SBM82314x

Features: • Designed for application in passive-optical networks• Integrated Wavelength Division Multiplexer (WDM) or Beam Splitter• Bi-Directional Transmission in 2nd and 3rd optical window• Single fiber solution• FP-Laser Diode with Multi-Quantum Well structure̶...

product image

SBM82314x Picture
SeekIC No. : 004485151 Detail

SBM82314x: Features: • Designed for application in passive-optical networks• Integrated Wavelength Division Multiplexer (WDM) or Beam Splitter• Bi-Directional Transmission in 2nd and 3rd opti...

floor Price/Ceiling Price

Part Number:
SBM82314x
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

SeekIC Buyer Protection PLUS - newly updated for 2013!

  • Escrow Protection.
  • Guaranteed refunds.
  • Secure payments.
  • Learn more >>

Month Sales

268 Transactions

Rating

evaluate  (4.8 stars)

Upload time: 2025/12/26

Payment Methods

All payment methods are secure and covered by SeekIC Buyer Protection PLUS.

Notice: When you place an order, your payment is made to SeekIC and not to your seller. SeekIC only pays the seller after confirming you have received your order. We will also never share your payment details with your seller.
Product Details

Description



Features:

• Designed for application in passive-optical networks
• Integrated Wavelength Division Multiplexer (WDM) or Beam Splitter
• Bi-Directional Transmission in 2nd and 3rd optical window
• Single fiber solution
• FP-Laser Diode with Multi-Quantum Well structure
• Class 3B Laser Product
• Suitable for bit rates up to 1.25 Gbit/s
• Ternary Photodiode at rear mirror for monitoring and control of radiant power
• Low noise / high bandwidth PIN diode
• Hermetically sealed subcomponents, similar to TO 46
• With singlemode fiber pigtail



Specifications

Parameter
Symbol
Limit Values
Uint
min.
max.
Module
Operating temperature range at case
TC
-40
85
°C
Storage temperature range
Tstg
-40
85
°C
Soldering temperature (tmax = 10 s,
2 mm distance from bottom edge of case)
TS
260
°C
Laser Diode
Direct forward current
IFmax
120
mA
Radiant power CW
PF,rad
2
mW
Reverse Voltage
VR
2
V
Monitor Diode
Reverse Voltage
VR
10
V
Forward Current
IF
2
mA
Receiver Diode
Reverse Voltage
VR
10
V
Forward Current
IF
2
mA
Optical power into the optical port
Pport
1.5
mW



Description

The Infineon module SBM82314x  for bidirectional optical transmission has been designed for different optical networks structures.

In the last few years the structure SBM82314x  has changed from point to point planned for Broad band ISDN to a point to multipoint passive optical network (PON) architecture for the optical network in the subscriber loop.

A transceiver can be realized with discrete elements (Figure 3). Transmitter and receiver with pigtails are connected with a fiber-coupler (2:1 or 2:2, wavelength independent or WDM).

Infineon has realized this transceiver configuration in a compact module called a BIDI® (Figure 4).

This module SBM82314x is especially suitable for separating the opposing signals at the ends of a link. It replaces a discrete solution with a transmitter, receiver and coupler.

The basic devices SBM82314x are a laser diode and a photodiode, each in a TO package, plus the filter in the beam path. A lens in the TO laser concentrates the light and enables it to be launched into the single-mode fiber of the module. In the same way the light from the fiber is focused onto the small, light-sensitive area of the photodiode to produce a high photo current. The mirror for coupling out the received signal is arranged in the beam so that the transmitter and receiver are at right angles to each other. This means the greatest possible degree of freedom in the layout of the electric circuit.




Customers Who Bought This Item Also Bought

Margin,quality,low-cost products with low minimum orders. Secure your online payments with SeekIC Buyer Protection.
Connectors, Interconnects
Discrete Semiconductor Products
Cables, Wires
Fans, Thermal Management
Line Protection, Backups
Integrated Circuits (ICs)
View more