASIL-D integrity level
- Inputs : 43
- Outputs : 38
- Communications : 3 CAN
- Operating Voltage : 9 – 32 VDC
- Operating Temperature: -40° to 110° C
VCU – EV22 B56
- Microprocessor : 64 MHz NXP MPC5606
- Inputs : 37
- Outputs : 28
- Communications : 5 CAN, 1 LIN
- Operating Voltage : 9 – 32 VDC
- Operating Temperature: -45° to 110° C
VCU – EV22 97
- Microprocessor : 300 MHz 32-bit Infineon TC297TP
- Inputs : 39
- Outputs : 36
- Communications : 6 CAN, 1 LIN, 2 FlexRay
- Operating Voltage : 12 – 24 VDC
- Operating Temperature: -40° to 80° C

FCU – EV 22 B01
- Microprocessor : 300 MHz MC33CFS6500
- Inputs : 36
- Outputs : 31
- Communications : 4 CAN, 1 LIN
- Operating Voltage : 12 – 24 VDC
- Operating Temperature: -40° to 80° C

ECM196
- Microprocessor : 260MHz Infineon Tricore TC1793
- Inputs : 50
- Outputs : 84
- Communications : 3 CAN, 1 LIN
- Operating Voltage : 6-16 VDC
- Operating Temperature: -40°C to 105°C
GCM196
- Microprocessor : 260MHz Infineon Tricore TC1793
- Inputs : 45
- Outputs : 45
- Communications : 3 CAN, 1 LIN
- Operating Voltage : 6-16 VDC
- Operating Temperature: -40° to 105° C
FAAR controllers and the corresponding MBD software offer an alternative to traditional programming languages.
Programming languages:
FAAR PRONERGY programming language is eMBD (Enhanced Model Based Design) where BSW (Basic SoftWare) is a ready to use library to let our customer free to develop their applications.
Basic SoftWare includes Input/Output control, Basic CAN communication with .dbc files, Wake Up on signal or on CAN, Triggers, Memory management, calibrations, look up table and more.
FAAR PRONERGY also proposes advanced libraries for Engine Control (Electric or Internal Combustion), CAN and CANFD communication, Data acquisition, Closed loop control to save time and money to provide and optimized time to market.
The development interface is all graphical to help to understand the code, share it, maintain, simulate the behavior, update and debug your application.
We offer the following types of controllers: