Idealphotonics's MEMS 1x4 optical switch is an optical switch based on MEMS (Micro Electro Mechanical Systems) technology that allows channel selection between a single input light and four output lights. It has the characteristics of small size, long lifespan, and stable reliability, and is widely used in optical network fields such as OADM and OXC.
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11 | BUSY | Busy signal, high level indicates busy | Output | TTL |
12 | ALARM | Alarm signal, high level indicates module initialization abnormality/high temperature | Output | TTL |
13 | STROBE | Parallel port selection signal, falling edge valid | Input | TTL(default high level) |
14 | RESET | Hardware reset, low level valid | Input | TTL |
1.Application Environment
Parameters | unit | Min | Max |
Storage temperature | ℃ | -40 | 85 |
Operating temperature | ℃ | -5 | 70 |
Operating relative humidity | %RH | 5 | 95 |
Electrostatic voltage (human body model) | V | 500 | |
Maximum operating optical power | mw | 500 |
2. Optical specifications
Parameters | Unit | Specification |
Fiber type | -- | Multimode OM1 |
Number of channels | CH | 4 |
Wavelength | nm | 1550±30 |
Loss | dB | ≤0.9 |
Return loss | dB | ≥30 |
Repeatability | dB | 0.03dB Max |
Crosstalk | dB | ≥25 |
Polarization-dependent loss | dB | ≤0.15 |
Wavelength-dependent loss | dB | ≤0.3@CWL±30nm , 23℃ |
Temperature-dependent loss | dB | ≤0.3 |
Response time | ms | ≤10 |
Switching life | Cycle | ≥1× 109 |
Drive voltage | V | 5~ 12 |
Interface control type | TTL parallel port |
Note: 1. The above test loss (IL) is based on the test results at 23℃
2. The repeatability data is based on the results of 100 cycle repeated tests
3. Hardware Definition
Pin is defined as follows:
Pin | Title | Description | Input/Output | Special Requests |
1 | D0 | Parallel port data 0 | Input | TTL (default high level) |
2 | D3 | Parallel port data 3 | Input | TTL (default high level) |
3 | D4 | Parallel port data 4 | Input | TTL (default high level) |
4 | V IN | Power input | Input | DC 5V~12V |
5 | GND | Device ground | Input | |
6 | D5 | Parallel port data 5 | Input | TTL (default high level) |
7 | D2 | Parallel port data 2 | Input | TTL (default high level) |
8 | TX | Serial port send | Output | TTL |
9 | RX | Serial port receive | Input | TTL |
10 | D1 | Parallel port data 1 | Input | TTL |
11 | BUSY | Busy signal, high level indicates busy | Output | TTL |
12 | ALARM | Alarm signal, high level indicates module initialization abnormality/high temperature | Output | TTL |
13 | STROBE | Parallel port selection signal, falling edge valid | Input | TTL (default high level) |
14 | RESET | Hardware reset, low level valid | Input | TTL |
Software format definition
1) UART parameters: 115200,8, 1,N
2) All sending commands end with
(Line feed
Command | *SW |
Parameter | * SW ABC, 000 is the power-off state, 001 is the optical switch channel 1. |
Return data | CHAN: ABC, PCB is not powered and there is no feedback data. |
Example: * SW +ABC Send data: *SW001 Return data: |
Check product PN number
Command | *PN |
Parameter | N/A |
Return data | PN:AB.CD.EFGH |
Example: Send data: *PN Return data: |
Check product SN number
Command | *SN |
Parameter | N/A |
Return data | SN:ABCDEFGHIJ |
Example: Send data: *SN Return data: |
Software format definition
3) Parallel communication interface description
The 14-pin module has 6 TTL control pins (D0~D5) and can control up to 64 channels.
Use TTL to control the D0~Dx pins to select channels, no triggering is required. See the table below for channel selection definitions
Channel selection | D5 | D4 | D3 | D2 | D1 | D0 |
Channel 1 | 0 | 0 | 0 | 0 | 0 | 0 |
Channel 2 | 0 | 0 | 0 | 0 | 0 | 1 |
Channel 3 | 0 | 0 | 0 | 0 | 1 | 0 |
Channel 4 | 0 | 0 | 0 | 0 | 1 | 1 |
Channel 5 | 0 | 0 | 0 | 1 | 0 | 0 |
Channel 6 | 0 | 0 | 0 | 1 | 0 | 1 |
Channel 7 | 0 | 0 | 0 | 1 | 1 | 0 |
Channel 8 | 0 | 0 | 0 | 1 | 1 | 1 |
… | ||||||
Channel 64 | 1 | 1 | 1 | 1 | 1 | 1 |
4. Pigtails and connectors
Parameters | Specifications |
Fiber type | OM1, 62.5/125, 0.9mm white loose tube |
Fiber length/tolerance | 1+/-0.05m |
Connector | FC/APC |
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