Mini 1×4 Opto-Mechanical Optical Switches
Description
GEZHI Series Mini 1×4 fiber optic switch connects optical channels by redirecting an incoming optical Signal into a selected output fiber. This is achieved by using a patented opto-mechanical configuration activated via an electrical control signal. Latching operation preserves the selected optical path after the drive signal has been removed. The switch has integrated electrical position sensors, and the new material based advanced. design significantly reduces moving part position sensitivity, offering unprecedented high stability and longevity, as well as an unmatched low cost. Electrical driver is also available. The switch is bidirectional. We offer tight-bend-fiber version, which reduces the minimum bending radius from normal 15 mm to 7mm. This feature enables smaller overall foot print.
Features Compact design, Miniature size Short switching time Bi-directionalLow optical distortions Low cross talk, Low Insertion Loss Wide operating wavelength Range |
Applications R&D in Laboratory System monitoring Metropolitan Area Network Network protection and restoration Instrumentation, testing, and measurement |
Technical Paremeter
1×4 Mini Optic Switch |
Unit |
Min |
Typical |
Max |
|
Operation Wavelength |
nm |
1260 ~ 1610nm |
|||
Insertion Loss 1 |
dB |
0.4 |
0.6 |
1.0 |
|
Wavelength Dependent Loss |
dB |
0.2 |
0.4 |
||
Polarization Dependent Loss |
dB |
0.05 |
0.1 |
0.2 |
|
Return Loss |
dB |
>50 |
|||
Cross Talk |
dB |
>50 |
|||
Switching Time |
ms |
4 |
10 |
||
Repeatability |
<±0.02 |
||||
Operating Voltage |
VDC |
3V or 5V |
|||
Voltage Pulse Width (Latching) |
ms |
Typical: 20 |
|||
Operating Current³ |
Latching |
mA |
<26 |
||
Non-Latching |
<36 |
||||
Switching Type |
Latching / Non-Latching |
||||
Operating Temperature 2 |
-5~+70 |
||||
Optical Power Handling |
mW |
Typical: 300mW Max:500mW |
|||
Storage Temperature |
℃ |
-40~+85 |
|||
Fiber Type |
SMF-28 |
||||
Package Dimension |
mm |
35L x 23W x 10H |
Electrical Driving
Latching
Optcial Path |
Relay |
Electrical Drive |
Status Sensor |
||||
Pin 1 |
Pin 8 |
Pin 2-3 |
Pin 3-4 |
Pin 5-6 |
Pin 6-7 |
||
Input → Port 1 |
Relay 1 |
5V Pulse |
GND |
Open |
Close |
Close |
Open |
Relay 2, 3 |
N/A |
N/A |
— |
— |
— |
— |
|
Input → Port 2 |
Relay 1 |
GND |
5V Pulse |
Close |
Open |
Open |
Close |
Relay 2 |
5V Pulse |
GND |
Open |
Close |
Close |
Open |
|
Relay 3 |
N/A |
N/A |
— |
— |
— |
— |
|
Input → Port 3 |
Relay 1, 2 |
GND |
5V Pulse |
Close |
Open |
Open |
Close |
Relay 3 |
5V Pulse |
GND |
Open |
Close |
Close |
Open |
|
Input → Port 4 |
Relay 1,2,3 |
GND |
5V Pulse |
Close |
Open |
Open |
Close |
Non-Latching
Optcial Path |
Relay |
Electrical Drive |
Status Sensor |
||||
Pin 1 |
Pin 8 |
Pin 2-3 |
Pin 3-4 |
Pin 5-6 |
Pin 6-7 |
||
Input → Port 1 |
Relay 1 |
5V Pulse |
GND |
Close |
Open |
Open |
Close |
Relay 2, 3 |
No Power |
Open |
Close |
Close |
Open |
||
Input → Port 2 |
Relay 2 |
5V Pulse |
GND |
Close |
Open |
Open |
Close |
Relay 1, 3 |
No Power |
Open |
Close |
Close |
Open |
||
Input → Port 3 |
Relay 3 |
5V Pulse |
GND |
Close |
Open |
Open |
Close |
Relay 1, 2 |
No Power |
Open |
Close |
Close |
Open |
||
Input → Port 4 |
Relay 1,2,3 |
No Power |
Open |
Close |
Close |
Open |
Dimension
Ordering Information
Type |
Wavelength |
Control Model |
Volatage |
Fiber Type |
Fiber Diameter |
Fiber Length |
Connector |
M14=1×4 |
1=1060nm 2=C+L 3=1310 4=1410 5=1550 35=1310&1550 B=1260~1620 X=Special |
L=Latching N=Non- Latching |
3=3V 5=5V |
1=SMF-28 X=Special |
25=250um 90=900um X=Others |
1=0.5m 2=1m 3=1.5m X=Others |
0=None 1=FC/UPC 2=FC/APC 3=SC/UPC 4=SC/APC 5=ST/UPC 6=ST/APC 7=LC/UPC 8=LC/APC |