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Series Datasheet – SHV Reed Relays www.standexmeder.com
Coil Data (at 20°C) Coil Voltage
(VDC)
Coil Resistance
(Ohm)
Pull-In
Voltage
(VDC)
Drop-Out
Voltage
(VDC)
Coil Power
(mW)
Form
Switch
Model Nominal Maximal Typical (±
Maximal Minimal Nominal
1A
05 7.5 220 3.75 0.5 110
12 16 500 8.4 1.8 288
05 7.5 180 3.75 0.5 139
12 16 500 8.4 1.8 288
24 30 2,000 16.4 3.6 288
05 7.5 140 3.75 0.5 179
12 16 500 8.4 1.8 288
24 30 2,000 16.4 3.6 288
-In, Drop-Out Voltage and Coil Resistance will change at rate of 0.4% per °C
SHV Reed Relay Dimensions
Data (at 20°C) Unit
Dielectric Strength Coil/Contact (min.)
-5 4 kVDC
Insulation Resistance Coil/Contact
(min./typ.)
Rh<45%, 200V Test Voltage 1011 / 1012 Ohm
Capacitance Coil/Contact (typ.)
1.2 pF
1/2 sine wave duration 11ms
50 g
Vibration Resistance (max.)
– 2,000 Hz 20 g
Operating Temperature (max.)
Surrounding of the relay’s housing
-40 to 105 °C
Storage Temperature (max.)
Surrounding of the relay’s housing
-40 to 125 °C
Temperature (max.)
260 °C
. Proper drying necessary Fully Sealed
Dimensions in mm [inch]
Tolerances acc. to ISO 2768-m
Version 03
14. Nov. 2017
D. Stastny
Page 2/3
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(with resistive load, for general information only)
1,E+05 1,E+06 1,E+07 1,E+08 1,E+09
<5V/10mA
10V/100mA
20V/500mA
100V/10mA
500V/1mA
900V/1mA
Typical Number of Operations
Load (DC)
KSK-1A85 KSK-1A85 KSK-1A85 KSK-1A85 KSK-1A85 KSK-1A85 KSK-1A85 KSK-1A85
Handing & Assembly Instructions
Switching inductive and/or capacitive loads create voltage
and/or current peaks, which may damage the relay. Protective
circuits need to be used - see our website.
External magnetic fields and magnetic effects, due to adjacent
relays in high density matrices that may influence the relays'
electrical characteristics, must be taken into consideration.
Mechanical shock impacts, e.g. dropping the relays, may cause
immediate or post-installation failure.
Suppressing coil diode can have a negative influence on total
number of switching cycles, especially by switching high voltage
Wave soldering: maximum 260°C / 5 seconds.