Product Information

785XBXC-24D

785XBXC-24D electronic component of Schneider

Datasheet
Magnecraft Schneider Electric General Purpose Relays Mag Latch Sqr Base Relay DPDT, 16A

Manufacturer: Schneider
This product is classified as Large/Heavy, additional shipping charges may apply. A customer service representative may contact you after ordering to confirm exact shipping charges



Price (USD)
N/A

Obsolete
Availability Price Quantity
0 - WHS 1

MOQ : 1
Multiples : 1

Stock Image

785XBXC-24D
Schneider

1 : USD 21.7117
10 : USD 20.6029
25 : USD 14.2966
50 : USD 13.3749
100 : USD 12.8136
250 : USD 12.3077
500 : USD 11.7256
1000 : USD 11.3167
N/A

Obsolete
     
Manufacturer
Product Category
Product
Type
Coil Voltage
Contact Form
Contact Current Rating
Contact Termination
Mounting Style
Switching Voltage
Coil Termination
Coil Type
Coil Resistance
Contact Material
Power Consumption
Brand
Factory Pack Quantity :
Cnhts
Hts Code
Product Type
Relay Contact Form
Subcategory
LoadingGif

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Latching, Sequence and Impulse Relays Application Data Energy Conservation Relays In many applications it is important for the customer to conserve electrical energy. One approach to energy conservation in an electrical system is to use relays that do not require constant power to maintain contact closure. Latching relay is a generic term that is used to describe a relay that maintains its contact position after the control power has been removed. Latching relays allow a customer to control a circuit by simply providing a single pulse to the relay control circuit. Latching relays are also desirable when the customer needs to have a relay that maintains its position during an interruption of power. There are three main types of Latching relays. Magnetic latching, Mechanical Latching and Impulse Sequencing. Magnetic Latching Relays Magnetic Latching relays require one pulse of coil power to move their contacts in one direction, and another, redirected pulse to move them back. Repeated pulses from the same input have no effect. Magnetic Latching relays are useful in applications where interrupted power should not be able to transition the contacts. Magnetic Latching relays can have either single or dual coils. On a single coil device, the relay will operate in one direction when power is applied with one polarity, and will reset when the polarity is reversed. On a dual coil device, when polarized voltage is applied to the reset coil the contacts will transition. AC controlled magnetic latch relays have single coils that employ steering diodes to differentiate between operate and reset commands. 785 755 303 Series Mechanical Latching Relays Mechanical latching relays use a locking mechanism to hold their contacts in their last set position until commanded to change state, usually by means of energizing a second coil. Since the relay does not rely on a magnet, the locking strength will not degrade over time or weaken during thermal cycling. The contacts will remain locked in the directed position until the opposing coil has been energized. Packaging machinery that places several units into a single container would be a good example. 385 Impulse Relays Impulse relays are a form of latching relay that transfers the contacts with each pulse. Many impulse relays are made up of a magnetic latch relay and a solid state steering circuit that, upon application of power, determines which position the relay is in and energizes the opposite coil. The contacts transfer and hold that position when power is removed. When reenergized, the contacts transfer again and hold that position, and so on. In order to transfer the contacts, one simply provides a single unidirectional pulse. There is no need to redirect the control pulse or reverse the polarity. Impulse relays can be used as wear equalizers. They are well suited for applications such as turning a single device on or off from one or more locations with a single momentary switch or push button at each station. For example, a conveyor could be started and/or stopped from multiple locations by means of a single button at each position. 711 7/2 Magnecraft Solution Guide 105A Magnecraft Solution Guide 105A SECTION 7Alternating Relay Application Data 712 Alternating Relay In many industrial pumping applications, two identical pumps are used for the same job. A standby unit is available in case the first pump fails. However, a completely idle pump might deteriorate and provide no safety margin. Alternating relays prevent this by assuring that both pumps get equal run time. The Model 712 Series Alternating Relay is designed for duplex pumping systems where it is desirable to equalize pump run time. The solid state alternating circuit drives an internal electromechanical relay. A continuous power source and control switch is required. The control switch (float, pressure or other isolated contact) is connected as shown in the respective wiring diagrams. Each time the control switch is opened the output contacts will change status. Indicator lights on the case show the internal relay status. Setting the top toggle switch to the center position alternates the load while setting the switch to Load 1 or Load 2 will lock the relay in the respected position, preventing alternation. The alternating relay approach isnt limited to pumping applications. The control switches could be thermostats or pressure switches, and the loads could be fans or compressors. Applications: PACKING PUMPING INDUSTRIAL INDUSTRIAL INDUSTRIAL MACHINES MACHINES COMPRESSORS FANS AUTOMATION APPLIANCES www.magnecraft.com 847-441-2540 7/3 Magnecraft Solution Guide 105A Magnecraft Solution Guide 105A SECTION 7

Tariff Desc

8536.49.00 TC 17103979 RELAYS PRINTED CIRCUIT BOARD

8536.41 TC 8909066 having a continuous contact rating of NOT less than 3A and body dimensions NOT exceeding 40mm x 30mm x 27mm

8536.49.00 TC 9613322 low profile, OTHER THAN reed relays, being EITHER of the following
a) height NOT exceeding 21.24mm
b) height NOT exceeding 35mm and having a continuous current rating NOT less than 8A AC

8536.49 TC 8906734 RELAYS, having ALL of the following
a) one, two or three contacts
b) maximum continuous contact current rating of NOT less than 15A
c) maximum contact voltage rating of NOT less than 380V
d) maximum switched power rating of NOT less than 4000VA

8536.49.00 TC 1122469 RELAYS, having an operating voltage NOT exceeding 250 volts having ANY of the following:
a) spring loaded terminals
b) plug-in screw terminals
c) wire connected terminals

8536.41 TC 8534635 RELAYS, cradle, having ALL of the following
a) maximum switching current NOT exceeding 5A AC or DC
b) switching voltage NOT exceeding 250V AC or DC
c) body dimensions NOT exceeding 31mm x 36mm x 19mm

8536.49 TC 8633667 RELAYS vacuum, hermetically sealed

8536.41.00 TC 19144923 RELAYS SWITCH AMPLIFIER, having a supply voltage NOT greater than 40v

8536.49 8633669 RELAYS, thermal overload, having ALL of the following characteristics
a) trip time NOT exceeding 5 s at 6 times full load current
b) manual reset
c) maximum current 50A

8536.49 TC 8633636 RELAYS, power appliance, 15A, having EITHER 2 contacts or 3 contacts

8536.49 TC 8532678 CONTACTORS, having BOTH of the following
a) normally closed main poles
b) DC rated current 9 A or greater

8536.49.00 TC 1312158 CONTACTORS, single OR multi-pole, for a voltage NOT exceeding 1000V

8536.49.00 solid state having an operating voltage NOT exceeding 600VAC or 300VDC but NOT including protective monitoring TC 9320885
APC
APC BY SCHNEIDER
APC by Schneider Electric
Magnecraft
Magnecraft Schneider Electric
Magnecraft / Schneider Electric
Magnecraft Electric
MGC
Schneider / Telemecanique
SCHNEIDER ELCTRIC/MAGNECRAFT
Schneider Electric
SCHNEIDER ELECTRIC / SAREL
SCHNEIDER ELECTRIC / TELEMECANIQUE
Schneider Electric Relays
SCHNEIDER ELECTRIC USA INC
SCHNEIDER ELECTRIC/LEGACY RELAY
SCHNEIDER ELECTRIC/MAGNECRAFT
Schneider Electric-Legacy Relays
SCHNEIDER-SQUARE D
Schneider-Telemacanique
Square D / Topaz
Square D By Schneider Electric
Telemecanique
TELEMECANIQUE SENSORS

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