INFINEON V23826-C18-C64, V23826-C18-C364 User Manual

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Fiber Optics
DC/DC (5 V/3.3 V) Single Mode 155 MBd ATM/SDH/SONET 1x9 Long Haul Transceiver
Features
• Compliant with ATM, SONET OC-3, SDH STM-1
• Meets mezzanine standard height of 9.8 mm
• Compact integrated transceiver unit with – MQW laser diode transmitter
– InGaAs PIN photodiode receiver – Duplex SC receptacle
• Class 1 FDA and IEC laser safety compliant
• FDA Accession No. 9520890-20
• Single power supply (5 V or 3.3 V)
• Signal detect indicator
V23826-C18-C64
V23826-C18-C364
• PECL differential inputs and outputs
• Process plug included
• Input Signal Monitor
• Wave solderable and washable with process plug inserted
• Typical dynamic range of 36 dB
• Industry standard multisource 1x9 footprint
• For distances of up to 40 km on single mode fiber
Part Number Voltage Signal Detect Input Output
V23826-C18-C64 5 V PECL DC DC V23826-C18-C364 3.3 V
Add suffix to PIN Shield options
-C3 Metallized cover, forward springs
-D3 Metallized cover, backward springs
Data Sheet 1 2000-03-01
V23826-C18-C64
V23826-C18-C364
Pin Configuration
Top View
123456 78
Pin Configuration
9
Figure 1
Pin Description Pin
Symbol Level/Logic Function Description
No.
1Rx
V
EE
Power Supply Rx Ground Negative power supply,
normally ground 2 RD PECL Output Rx Output Data Receiver output data 3 RDn Inverted receiver output data 4 SD PECL Output
active high
Rx Signal Detect
A high level on this output shows
that optical data is applied to the
optical input.
V
V
CC
CC
5Rx 6Tx
Power Supply Rx +3.3 V / 5 V Positive power supply,
Tx +3.3 V / 5 V
+3.3 V / 5 V
7 TDn PECL Input Tx Input Data Inverted transmitter input data 8 TD Transmitter input data 9Tx
V
EE
Power Supply Tx Ground Negative power supply,
normally ground S1/2 Mech. Support Stud Pin Not connected
Data Sheet 2 2000-03-01
V23826-C18-C64
V23826-C18-C364
Description
Description
The Infineon single mode ATM transceiver complies with the ATM Forum's Network Compatible ATM for Local Network Applications document and ANSI's Broadband ISDN - Customer Installation Interfaces, Physical Media Dependent Specification, T1.646-1995, Bellcore-SONET OC-3/LR-1 and ITU-T G.957 STM-1/L.1.1.
ATM was developed to facilitate solutions in multimedia applications and real time transmission. The data rate is scalable, and the ATM protocol is the basis of the broadband public networks being standardized in the International Telecommunications Union (ITU), the former International Telegraph and Telephone Consultative Committee (CCITT). ATM can also be used in local private applications.
The Infineon single mode ATM long haul transceiver is a single unit comprised of a transmitter, a receiver, and an SC receptacle. This design frees the customer from many alignment and PC board layout concerns. The module is designed for low cost WAN applications. It can be used as the network end device interface in workstations, servers, and storage devices, and in a broad range of network devices such as bridges, routers, intelligent hubs, and wide area ATM switches.
This transceiver operates at 155.520 Mbit/s from a single power supply (+5 V or +3.3 V). The differential data inputs and outputs are PECL compatible.
Functional Description
This transceiver is designed to transmit serial data via single mode cable.
Signal Monitor and Automatic Shut-Down
TD TD
RD RD
SD
LEN
Laser Driver
Power Control
Monitor
Receiver
ISM
Laser Coupling Unit
e/o
Laser
o/e
Single Mode Fiber
RX Coupling Unit
o/e
Figure 2 Functional Diagram
Data Sheet 3 2000-03-01
V23826-C18-C64
V23826-C18-C364
Description
The transmitter converts electrical PECL compatible serial data (TD and TDnot) into optical serial data. It contains a laser driver circuit that drives the modulation and bias current of the laser diode. The currents are controlled by a power control circuit to guarantee constant output power of the laser over temperature and aging.
The power control uses the output of the monitor PIN diode (mechanically built into the laser coupling unit) as a controlling signal, to prevent the laser power from exceeding the operating limits.
This transceiver contains an Input Signal Monitor (ISM), that switches the optical power off if a continuously low level is applied at Data Input.
The receiver component converts the optical serial data into PECL compatible electrical data (RD and RDnot). The Signal Detect (SD, active high) shows whether optical data is
1)
present
.
This module is a Class 1 laser product, due to an integrated automatic shutdown circuit that disables the laser when it detects transmitter failures.
Single fault condition is ensured by means of an integrated automatic shutdown circuit that disables the laser when it detects transmitter failures. A reset is only possible by turning the power off, and then on again.
The transceiver contains a supervisory circuit to monitor the power supply. This circuit makes an internal reset signal whenever the supply voltage drops below the reset threshold. It keeps the reset signal active for at least 15 milliseconds after the voltage has risen above the reset threshold. During this time the laser is inactive.
1)
We recommend to switch off the transmitter supply (VCC - Tx) if no transmitter input data is applied.
Data Sheet 4 2000-03-01
V23826-C18-C64
V23826-C18-C364
Regulatory Compliance Feature Standard Comments
Electrostatic Discharge (ESD) to the Electrical Pins
Immunity: Electrostatic Discharge (ESD) to the Duplex SC Receptacle
Immunity: Radio Frequency Electromagnetic Field
Emission: Electromagnetic Interference (EMI)
MIL-STD 883C Method 3015.4
EN 61000-4-2 IEC 61000-4-2
EN 61000-4-3 IEC 61000-4-3
FCC Class B EN 55022 Class B CISPR 22
Class 1 (>1000 V)
Discharges of ±15 kV with an air discharge probe on the receptacle cause no damage.
With a field strength of 10 V/m rms, noise frequency ranges from 3 MHz to 1 GHz. No effect on transceiver performance between the specification limits.
Noise frequency range: 30 MHz to 6 GHz, margins depend on PCB layout and chassis design.
Description
Data Sheet 5 2000-03-01
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