Universal Latched Remote Controller for 6V LED Light

One customer said he would like to install 6V led lamp into the trunk of his car and wants to control it by remote controller. He is wondering if it can come true because he wants to use LED lamp to illuminate with use of 6V battery.

We recommend him 1 channel 6V latched remote control kit (S1L-DC06+C-2).

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This kind of remote control kit is activated by 6V power supply. So he doesn’t have to supply additional power for led lamp because led lamp will get power from powered receiver as long as you wire lamp to the receiver. With latched mode, he can press button 1 of transmitter to turn on led lamp and press button 2 of transmitter to turn off led lamp. If he wants to set on / off function respectively, it is better choice. It has normally open and closed contact. It controls various lights, fans or motors with voltage AC110~240V or DC0~28V. Of course, if he wants to remote control alternate current device, he needs to do some different wiring from direct current device.

Here is the wiring procedure of 6V led lamp which shares the same battery with receiver. The red wire from the lamp is connected to the C terminal of the receiver and black wire from the lamp is connected to the negative electrode of the power supply. The positive wire of the supply power is connected to B terminal and positive electrode of the receiver. The negative electrode of the power supply of power supply and receiver are connected together.

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When he presses the button1, turn on the led lamp; when he presses the button 2, turn off the led lamp.

How to Use One Transmitter to Remote Control 30 Receivers

Question from Customers:

I’d like to remote control my LED decoration lights. Can I use 30 similar receivers with 1 transmitter working on 6v battery to operate low voltage LED decoration lights, in one on off operation?

Answer:

Yes, we recommend this single channel dc 6V toggle 100m rf remote control kit—the receivers S1T-DC06 and the transmitter C-1.

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We will set 30 receivers and this transmitter with same 8-bits code so that they can work together. These receivers S1T-DC06 can work on 6V battery. The control mode is toggle mode which is fixed in advance. Toggle mode is the only working mode in this remote control kit. The maximum working current of one receiver is 10amp and remote control distance is 100m (300ft).

Here comes the wiring.

Initial state: A and B terminals are normally closed; B and C terminals are normally open. We connect light to B&C terminals. And the receiver must be wired to 6V power supply. Light can share the same power supply with receiver if you do wiring follow that wiring diagram.

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You can connect 30 lights to 30 receivers one by one. Press button, turn on all lights; press button again, turn off all lights.

 

How to Remote Control Two Gates Open and Close

Question from customer:

I am looking for a transmitter and receiver with at least 3 buttons (4 max ) to be used to open and close my gate. I don’t know which is better RF or UHF? Do you have anything that can work for me? I will do the electronics all I need is the option to latch or momentary relay outputs.

Answer

We recommend 4 channel 12V multi-mode remote controller (S4C-DC12+C-4). It operates in toggle, momentary, latched and toggle + momentary control mode (set the mode as you like freely). You can use it to complete four operations at the same time. For example, turn the light on, open the door or control other dc/ac electrical devices in the meantime. It is applied for light remote control, motor remote control, garage door remote control, gate remote control, etc. We think this remote can be used for controlling gate. That is to say, you can use this remote control to control one or two motors of your gate. To realize gate opening and closing, one motor needs two relays to support.

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Secondly, it is the wiring. Suppose you have two gates to remote control. We will wire motors to receiver according to the wiring diagram. B is the common terminal. A is the closed terminal and C is the open terminal. Usually, one relay can only switch on and off one motor. So each two relays can control one motor rotate in positive and reverse direction. We connect two motors to B terminals to every two relays respectively. Connect terminal C to the positive and connect terminal A to the negative.

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We choose momentary working mode: only connect Jumper-1. (We usually use momentary mode for motor controlling. Or you can also choose latched mode if you want.)

Press and hold button 1, motor 1 rotates in positive direction, gate 1 is opening. Release button 1, motor 1 stops.

Press and hold button 2, motor 1 rotates in reverse direction, gate 1 is closing. Release button 2, motor 1 stops.

Press and hold button 3, motor 2 rotates in positive direction, gate 2 is opening. Release button 3, motor 3 stops.

Press and hold button 4, motor 2 rotates in reverse direction, gate 2 is closing. Release button 4, motor 2stops.

100M Remote Control LED Lamp

Question from customer:

I want to put a 220v Transceiver to turn on / off the power of a transformer of led lighting (to avoid the transformer is always on), this will make me a remote control switch. I want a basic on / off function product.

Answer:

1 channel ac power direct output remote switch (S1X-AC220+C-2) is suitable for you. Its remarkable feature is ac power direct output, that is to say, you don’t have to supply additional power to being controlled device because it can get power from powered receiver. It controls lights, motors, fans, electrically operated doors/locks/windows/blinds/cars or other appliances with AC 100~240V range. You can turn on/off the receiver with transmitter (remote control) from any place within a reliable distance (about 100m); the wireless RF signal can pass through walls, floors and doors.

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Wiring diagram is here. Wire transformer to L&N terminals of “OUT “ terminal. Then wire lamp to the transformer.

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To avoid transformer being always on, you can use transmitter to remote control it. There are three working modes in it. They are toggle, momentary and latched modes. Here, you can choose latched because there are two buttons of transmitter.

Setting control mode Latched: Do not connect Jumper-1 and Jumper-2.

Press button 1: Turn on the transformer, terminal OUT outputs AC power to switch on lamp.

Press button 2: Turn off the transformer, terminal OUT no output to switch off lamp.

Normally Open and Closed Remote Controller for Contactor

Someone would like a remote control to switch on and off his lamp via controlling a contactor. He drew a picture to illustrate his idea. Maybe it is not so convenient to him to remote control lamp directly, so he choose to control his lamp via a contactor.

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We recommend him a 1 channel AC remote switch with memory function (S1MU-AC220+C-2). This 1 channel ac rf memory remote controller operates in toggle, momentary and latched control mode (set the mode as you like freely). With function of memory, if the power is cut off, the relay will return automatically to the previous status after the power is restored. It is great for hard to reach lights or other electrical devices, remote distance up to 100m (theoretically). It is applied to control lights, motors, fans, electrically operated doors / locks / windows / blinds / cars or other appliances with voltage AC 110~240V or DC 0~28V.

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According his requirement, we have this following diagram. Initial state: A, B = Normally Closed; B, C = Normally Open. Wire contactor to normally open contact B&C terminals. And Wire a lamp to contactor and install a switch for lamp (See the original picture).

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There are 3 working mode of remote control. They are toggle, momentary and latched modes. We suggest that he should set latched mode because this remote works with a 2-button transmitter.

Setting control mode Latched: Do not connect Jumper-1 and Jumper-2.

Control mode Latched: Press -> On, another relay Off; Press another button -> Off.

Press button 1: Turn on the contactor to turn on lamp (connect B and C, disconnect A and B)

Press button 2: Turn off the contactor to turn off lamp(disconnect B and C, connect A and B)