DRT2-ID32BV-1 Omron, DRT2-ID32BV-1 Datasheet - Page 588

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DRT2-ID32BV-1

Manufacturer Part Number
DRT2-ID32BV-1
Description
32 In Vert MIL Connector PNP
Manufacturer
Omron
Datasheet

Specifications of DRT2-ID32BV-1

Lead Free Status / Rohs Status
Lead free / RoHS Compliant
When using a two-wire sensor with a Slave using transistor inputs, check that the following conditions have
been met.
Failure to meet these conditions may result in operating errors.
Relation between ON Voltage of Slave with Transistor Inputs and
Sensor Residual Voltage
V
V
V
V
It is sometimes possible to satisfy the above equation by adjusting the I/O power supply voltage (V
26.4 V.
Relation between ON Current of Slave with Transistor Inputs
and Sensor Control Output (Load Current)
I
I
I
When I
The bleeder resistor constant can be calculated using the following equation.
R ≤ (V
Power W ≥ (V
OUT
OUT
ON
I
ON
ON
CC
ON
R
:
:
:
:
:
= (V
≤ V
(min) ≤ I
CC
ON
CC
I/O power supply voltage (The allowable power supply voltage range is 20.4 to 26.4 V, so 20.4 V will be
ON voltage for a Slave with Transistor Inputs
Sensor's output residual voltage
Sensor control output (load current)
Slave ON current
V
R
used here to allow for the worst possible conditions.)
2-wire
sensor
CC
F
− V
IN
is smaller than I
:
− V
:
− V
R
ON
CC
)/(I
R
R
Internal residual voltage of a Slave with Transistor Inputs
Input impedance of a Slave with Transistor Inputs
≤ I
− V
OUT
V
− V
R
OUT
V
R
F
CC
(min.) − I
)
)/R
2
/R × 4 [allowable margin]
(max.)
IN
R
OUT
Precautions with Connecting
ON
R
(min), connect a bleeder resistor R.
IN
)
Slave with
Transistor
Input
Two-wire DC Sensors
Appendix F
CC
567
) to

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