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Feature: Widely used
for various types of equipment synchronization, such as light synchronization,
signal synchronization, voice synchronization, movement synchronization, state
synchronization and so on. Can
synchronously control trailer taillights system,
alarm system, traffic light system, motor synchronization
system and other home, industrial and agricultural equipments. Wireless
synchronization control, easy to install. After connecting the transmitter and
receiver with the synchronous equipment, there is no wire in need between the
different equipments. With
waterproof case and waterproof connectors. They can be installed outdoors. One
transmitter can work with several receivers at the same time, achieving the
synchronization of two or more equipments. 6 channels
of input/output, can synchronize with 6 receivers at the same time. The
transmitter can control the receiver from any place within a reliable distance;
the wireless RF signal can pass through walls, floors and doors. Transmitting
Frequency: 433.92MHz Package
Include: 1 x
Receiver: S6XW-DC 1 x Transmitter: TB-01 1 x User
manual Note: The receiver 0020075 (S6XW-DC12) only work with the transmitter 0021034
(TB-01). Receiver Parameters: Model No: 0020075 (S6XW-DC12) 6 channel outputs Operating Voltage / Output Signal: DC12~24V Static Current: ≤6mA Maximum Output
Current: 10A / each channel PCB Size: 92mm x 60mm
x18mm Case Size: 100mm x 68mm
x 40mm TransmitterParameters: Model No: 0021034
(TB-01) 6 channel inputs Operating Voltage / Input Signal: DC12~24V Static Current: ≤6mA Transmitting
Distance: 50m /150ft (in open field) PCB Size: 49mm
x 50mm x 35mm Case Size:
62mm x 58mm x 35mm Usage: Connect DC power to transmitter’s
wires “+” and “-“, power LED is on. Connect DC power to receiver’s
terminal “+” and “-“, power LED is on. When inputs
power "+" to transmitter’s wire A, receiver’s
terminal
A simultaneously outputs DC power "+". When stops
power "+" to transmitter’s wire A, receiver’s
terminal
A also stops to output DC power "+". When inputs
power "+" to transmitter’s wire B, receiver’s
terminal
B simultaneously outputs DC power "+". When stops power
"+" to transmitter’s wire B, receiver’s
terminal
B also stops to output DC power "+". When inputs
power "+" to transmitter’s wire C, receiver’s
terminal
C simultaneously outputs DC power "+". When stops
power "+" to transmitter’s wire C, receiver’s
terminal
C also stops to output DC power "+". When inputs
power "+" to transmitter’s wire D, receiver’s
terminal
D simultaneously outputs DC power "+". When stops
power "+" to transmitter’s wire D, receiver’s
terminal
D also stops to output DC power "+". When inputs
power "+" to transmitter’s wire E, receiver’s
terminal
E simultaneously outputs DC power "+". When stops
power "+" to transmitter’s wire E, receiver’s
terminal
E also tops to output DC power "+". When inputs
power "+" to transmitter’s wire F, receiver’s
terminal
F simultaneously outputs DC power "+". When stops
power "+" to transmitter’s wire F, receiver’s
terminal
F also stops to output DC power "+". When inputs
power "+" to transmitter’sseveral wires, receiver’s corresponding
terminals simultaneously output DC power "+" at the same time.