S2 Series, Reed Relays

Results:
15
Manufacturer
Series
Contact Rating (Current)
Must Release Voltage
Coil Voltage
Must Operate Voltage
Coil Current
Switching Voltage
Operate Time
Release Time
Operating Temperature
Termination Style
Mounting Type
Contact Form
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Contact Material
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Results remaining15
Applied Filters:
S2
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ImageProduct DetailPriceAvailabilityECAD ModelFeaturesOperating TemperatureMounting TypeContact FormSeriesCoil VoltageCoil CurrentCoil TypeSeal RatingMust Operate VoltageMust Release VoltageContact Rating (Current)Operate TimeTermination StyleSwitching VoltageRelease TimeContact Material
S2-03P
RELAY REED SPST 250MA 3V
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-40°C ~ 85°C
Through Hole
SPST-NO (1 Form A)
S2
3VDC
12 mA
Non Latching
-
2.25 VDC
0.5 VDC
250 mA
0.1 ms
Axial
140VAC, 200VDC - Max
0.07 ms
Rhodium (Rh)
S2-12P
RELAY REED SPST 700MA 12V
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-40°C ~ 85°C
Through Hole
SPST-NO (1 Form A)
S2
12VDC
12 mA
Non Latching
-
9 VDC
2 VDC
700 mA
1 ms
Axial
300VAC, 350VDC - Max
0.5 ms
Rhodium (Rh)
S2-24P
RELAY REED SPST 700MA 24V
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-40°C ~ 85°C
Through Hole
SPST-NO (1 Form A)
S2
24VDC
24 mA
Non Latching
-
19 VDC
4 VDC
700 mA
1 ms
Axial
300VAC, 350VDC - Max
0.5 ms
Rhodium (Rh)
S2-05EU
RELAY REED SPST 1A 5V UL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-40°C ~ 85°C
Through Hole
SPST-NO (1 Form A)
S2
5VDC
31.3 mA
Non Latching
-
3.7 VDC
1 VDC
1 A
1 ms
Axial
300VAC, 350VDC - Max
0.5 ms
Rhodium (Rh)
S2-12EU
RELAY REED SPST 1A 12V UL
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-40°C ~ 85°C
Through Hole
SPST-NO (1 Form A)
S2
12VDC
12 mA
Non Latching
-
9 VDC
2 VDC
1 A
1 ms
Axial
300VAC, 350VDC - Max
0.5 ms
Rhodium (Rh)
S2-24EU
RELAY REED SPST 1A 24V UL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-40°C ~ 85°C
Through Hole
SPST-NO (1 Form A)
S2
24VDC
24 mA
Non Latching
-
19 VDC
4 VDC
1 A
1 ms
Axial
300VAC, 350VDC - Max
0.5 ms
Rhodium (Rh)
S2-05P
RELAY REED SPST 700MA 5V
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-40°C ~ 85°C
Through Hole
SPST-NO (1 Form A)
S2
5VDC
31.3 mA
Non Latching
-
3.7 VDC
1 VDC
700 mA
1 ms
Axial
300VAC, 350VDC - Max
0.5 ms
Rhodium (Rh)
S2-03PU
RELAY REED SPST 250MA 3V UL
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-40°C ~ 85°C
Through Hole
SPST-NO (1 Form A)
S2
3VDC
12 mA
Non Latching
-
2.25 VDC
0.5 VDC
250 mA
0.1 ms
Axial
140VAC, 200VDC - Max
0.07 ms
Rhodium (Rh)
S2-05PU
RELAY REED SPST 700MA 5V UL
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-40°C ~ 85°C
Through Hole
SPST-NO (1 Form A)
S2
5VDC
31.3 mA
Non Latching
-
3.7 VDC
1 VDC
700 mA
1 ms
Axial
300VAC, 350VDC - Max
0.5 ms
Rhodium (Rh)
S2-12PU
RELAY REED SPST 700MA 12V UL
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-40°C ~ 85°C
Through Hole
SPST-NO (1 Form A)
S2
12VDC
12 mA
Non Latching
-
9 VDC
2 VDC
700 mA
1 ms
Axial
300VAC, 350VDC - Max
0.5 ms
Rhodium (Rh)
S2-24PU
RELAY REED SPST 700MA 24V UL
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-40°C ~ 85°C
Through Hole
SPST-NO (1 Form A)
S2
24VDC
24 mA
Non Latching
-
19 VDC
4 VDC
700 mA
1 ms
Axial
300VAC, 350VDC - Max
0.5 ms
Rhodium (Rh)
S2-24E
RELAY REED SPST 1A 24V
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-40°C ~ 85°C
Through Hole
SPST-NO (1 Form A)
S2
24VDC
24 mA
Non Latching
-
19 VDC
4 VDC
1 A
1 ms
Axial
300VAC, 350VDC - Max
0.5 ms
Rhodium (Rh)
S2-05E
RELAY REED SPST 1A 5V
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-40°C ~ 85°C
Through Hole
SPST-NO (1 Form A)
S2
5VDC
31.3 mA
Non Latching
-
3.7 VDC
1 VDC
1 A
1 ms
Axial
300VAC, 350VDC - Max
0.5 ms
Rhodium (Rh)
S2-03E
RELAY REED SPST 3V
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-40°C ~ 85°C
Through Hole
SPST-NO (1 Form A)
S2
3VDC
12 mA
Non Latching
-
2.25 VDC
0.5 VDC
-
0.1 ms
Axial
140VAC, 200VDC - Max
0.07 ms
Rhodium (Rh)
S2-12E
RELAY REED SPST 1A 12V
Contact us
Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
-40°C ~ 85°C
Through Hole
SPST-NO (1 Form A)
S2
12VDC
12 mA
Non Latching
-
9 VDC
2 VDC
1 A
1 ms
Axial
300VAC, 350VDC - Max
0.5 ms
Rhodium (Rh)

About  Reed Relays

Reed relays are electromechanical switches that utilize an electromagnetic coil to control one or more flexible ferromagnetic metal reed switches. Unlike traditional relays that rely on a mechanical armature, reed relays directly actuate the reed switches using the magnetic field generated by the coil. This design offers several advantages, including low coil current requirements and fast operate and release times. The use of flexible reed switches enables reed relays to achieve swift and efficient switching of electrical circuits. When the electromagnetic coil is energized, it creates a magnetic field that causes the reed switch to make or break contact, allowing for the control of electrical currents. This efficient operation makes reed relays suitable for applications requiring rapid and precise switching, such as in telecommunications, test and measurement equipment, and medical devices. Some reed relays feature dual coils, providing latching capability. This means that once the relay is set (latched) by applying a pulse to one coil, it remains in that state until another pulse is applied to the second coil to reset it. This latching feature adds versatility to reed relays, allowing them to maintain their switched state without continuous power consumption. Reed relays are available in various contact forms, including double-pole double-throw (DPDT), double-pole single-throw (DPST), single-pole double-throw (SPDT), and single-pole single-throw (SPST). These different contact forms offer flexibility in how electrical circuits can be configured and controlled, catering to diverse application requirements. Due to their compact size, low power consumption, and fast switching capabilities, reed relays are favored in applications where space is limited, energy efficiency is essential, and rapid response times are critical. Their reliability and durability make them well-suited for use in environments where precision and consistent performance are paramount. In summary, reed relays are electromechanical switches that utilize an electromagnetic coil to directly control flexible ferromagnetic metal reed switches. They offer low coil current requirements, fast operate and release times, and in some cases, latching capability through dual coils. With a variety of contact forms available, reed relays provide efficient and reliable switching solutions for a wide range of applications, particularly those demanding rapid and precise control of electrical circuits.