CAN bus
g338222
Figure 50
1.
DIAG connector
2.
Hour meter
The machine controllers communicate with each other on a Controller Area
Network (CAN) bus system. Using this network allows full integration of all the
different electrical components of the machine, allowing them to operate together
as one. The CAN bus system reduces the number of electrical components and
connections used on the machine and allows the number of wires in the wire
harness to be significantly reduced.
The InfoCenter, lithium-ion battery controller (BMS - Battery Management
System) and TEC are on the CAN bus. Additional controllers may be added
to the CAN bus in the future through the expansion port connector and/or the
telematics connector.
Each of the components that is controlled by the CAN bus link only needs four (4)
wires to operate and communicate to the system: CAN High, CAN Low, power
and ground. The key switch needs to be in the ON position for the components
on the network to be activated.
Two specially designed, twisted wires form the CAN bus. These wires provide
the data pathways between the components on the network. The wiring term for
these cables are CAN High and CAN Low. The CAN bus wires are red/white
(CAN High) and black/white (CAN Low). At each end of the CAN bus is a 120
ohm termination resistor; refer to
CAN-bus Terminator Resistor (page 5–38)
.
Testing the CAN bus
1. Ensure that the cutting-unit-drive lever is in the D
ISENGAGE
position, park the
machine on a level surface, release the clutch bail, engage the service and
parking brake, rotate the key switch to O
FF
, and remove the key; refer to
the
Operator's Manual
.
2. Disconnect the battery pack; refer to
Disconnecting and Connecting the
Lithium Battery Pack (page 5–3)
.
3. The Toro DIAG connector is located inside the upper cover assembly; refer
to
Electrical System: Testing the Electrical Components
Page 5–24
Greensmaster
®
eFlex 1021
20248SL Rev C
Содержание 04861
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