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ISL72026ASEHVF датащи(PDF) 21 Page - Renesas Technology Corp

номер детали ISL72026ASEHVF
подробное описание детали  3.3V Radiation Tolerant CAN Transceiver with Listen Mode and Loopback
PDF  28 Pages
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производитель  RENESAS [Renesas Technology Corp]
домашняя страница  http://www.renesas.com
Logo RENESAS - Renesas Technology Corp

ISL72026ASEHVF датащи(HTML) 21 Page - Renesas Technology Corp

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FN8861 Rev. 1.00
Page 21 of 28
Jul 27, 2017
ISL72026ASEH
4. Functional Description
4.
Functional Description
4.1
Overview
The Intersil ISL72026ASEH is a 3.3V radiation tolerant CAN transceiver that is compatible with the ISO11898-2
standard for use in Controller Area Network (CAN) serial communication systems.
The device performs transmit and receive functions between the CAN controller and the CAN differential bus. It
can transmit and receive at bus speeds up to 5Mbps. It is designed to operate across a common-mode range of -7V
to +12V, with a maximum of 120 nodes. The device is capable of withstanding ±20V on the CANH and CANL bus
pins outside of ion beam and ±16V under ion beam.
4.2
Slope Adjustment
The transceiver driver has three programmable rise/fall time options programmed by the resistor value connected
from the RS pin to GND. A 0Ω resistor sets the part in Fast Speed Mode. A resistor of 10kΩ sets the part in
Medium Speed Mode. A resistor of 50kΩ puts the part in Slow Speed Mode. Putting a high logic level on the RS
pin places the part in Listen mode. Refer to “Listen Mode” on page 22 for more information.
4.2.1
Fast Speed Mode
Connecting the RS pin directly to GND (0Ω resistor) results in the fastest driver output switching times, limited
only by the drive capability of the output state. In Fast Speed mode (RS = 0V), the rise/fall times, propagation
delays, and total loop delays are optimized for a data rate of 1Mbps.
4.2.2
Medium Speed Mode
In Medium Speed mode (RS = 10kΩ), the rise/fall times, propagation delays, and total loop delays are
optimized for a data rate of 500kbps. RS = 10kΩ provides for a typical slew rate of 12V/µs. The slower edges in
Medium Speed mode at 500kbps provide better EMI results than running at 500kbps in Fast Speed mode.
4.2.3
Slow Speed Mode
In Slow Speed mode (RS = 50kΩ), the rise/fall times, propagation delays, and total loop delays are optimized
for a data rate of 250kbps. RS = 50kΩ provides for a typical slew rate of 8V/µs. The slower edges in Slow
Speed mode at 250kbps provide better EMI results than running at 250kbps in Medium Speed mode.
4.3
Cable Length
The device can operate according to the ISO11898 specification with a 40m cable and stub length of 0.3m and 60
nodes at 1Mbps. These specifications are greater than the ISO requirement of 30 nodes. The cable type specified is
twisted pair (shielded or unshielded) with a characteristic impedance of 120Ω. Resistors equal to this impedance
must be terminated at both ends of the cable. Keep stubs as short as possible to prevent reflections.
4.4
Cold Spare
To reduce the risk of a single-point failure, use redundant bus transceivers in parallel. In this arrangement, both
active and quiescent devices can be present simultaneously on the bus. The quiescent devices are powered down as
cold spares and do not affect the communication of the other active nodes.
The powered down transceiver (VCC <200mV) has a resistance between the CANH or CANL bus pin to the VCC
supply rail of >480kΩ (max) with a typical resistance >2MΩ. The resistance between CANH and CANL of a
powered-down transceiver is typically 80kΩ. The receiver output (R pin) of a powered-down transceiver
(VCC < 200mV) is internally connected to ground. Therefore, the receiver outputs of an active transceiver and a
cold spare transceiver cannot be connected together in the redundant application.



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