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IL600 Datasheet(PDF) 5 Page - NVE Corporation

No. de pieza IL600
Descripción Electrónicos  IL600-Series Isolator Evaluation Board
PDF  8 Pages
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Fabricante Electrónico  NVE [NVE Corporation]
Página de inicio  https://www.nve.com/
Logo NVE - NVE Corporation

IL600 Datasheet(HTML) 5 Page - NVE Corporation

  IL600 Datasheet HTML 1Page - NVE Corporation IL600 Datasheet HTML 2Page - NVE Corporation IL600 Datasheet HTML 3Page - NVE Corporation IL600 Datasheet HTML 4Page - NVE Corporation IL600 Datasheet HTML 5Page - NVE Corporation IL600 Datasheet HTML 6Page - NVE Corporation IL600 Datasheet HTML 7Page - NVE Corporation IL600 Datasheet HTML 8Page - NVE Corporation  
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Device Operation
NVE Corporation
(952) 829-9217
iso-apps@nve.com
www.IsoLoop.com
www.nve.com
IL600-Series Isolators are current mode devices. Changes in current flow into the input coil
drive output logic state changes.
The output is high with no signal present. Current flow from In- to In+ switches the output
low. The worst-case logic low threshold current is 5 mA. An input current of at least 8 mA
ensures fail-safe operation, meaning the output powers up in the correct state. The absolute
maximum coil current is 25 mA.
The evaluation board has examples of inputs configured as inverting and non-inverting:
For single-ended operation (that is, the coil current does not reverse), a boost capacitor in
parallel with the current-limiting resistor is used to induce bidirectional coil current. For
standard logic signals with rise times less than 10 ns,
a 16 pF boost capacitor is recommended. The
capacitor should be larger for slower rise time inputs.
The isolators can also be used with differential inputs
as shown in the figure at right. No boost capacitor is
needed if the coil current reverses in this
configuration. Unlike optocouplers, the input current
can be negative without reverse bias protection.
There is no limit to the input voltage as long as the
input current is limited.
+V
V
DD
GND
1
GND
2
-
+
GND
1
2
C
boost
R
limit
+V
V
DD2
GND
1
GND
2
-
+
R
limit
C
boost
GND
1
2
Inverting Configuration
Non-inverting Configuration
+V
V
DD
GND
1
GND
2
-
+
GND
1
2
R
limit
Differential Configuration



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