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ADN4621 数据表(PDF) 21 Page - Analog Devices

部件名 ADN4621
功能描述  3.75 kV RMS, Dual-Channel LVDS 2.5 Gigabit Isolator
PDF  24 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

ADN4621 数据表(HTML) 21 Page - Analog Devices

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Data Sheet
ADN4620/ADN4621
APPLICATIONS INFORMATION
analog.com
Rev. 0 | 21 of 24
Figure 36. Isolated Serial Communication Example (Isolated Serial Gigabit Ethernet Switch Cascaded Using ADN4621)
MAGNETIC FIELD IMMUNITY
The limitation on the magnetic field immunity of the device is set
by the condition in which the induced voltage in the transformer
receiving coil is sufficiently large, either to falsely set or reset
the decoder. The following analysis defines such conditions. The
ADN4620/ADN4621 is examined in a 1.7 V operating condition
because this operating condition represents the most susceptible
mode of operation for these products.
The pulses at the transformer output have an amplitude greater
than 0.35 V. The decoder has a sensing threshold of about 0.11 V,
therefore establishing a 0.24 V margin in which induced voltages
are tolerated.
The voltage (V) induced across the receiving coil is given by
V = (−dβ/dt)∑πrn2; n = 1, 2, …, N
(1)
where:
dβ is the change in magnetic flux density.
dt is the change in time.
rn is the radius of the nth turn in the receiving coil.
N is the number of turns in the receiving coil.
Given the geometry of the receiving coil in the ADN4620/ADN4621
and an imposed requirement that the induced voltage be, at most,
50% of the 0.11 V threshold at the decoder, a maximum allowable
external magnetic flux density is calculated as shown in Figure 37.
Figure 37. Maximum Allowable External Magnetic Flux Density
For example, at a magnetic field frequency of 1 MHz, the maximum
allowable magnetic field of 1.06 kgauss induces a voltage of 0.055
V at the receiving coil. This voltage is about 50% of the sensing
threshold and does not cause a faulty output transition. If such an
event occurs with the worst case polarity during a transmitted pulse,



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