OPT-622A1F1R
RoHS Compliant 622Mbps 1x9 SC Duplex Optical Transceiver Module for
SONET/ OC-12,SDH/STM-4
Features:
Industry Standard 1x9 Footprint and Duplex
SC Connector Interface.
Single 5V Power Supply.
PECL Differential Inputs and Outputs.
PECL Receiver Signal Detect Indicator.
Wave Solder and Aqueous Wash Process
Compatible.
RoHS Compliant per Directive 2002/95/EC.
Description:
The OPT-622A1F1R is 1x9 optical transceiver
modules designed expressly for high-speed
communication applications that require rates of up to
622Mbps. They are all compliant with the
SONET/SDH standards.
The OPT-622A1F1R transceiver is supplied in industry
standard 1x9 SIP package style with duplex SC
connector. Moreover the OPT-622A1F1R also
includes a Signal-Detect circuit that provides PECL
logic output state.
The OPT-622A1F1R meet Class-1 eye safety
standard and effective distance up to 500m.
Application:
Multimode Fiber Backbone Links.
Fast Ethernet and ATM Compatible.
Multimode Fiber Media Converter.
DELTA ELECTRONICS, INC.
1
www.deltaww.com
Jan., 2008
Rev.:0D
OPT-622A1F1R
Absolute Maximum Ratings
Parameter
Storage Temperature Ts -40 85 ºC
Lead Soldering Temperature T
Lead Soldering Time t
Supply Volt age VCC 0 6 V
Symbol Min. Typ. Max. Unit Note
260 ºC
SOLD
10 Sec.
SOLD
Recommended Operating Conditions
Parameter Symbol Min. Typ. Max. Unit Note
Data Rate 622.08 Mbps
Operating Temperature TA 0 70 ºC
Supply Volt age VCC 4.75 5 5.25 V
Electrical Characteristics
Parameter Symbol Min. Typ. Max. Unit Note
Transmitter
Transmitter Data Input Voltage-Low VIL-VCC -1.81 -1.48 V
Transmitter Data Input Voltage-High VIH-VCC -1.16 -0.88 V
Receiver
Data Output Voltage-Low VOL-VCC -1.95 -1.62 V
Data Output Voltage-High VOH-VCC -1.045 -0.74 V
SD Output Voltage-Low V
SD Output Voltage-High V
-VCC -1.95 -1.62 V ECL Family
SDL
-VCC -1.045 -0.74 V ECL Family
SDH
Optical Characteristics
(Data Rate = 622.08Mbps, PRBS=223-1, NRZ, 62.5/125um MMF)
Parameter Symbol Min. Typ. Max. Unit Note
Transmitter
Supply Current Icc
Mean Launch Power PO -20
150
-14 dBm
Optical Extinction Ratio E.R. 9 dB
Center Wavelength
Spectral Width (RMS)
Optical Risetime / Falltime
λ
C
σ
t
3.0 ns
r/tf
1261 1360 nm
14.5
Output Eye Diagram Compliant with ITU-T recommendation G.957
Receiver
Supply Current Icc
Sensitivity PIN
Input Optical Wavelength
λ
Signal Detect-Asserted PA
150
-26 dBm
1100 1600 nm
-26
Signal Detect-DeAsserted PD -35 dBm
Signal Detect-Hysteresis PA-PD 0.5 dB
Overload P
Notes:The sensitivity should be tested at BER of 1×10
NRZ, PRBS=2
23
-1 and E.R.= 9dB.
-8 dBm
SAT
-10
or better with an input signal consisting of 622.08Mb/s,
mA
nm
10%~90%
mA
dBm
DELTA ELECTRONICS, INC.
2
www.deltaww.com
Jan., 2008
Rev.:0D
Pin Definition
OPT-622A1F1R
PIN Symbol
1 GND Receiver Signal Ground
2 RD (+) Receiver Data Out Non-inverted (LVPECL or PECL)
3 RD (-) Receiver Data Out Inverted (LVPECL or PECL)
4 SD
5 VccR Receiver Power Supply
6 VccT Transmitter Power Supply
7 TD (-) Transmitter Data In Inverted (LVPECL or PECL)
8 TD (+) Transmitter Data In Non-inverted (LVPECL or PECL)
9 GND Transmitter Signal Ground
Receiver Signal Detect (LVPECL、PECL)
Functional description
Pin Descriptions
Pin 1 Receiver Signal Ground, GND
Directly connect these pins to the ground plane.
Pin 2 Receiver Data Out Non-inverted (LVPECL), RD (+)
PECL logic family. Output external biased and internal DC coupled.
Pin 3 Receiver Data Out Inverted (LVPECL), RD (-)
PECL logic family. Output external biased and internal DC coupled.
Pin 4 Receiver Signal Detect (LVPECL), SD
PECL logic family. Normal Operation: Logic “1” Output; Fault Condition: Logic”0” Output.
Pin 5 Receiver Power Supply , VccR
Provide +3.3V dc power supply.
Pin 6 Transmitter Power Supply, VccT
Provide +3.3V dc power supply.
Pin 7 Transmitter Data In Inverted (LVPECL), TD (-)
Pin 7 Transmitter Data Input Inverted (LVPECL), TD (-).
Pin 8 Transmitter Data In Non-inverted (LVPECL), TD (+)
Pin 8 Transmitter Data Input Non-inverted (LVPECL), TD (+).
Pin 9 Transmitter Signal Ground, GND
Directly connect these pins to the ground plane.
DELTA ELECTRONICS, INC.
3
www.deltaww.com
Jan., 2008
Rev.:0D