0

Cart

0
Subtotal: $0.00
No products in the cart.

10G Single Mode DWDM SFP+ Transceivers 40km-80km, C Band 1525 to 1565nm,L Band 1570 to 1610nm, With DDM LC Duplex Fiber

The DWDM SFP+ transceivers are designed for use in 10 Gigabit Ethernet links 40km or 80km over single mode fiber. The DWDM transceivers are compatible with SFP+ MSA and SFF-8472, adopt wavelength C17 to C62 channels, channel spacing 0.8nm.

Description

DWDM SFP+ Transceiver Features

  • Up to 11.3Gbps data links
  • DWDM EML Laser and PIN photo-detector
  • Up to 40kmon 9/125µm SMF
  • Duplex LC receptacle optical interface compliant
  • Hot pluggable transceiver module
  • All-metal housing for superior EMI performance
  • RoHS6 compliant (lead free)
  • Operating case temperature: Commercial: -5ºC to +70°C; Extended: -20ºC to +80°C

DWDM Transceiver Application

  • 10GBASE-ER/ZR
  • 10G Fiber Channel

Standards

  • Compliant with SFP+ MSA
  • Compliant with SFF-8472
  • Compatible with IEEE802.3ae

Optical Parameters

Parameter Symbol Min. Typical Max. Unit Note
Transmitter Section
Centre Wavelength λc λc -0.1 λc λc +0.1 nm  
Center Wavelength Spacing     100   GHZ  
Spectral Width(-20dB) Δλ     0.3 nm  
Side Mode Suppression Ratio SMSR 30     dB  
Average Optical Power (avg.) Pout -1   +3 dBm 1
Laser Off Power Poff -30 dBm  
Extinction Ratio ER 8.2 dB 2
Relative Intensity Noise RIN -128 dB/Hz  
Transmitter Dispersion Penalty TDP     3 dB  
Optical Rise/Fall Time tr / tf   50 ps 3
Optical Return Loss Tolerance   12 dB  
Output Optical Eye Compliant with IEEE802.3ae eye masks when filtered 2
Receiver Section  
Receiver Center Wavelength λc 1260   1620 nm  
Receiver Sensitivity in Average Power Sen -16   -1 dBm 4
Los Assert LOSA -30 dBm  
Los Dessert LOSD -17 dBm  
Los Hysteresis LOSH 0.5 5 dB  
Overload Pin-max -1 dBm 4
Receiver Reflectance   -12 dB  
Receiver Power (damage)   1.5 dBm

Note:

  1. The optical power is launched into 9/125µm SMF.
  2. Measured with a PRBS 231-1test pattern @10.3125Gbps.
  3. Unfiltered, 20-80%. Measured with a PRBS 231-1test pattern @10.3125Gbps.
  4. Measured with a PRBS 231-1test pattern @10.3125Gbps, ER=4dB, BER <10-12.

Mechanical Dimension

custom 10ge sfp+ transceiver module bidi 1270/1330nm lc single fiber single mode 10 km to 120km,lr, er, zr range, ddm, 40ºc to +85°c

Order Information

Part Number Product Description
YDSP96-DXX40 DWDM-XX, 10Gbps, 40km, Duplex LC DWDM SFP+ Transceiver, -5ºC ~ +70ºC, With DDM.
YDSP96-DXX40E DWDM-XX, 10Gbps, 40km, Duplex LC DWDM SFP+ Transceiver, -20ºC ~ +80ºC, With DDM.
YDSP96-DXX40T DWDM-XX, 10Gbps, 40km, Duplex LC DWDM SFP+ Transceiver, -40ºC ~ +85ºC, With DDM.
YDSP96-DXX80 DWDM-XX, 10Gbps, 80km, Duplex LC DWDM SFP+ Transceiver, -5ºC ~ +70ºC, With DDM.
YDSP96-DXX80E DWDM-XX, 10Gbps, 80km, Duplex LC DWDM SFP+ Transceiver, -20ºC ~ +80ºC, With DDM.
YDSP96-DXX80T DWDM-XX, 10Gbps, 80km, Duplex LC DWDM SFP+ Transceiver, -40ºC ~ +85ºC, With DDM.

XX=DWDM Wavelength Order List

Code Frequency (THz) Center Wavelength(nm) Code Frequency (THz) Center Wavelength(nm)
C17 191.7 1563.86 C40 194.0 1545.32
C18 191.8 1563.05 C41 194.1 1544.53
C19 191.9 1562.23 C42 194.2 1543.73
C20 192.0 1561.42 C43 194.3 1542.94
C21 192.1 1560.61 C44 194.4 1542.14
C22 192.2 1559.79 C45 194.5 1541.35
C23 192.3 1558.98 C46 194.6 1540.56
C24 192.4 1558.17 C47 194.7 1539.77
C25 192.5 1557.36 C48 194.8 1538.98
C26 192.6 1556.55 C49 194.9 1538.19
C27 192.7 1555.75 C50 195.0 1537.40
C28 192.8 1554.94 C51 195.1 1536.61
C29 192.9 1554.13 C52 195.2 1535.82
C30 193.0 1553.33 C53 195.3 1535.04
C31 193.1 1552.52 C54 195.4 1534.25
C32 193.2 1551.72 C55 195.5 1533.47
C33 193.3 1550.92 C56 195.6 1532.68
C34 193.4 1550.12 C57 195.7 1531.90
C35 193.5 1549.32 C58 195.8 1531.12
C36 193.6 1548.51 C59 195.9 1530.33
C37 193.7 1547.72 C60 196.0 1529.55
C38 193.8 1546.92 C61 196.1 1528.77
C39 193.9 1546.12    
Ruqeust For Quote

The more details, the better offer, will reply you in 24 hours.

yingda logo for facebook 191x100

Why leave?

Sorry that there’s no information that interests you. Please fill in the feedback form so that we can improve.