Polarization Insensitive Optical Circulator
Features |
|
High isolation & High Reture Loss Low insertion loss & PDL Optical Path Epoxy Free |
Application |
EDFA,DWDM and OTDR DWDM and OADM networks Bi-directional transmission system |
Specifications
Type Parameter | 3 Port | 4 Port |
Configuration | Port 1 to Port 2;Port 2 to Port 3 | Port 1 to Port 2;Port 2 to Port 3;Port 3 to Port 4 |
Operating wavelength (nm) | 1310, 1480,1550, 1580 (+/-30) | C+L (1520~1620) | 1310, 1480,1550,1580, (+/-30) | C+L (1520~1620) |
Typ. Peak Isolation | 50 | 50 | 50 | 50 |
Isolation (λc,23℃ all SOP) (dB) | ≥40 | ≥40 | ≥40 | ≥40 |
Isolation (Over all λ, T, SOP) (dB) | ≥35 | ≥30 | ≥35 | ≥30 |
Insertion Loss (λc,0~70℃ all SOP) (dB) | Grade P | ≤0.8 | ≤1.1 | ≤1.0 | ≤1.2 |
Grade A | ≤1.0 | ≤1.2 | ≤1.2 | ≤1.3 |
PDL (dB) | ≤0.15 | ≤0.20 |
Return loss (dB) | ≥50 |
PMD (ps) | ≤0.1 |
Directivity | ≥50 |
Power handling (mW) | ≤300 |
Fiber Type | SMF-28e |
Operating temperature (℃) | 0 ~ +70 |
Storage temperature (℃) | -40 ~ +85 |
Package Dimensions (mm) | For bare fiber or 900um loose tube | φ5.5×L50(P2) | φ5.5×L68(P5) | φ5.5×L64(P8) |
For 3mm or 2mm cable | L90XW20XH9.5(P9) |
* Insertion loss is not include connector loss
Package Dimension



P9
Ordering Information
FCIR | wavelength | Type | Grade | 0 | Package type | Pigtail Type | Length | Connector |
FCIR | 1310=1310nm | 3=3Port | P=P Grade | | 2=P2(for 3 ports) | 1=250um bare fiber | H=0.5m | 0=None |
1480=1480nm | 4=4Port | A= A Grade | 5=P5(for 4 ports) | 2=900um loose tube | 8=0.8m | 1=FC/UPC |
1550=1550nm | | | 8=P8 (for 4 ports) | 3=3mm loose tube | 1=1.0m | 2=FC/APC |
1580=1580nm | | | 9=P9(for 3mm or 2mm cable) | 4=2mm loose tube | 5=1.5m | 3=SC/APC |
1570=1520~1620nm | | | | | 2=2.0m | 4=SC/UPC |
| | | | | A=1.1m | 5=MU |
| | | | | B=1.2m | 6=LC/PC |
| | | | | C=0.2m | 7=LC/APC |
| | | | | D=0.3m | 8=E2000 APC |
| | | | | L=0.4m | 9=E2000 PC |
| | | | | 3=3m | A=ST/PC |
| | | | | | B=SC/UPC for port1&3, SC/APC for port2 |
| | | | | | C=LC/UPC for port1&3, SC/UPC for port2 D=SC/APC for port2,LC/UPC for port1&3 E= FC/APC for port1&3, LC/APC for port2 |