ADM3054 AD [Analog Devices], ADM3054 Datasheet - Page 16

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ADM3054

Manufacturer Part Number
ADM3054
Description
5 kV rms Signal Isolated High Speed CAN Transceiver with Bus Protection
Manufacturer
AD [Analog Devices]
Datasheet

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ADM3054
ELECTRICAL ISOLATION
In the ADM3054, electrical isolation is implemented on the
logic side of the interface. Therefore, the device has two main
sections: a digital isolation section and a transceiver section
(see Figure 29). The driver input signal, which is applied to the
TxD pin and referenced to the logic ground (GND
across an isolation barrier to appear at the transceiver section
referenced to the isolated ground (GND
input, which is referenced to the isolated ground in the tran-
sceiver section, is coupled across the isolation barrier to appear
at the RxD pin referenced to the logic ground.
iCoupler Technology
The digital signals transmit across the isolation barrier using
iCoupler technology. This technique uses chip scale transformer
V
DD2SENSE
RxD
TxD
DIGITAL ISOLATION
iCoupler
ADM3054
V
DD1
®
2
). Similarly, the receiver
GND
ENCODE
DECODE
DECODE
1
LOGIC SIDE
Figure 29. Digital Isolation and Transceiver Sections
1
), is coupled
ISOLATION
BARRIER
BUS SIDE
Rev. 0 | Page 16 of 20
ENCODE
DECODE
ENCODE
windings to couple the digital signals magnetically from one
side of the barrier to the other. Digital inputs are encoded into
waveforms that are capable of exciting the primary transformer
winding. At the secondary winding, the induced waveforms are
decoded into the binary value that was originally transmitted.
Positive and negative logic transitions at the input cause narrow
(~1 ns) pulses to be sent to the decoder via the transformer. The
decoder is bistable and is, therefore, set or reset by the pulses,
indicating input logic transitions. In the absence of logic transitions
at the input for more than ~1 μs, a periodic set of refresh pulses,
indicative of the correct input state, are sent to ensure dc correct-
ness at the output. If the decoder receives no internal pulses for
more than about 5 μs, the input side is assumed to be unpowered
or nonfunctional, in which case the output is forced to a default
state (see Table 9).
REFERENCE
CAN TRANSCEIVER
VOLTAGE
SHUTDOWN
V
THERMAL
DD2
D
SENSE
VOLTAGE
R
GND
V
DD2
2
CANH
CANL
V
REF
Data Sheet

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