DC200P OPTO 22, DC200P Datasheet - Page 16

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DC200P

Manufacturer Part Number
DC200P
Description
SSR, PCB MOUNT, 200VDC, 32VDC, 1A
Manufacturer
OPTO 22
Datasheets

Specifications of DC200P

Control Voltage Type
DC
Input Voltage
3VDC To 32VDC
Load Current
1A
Load Voltage Range
5VDC To 200VDC
Relay Terminals
Through Hole
Brand/series
DC Series
Current, Leakage, Off-state
1 mA
Current, Rating
1 A
Current, Surge
2 A
Dimensions
2.25 in. L x 1.75 in. W x 0.77 in. H
Function
Power
Mounting Type
PCB
Number Of Pins
4
Relay Type
Solid State
Standards
UL, CSA
Temperature, Ambient, Maximum
+100 °C
Temperature, Ambient, Minimum
-40 °C
Timer Type
Off Delay
Voltage, Control
200 VDC
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
PAGE
16
Sample Calculation 2
240-volt,18-amp load, 25 °C ambient air temperature
Model: 240D45
See the last two columns of the table on
the bottom of the table.
Dissipation: 0.9 watts/amp
Thermal resistance: 0.67 °C/watt
Maximum junction temperature: 110 °C
The calculation would be as follows:
Duty Cycle Calculation
When solid-state relays are operated in an on/off mode, it may be advantageous to calculate the RMS value of the current through
the SSR for heat sinking or determining the proper current rating of the SSR for the given application.
Opto 22 • 43044 Business Park Drive • Temecula, CA 92590-3614 • www.opto22.com
SALES 800-321-6786 • 951-695-3000 • FAX 951-695-3095 • sales@opto22.com • SUPPORT 800-835-6786 • 951-695-3080 • FAX 951-695-3017 • support@opto22.com
© 2006–2011 Opto 22. All rights reserved. Dimensions and specifications are subject to change. Brand or product names used herein are trademarks or registered trademarks of their respective companies or organizations.
I
T
T
I
RMS
ON
1
2
= Time current is on
= Time current is off
= RMS value of load current during on period
= RMS value of load or SSR
page 4
for thermal resistance and dissipation values for the 240D45. Also, see the note at
I
RMS
=
(I
This calculation indicates that you should
select a heat sink with a thermal resistance
of less than 4.6 °C/watt.
T
ON
1
)
+ T
2
x T
2
1
Solid-State Relays

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