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Main
Range of ProductHarmony Analog
Product or Component TypeVoltage/current converter
Analogue input typeVoltage 0…300 V AC/DC 50/60 Hz
Voltage 0…50 V AC/DC 50/60 Hz
Voltage 0…500 V AC/DC 50/60 Hz
Analogue output typeCurrent 0…20 mA <= 500 Ohm switchable
Current 4…20 mA <= 500 Ohm switchable
Voltage 0…10 V >= 100 kOhm switchable
Complementary
Protection TypeShort-circuit protection on output
Reverse polarity protection on output
Overvoltage protection on output (+/- 30 V)
abnormal analogue output voltage-15…0 V no input or input wire broken
abnormal analogue output current-30…0 mA 0…20 mA no input or input wire broken
4…30 mA 4…20 mA no input or input wire broken
[Us] rated supply voltage24 V DC +/- 20 %, isolated
Current consumption<= 70 mA voltage output
<= 90 mA current output
Local signallingFor power ON LED (green)
Measurement error+/- 5 % of full scale20 °C temporary performance degradation when subject to electromagnetic interference)
Repeat accuracy+/- 0.2 % full scale 20 °C
+/- 0.6 % full scale 60 °C
Temperature coefficient200 ppm/°C
Clamping Connection Capacity1 x 2.5 mm²
2 x 1.5 mm²
Tightening torque5.31…9.74 lbf.in (0.6…1.1 N.m)
markingCE
Surge withstand0.5 kV 1.2/50 µs IEC 61000-4-5
[Ui] Rated Insulation Voltage2 kV
Fixing modeBy screws (mounting plate)
Clip-on (35 mm symmetrical DIN rail)
Safety reliability dataMTTFd = 21.6 years
B10d = 20000
Net Weight0.33 lb(US) (0.15 kg)
Environment
StandardsIEC 60584-1
IEC 60947-1
Product CertificationsUL
GL
CSA
IP degree of protectionIP20 terminal block)
IP50 housing)
Fire resistance1562 °F (850 °C) IEC 60695-2-1
1562 °F (850 °C) UL
Shock resistance50 gn 11 ms IEC 60068-2-27
Vibration resistance5 gn 10…100 Hz)IEC 60068-2-6
Resistance to electrostatic discharge6 kV in contact)IEC 61000-4-2 level 3
8 kV in air)IEC 61000-4-2 level 3
Resistance to fast transients1 kV IEC 61000-4-4 on input-output)
2 kV IEC 61000-4-4 on power supply)
Disturbance radiated/conductedCISPR 11
CISPR 22 group 1 – class B
Ambient Air Temperature for Storage-40…185 °F (-40…85 °C)
Ambient Air Temperature for Operation32…122 °F (0…50 °C) mounting side by side
32…140 °F (0…60 °C) 2 cm spacing
Pollution degree2 IEC 60664-1
Ordering and shipping details
CategoryUS10CP222375
Discount Schedule0CP2
GTIN3389110108910
ReturnabilityNo
Country of originID
Packing Units
Unit Type of Package 1PCE
Number of Units in Package 11
Package 1 Height1.06 in (2.7 cm)
Package 1 Width3.35 in (8.5 cm)
Package 1 Length3.23 in (8.2 cm)
Package 1 Weight4.06 oz (115.0 g)
Unit Type of Package 2S02
Number of Units in Package 247
Package 2 Height5.91 in (15 cm)
Package 2 Width11.81 in (30 cm)
Package 2 Length15.75 in (40 cm)
Package 2 Weight13.38 lb(US) (6.07 kg)
Unit Type of Package 3P06
Number of Units in Package 3752
Package 3 Height29.53 in (75 cm)
Package 3 Width23.62 in (60 cm)
Package 3 Length31.50 in (80 cm)
Package 3 Weight231.49 lb(US) (105 kg)
Product Description

Schneider Electric Push Button

Frequently Asked Questions

Push button switches can be classified as either normally open (NO) or normally closed (NC). Normally open (NO) switches, also known as "OFF" position switches, complete the circuit when actuated. In contrast, normally closed (NC) switches, or "ON" position switches, break the circuit when actuated. Understanding the difference between NO and NC push button switches is crucial for selecting the right type for your application, whether it's for industrial machinery, control panels, or electronic devices.

Push button switches come in two main types: single-pole and double-pole switches. The single-pole switch is the most common type, featuring a control device with a single input source and a single output source. This basic design makes single-pole switches ideal for a wide range of applications. Double-pole switches, on the other hand, have two input sources and two output sources, offering more complex control capabilities for advanced electrical systems.

No, a push button is not an analog sensor. An analog sensor provides a continuous output signal that varies in proportion to the measured quantity. In contrast, a push button provides a discrete output signal that changes state from one level to another when the button is pressed or released. This distinction makes push buttons ideal for applications requiring simple on/off control, unlike analog sensors that are used for more complex, variable measurements.

✅ A push button consists of several key components:

1. Button Actuator: This is the part you physically press. It is connected to an internal mechanism within the switch.

2. Contacts: Push button switches contain one or more sets of contacts, typically made from conductive materials like metal. In their default state, these contacts are separated.

When the button actuator is pressed, it moves the contacts together to complete an electrical circuit. This simple yet effective design is what makes push buttons reliable for various applications, from industrial machinery to everyday electronic devices.

A push button is a digital sensor. Unlike analog sensors, which provide a continuous range of values, digital sensors like push buttons have only two states: on or off. For example, when you press a push button, it changes from off to on, providing a discrete signal. Similarly, a digital light sensor can detect whether it is dark or bright, also giving a binary output. This clear distinction makes push buttons ideal for simple, straightforward control in various applications.

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