Data Sheet
July 2000
1319-Type High-Speed Lightwave Receiver
The 1319-Type Lightwave Receiver is availab le in a compact,
butt er fly packa ge.
Features
High data rate capability: 2.5 Gbits/s
APD or PIN photodetector
Fully operational through the 1.3 µm to 1.55 µm
wavelength range
Typical sensitivity:
–34 dBm with APD
–25 dBm with pin
>25 dB typical dynamic range
Single-mode fiber pigtail with FC/PC or SC optical
connector
High-performance GaAs preamplifier
Operating case temp eratu re range:
0 °C to 65 °C with APD
–40 °C to +85 °C with PIN
Compact, butterfly package
Single-ended or differential outputs
Applications
Line terminal equipment
High-speed networks up to 2.5 Gbits/s
SONET OC-48 and SDH STM-16 telecommunica-
tions applications
Extended reach datacomm and telecomm
applications
Digital video
2Lucent Technologies Inc.
Data Sheet
1319-Type High-Speed Lightwave Receiver July 2000
Description
Receiver Operation
The 1319-Type high-speed fiber-optic receiver consists
of a wideband linear preamp followed by a limiting
amplifier buffer stage. It is designed for use in single-
mode, high-speed applications at the SONET OC-48
and the ITU-T synchronous digital hierarchy (SDH)
STM-16 data rate of 2488.32 Mbits/s. The receiver is
available with either a PIN photodetector or an APD
photodetector.
At 2.5 Gbits/s, the typical room temperature receiver
sensitivity measured at 3 x 10–11 b it-error rate is
–34 dBm for the APD receiver and –25 dBm for the PIN
version of the receiver . The operating case temperature
range for the APD receiver is 0 °C to 60 °C and
–40 °C to +85 °C for the PIN receiver.
The receiver is manufactured in a compact, 14-pin but-
terfly lead package with a single-mode optical fiber pig-
tail. The fiber in the 1319M-Type is internally beveled
for low optical return loss. The receivers are available
with the fiber pigtail terminated in FC-PC or SC optical
connectors.
The incoming light pulses are converted to electrical
current pulses by a high-performance APD or PIN
photodiode. The photodiode is coupled to a GaAs IC
preamplifier having differential data outputs. These
diff erential outputs are ac-coupled through 0.047 µF
capacitors to the package data output pins (see
Figure 2).
Power Supplies
Both versions of the receiver require a single –5.2 V
power supply for the preamplifier IC. To obtain the high-
est overload capability, the PIN in the 1319P series
should be biased at 5 V. However, if a lower overload
response can be tolerated, then the PIN bias lead may
be connected to circuit ground. Biasing the PIN at 0 V
will reduce the maximum ov erload capability by appro x-
imately 4 dB.
F or the 1319M codes, the APD requires a positive high
voltage (~60 V) bias supply. The nominal 25 °C gain =
12 and gain = 4 bias voltages are supplied with each
receiver. In order to maintain constant APD gain over
the full operating temperature range, the high-voltage
bias supply should have a means to automatically
adjust the voltage output to match the 0.18%/°C gain
versus temperature coefficient of the APD. The 1319M
has an internal thermistor, with a nominal 25 °C resis-
tance of 3 k, which can be used to monitor the
receiver operating temperature.
The 700B power module available from the Lucent
Technologies Microelectronics Group Power Systems
unit is a dc-dc converter that conv erts +5 Vdc to an
adjustable high voltage output in the range required f or
the APD bias. The 700B uses the thermistor in the
1319M to provide a temperature-compensated output.
Contact your local Lucent Sales Office for pricing and
availability.
Single-Ended or Differential Data Outputs
Single-ended data output versions of both the 1319M-
Type APD receiver and the 1319P-Type PIN receiver
are available for drop-in replacements in designs
using the current 1319B, 1319C, or 1319H models.
In these single-ended data output receivers, pin 11
(see Figure 1) will not be connected internally.
For new designs, Lucent has versions of both the APD
receiver and the PIN receiver with differential data out-
puts.
Printed-Wiring Board Layout
In devices with differential data outputs, due to internal
constraints, the path length to the DATA output is 25 ps
longer than the DATA path length at 2.5 Gbits/s. There-
fore, to ensure optimum performance, the DATA and
DATA signal traces on the application circuit board
should be adju sted accor dingl y.
Lucent Technologies Inc. 3
Data Sheet
July 2000 1319-Type High-Speed Lightwave Receiver
Pin Information
Table 1. Pin Names
* The thermistor is not available in the PIN version of the receiver. In
1319P-Type receivers, this pin will be open circuit internally.
This is an internal open circuit in single-ended output Receivers.
* No connection fo r PIN versions (not connected internally).
No connection for single-ended versions. 1-635 (C).a
Figure 1. Pin Diagram
Handling Precautions
Mounting and Connections
The pigtail consists of a 41 in. ± 13 in. (1041 mm ±
330 mm), 8 µm core, single-mode fiber. The receive
pigtails have a 1600 µm OD jacket diameter. Both mod-
els of the receiver are available with FC/PC or SC opti-
cal connectors. Other connector options may be
available. Contact your Lucent Sales Office for a vail-
ability and ordering information.
The fiber bending radius during operation and storage
is 1.5 in. (38 mm) minimum.
Electrostatic Discharge
CAUTION: This device is susceptible to damage
as a result of electrostatic discharge
(ESD). Take proper precautions during
both handling and testing. Follow
guidelines such as JEDEC Publication
No. 108-A.
Although protection circuitry is designed into the
device, take proper precautions to avoid exposure to
ESD.
Lucent employs a human-body model (HBM) for ESD-
susceptibility testing and protection design evaluation.
ESD voltage thresholds are dependent on the critical
parameters used to define the model. A standard HBM
(resistance = 1.5 k, capacitance = 100 pF) is widely
used and, therefore, can be used for comparison pur-
poses.
The HBM ESD withstand voltage established for the
1319-Type receiver is ±500 V.
Pin Name
1 Ground
2 Photodiode bias
3 Ground
4V
EE (–5.2 V)
5 Ground
6Thermistor*
7 Ground
8 Ground
9 Ground
10 DATA
11 DATA
12 Ground
13 NC
14 NC
CASE Ground
GROUND
THERMISTOR*
GROUND
–5.2 V
GROUND
APD/PIN BIAS
GROUND
GROUND
GROUND
DATA OUT
DATA OUT
GROUND
NC
78
14
9
10
11
12
13
6
5
4
3
2
1
NC
Data Sheet
1319-Type High-Speed Lightwave Receiver July 2000
4Lucent Technologies Inc.
Absolute Maximum Ratings
Stresses in excess of the absolute maximum ratings can cause permanent damage to the device. These are abso-
lute stress ratings only. Functional operation of the device is not implied at these or any other conditions in excess
of those giv en in the operations section of the data sheet. Exposure to absolute maximum ratings f or e xtended peri-
ods can adversely affect device reliability.
* Under biased conditions. Unbiased, the maximum input optical power f or both devices is 8 dBm.
Qualification Tests
The 1319-Type receiver has successfully passed the following qualification tests and meets the intent of Bellcore
TR-NWT-000468.
Parameter Symbol Min Max Unit
Negative Supply Voltage VEE 0–6.0V
Optical Input Power*:
APD
PIN PIN
PIN
3
8dBm
dBm
Operating Case Temperature:
APD
PIN TC
TC0
–40 65
85 °C
°C
Storage Temperature TSTG –40 85 °C
Lead Soldering Temperature 250 °C
Lead Soldering Time 10 seconds
Test Conditions Sample
Size Failure Criteria
Ph ysical Dimensions MIL-STD-883C-2016 90 Visual
External Visual MIL-STD-883C-2009.8 90 Visual
Impact Shock 1500G, 5 hits, 6 axis, MIL-STD-883C-2002.3 11 Electrical/Optical
Variable Frequency
Vibration 20G, 10 Hz to 2 kHz, 4 cycles, 3 directions,
4 min./cycle, MIL-STD-883C-2007.1 11 Electrical/Optical
Solderability MIL-STD-883C-2003.5 100% Visual
Temperature Cycle –10 °C to +60 °C, 2000 cycles,
MIL-STD-883C-1010.7 15 Electrical/Optical
High Tem perature, High
Humidity with Bias 60 °C, 95% relative humidity, rated bias,
4000 hours 4 Electrical/Optical
High Temperature with Bias 60 °C ambient, rated bias, 4000 hours,
MIL-STD-883C-1005.5 Electrical/Optical
Electrostatic Discharge Human-body model (to determine class) 3 Electrical/Optical
Power Cycling 1500 cycles (30 min. on/off)
MIL-STD-1006 3 Electrical/Optical
Data Sheet
July 2000 1319-Type High-Speed Lightwave Receiver
Lucent Technologies Inc. 5
Electrical/Optical Characteristics
Minimum and maximum values specified o ver operating case temperature and end of lif e (EOL). Typical v alues are
for 25 °C beginning of life (BOL).
Table 2. Electrical Characteristics
* The gain = 12 APD voltage at 25 °C is supplied with each device. For optimum performance, VAPD must be set within 50 mV
of the specified value. VAPD needs to be temperature compensated to maintain constant gain over operating temperature.
The nominal compensation is 0.18%/°C.
To obtain maximum overload input power, VPIN must be set to 5 V. If a lower overload input power can be tolerated
( 4 dB lower), VPIN can be set to 0 V (grounded).
Transimpedance, , where IPH(Avg) is the average photodiode current.
Table 3. Optical Characteristics
Parameter Symbol Min Typ Max Unit
dc Power Supply Voltages:
Negative Supply
APD Bias Supply (1319M-Types)*
PIN Bias Supply (1319P-Types)
VEE
VAPD
VPIN
–5.46
35
0
–5.2
5.0
–4.94
85
10.0
V
V
V
dc Power Supply Currents:
Negative Supply
APD Bias (G = 12)
PIN Bias
IEE
IAPD
IPIN
120
160
4
4
mA
mA
mA
Power Dissipation PD—0.6— W
Small Signal (<10 µA) TransimpedanceTZ5 k 10 k
Large Signal (>100 µA) TransimpedanceTZ 0.5 k 0.7 k
Input Noise Current (100 kHz—2.5 GHz) 250 300 nARMS
Output Return Loss 10 15 dB
Parameter Symbol Min Typ Max Unit
Optical Wa velength f or Rated Sensitivity λ1.25 1.6 µm
Sensitivity (2.5 Gbits/s, 223 – 1 PRBS, 3 x 10–11 BER):
APD Version (APD Gain = 1 2)
PIN Version PLOW
PLOW
–34
–24 –32
–22 dBm
dBm
Maximum Optical Input Power (2.5 Gbits/s, 223 – 1
PRBS, 3 x 10–11 BER):
APD Version (APD Gain = 3 )
PIN Version PHIGH
PHIGH –3
1
dBm
dBm
High-frequency Cutoff at –3 dB from Midband Response fC1.4 1.7 2.3 GHz
Maximum Reflectance –27 dBm
TZVp p
IPH Avg()
---------------------
=
Data Sheet
1319-Type High-Speed Lightwave Receiver July 2000
6Lucent Technologies Inc.
Electrical/Optical Characteristics (continued)
* The thermistor is not present on PIN version. 1-871 (C).a
Figure 2. 1319-Type High-Speed Lightwave Receiver Schematic
Recommended Circuit Diagram
* Pin 11 is a NC fo r single-ended output versions. 1-636 (C).a
PHOTO DIODE BIAS
t
3 k
(10)
(2)
(6) (4) (1, 3, 5, 7, 8, 9, 12)
FIBER
PIGTAIL
THERMISTOR –5.2 V GROUND
OPTICAL
INPUT ELECTRICAL
OUTPUT
DAT A O UT
PHOTODIODE
(11)
DATA OUT 50
0.047
µ
F
0.047
µ
F50
THERMISTOR
(NC FOR PIN VERSION)
–5.2 V
V PHOTODIODE
D
ATA
NC
78
14
9
10
11
12
13
6
5
4
3
2
1 µF
D
ATA
NC 1
Data Sheet
July 2000 1319-Type High-Speed Lightwave Receiver
Lucent Technologies Inc. 7
Outline Diagram
Dimensions are in inches and (millimeters).
1-637 (C).a
M3 METRIC THREAD
0.100 (2.54) DEEP
4 PLACES
0.500
(12.70)
0.100
(2.54)
0.125
(3.18)
0.500
(12.70)
0.665 (16.89)
DIA
RECEIVER SERIAL NUMBER,
TRADEMARK, PRODUCT CODE,
DATEMARK, AND APD BIAS
VOLTAGES IN APPROX.
AREA SHOWN
0.755
(19.18)
MAX
LEAD 14
0.012 (0.30) DIA
LEAD 8
0.887
(22.53)
REF
0.170 (4.32)
DIA
0.075
(1.91)
0.100
(2.54)
12 PLACES
0.600
(15.24)
LEAD 7
0.015 (0.38)
13 PLACES
LEAD 1
0.325
(8.26)
MAX
0.998 ± 0.010
(25.35 ± 0.25)
0.041 (1.04)
REF
0.146 ± 0.005
(3.71 ± 0.13)
14 PLACES
0.010 (0.25)
THICKNESS
Data Sheet
1319-Type High-Speed Lightwave Receiver July 2000
For additional information, contact your Microelectronics Group Account Manager or the following:
INTERNET: http://www.lucent.com/micro, or for Optoelectronics information, http://www.lucent.com/micro/opto
E-MAIL: docmaster@micro.lucent.com
N. AMERICA: Microelectronics Gro up, Lucent Technologies Inc., 555 Union Bo ulevard, Room 30L-15P-BA, Allentown, PA 1 81 09 -3 28 6
1-800-372-2447, FAX 61 0-712-41 06 (In CANA DA: 1-800-553-2448, FAX 610-712-4106)
ASIA PACIFIC: Microelectronics Group, Lucent Technolo gies Singapore Pte. Ltd., 77 Science Park Drive, #03-18 Cintech III, Singapore 118256
Tel. (65) 778 8833, FA X (65) 777 7495
CHINA: Microelectronics Group, Lucent Technologies (China) Co., Ltd., A-F2, 23/F, Zao Fong Universe Building, 1800 Zhong Shan Xi Road,
Shanghai 200233 P. R. China Tel. (86) 21 6440 0468, ext. 325, FAX (86) 21 644 0 0652
JAPAN: Microelectronics Group, Lucent Technologies Japan Ltd., 7-18, Higashi-Gotanda 2-chome, Shinagawa-ku, Tokyo 141, Japan
Tel. (81) 3 5421 1600, FA X (81) 3 5421 1700
EUROPE: Data Requests: MICROELECTRONICS GROUP DATALINE: Tel. (44) 7000 582 368, FAX (44) 1189 328 148
Techni cal Inquirie s: OPTOELECTRONICS M ARKETING: (44) 1344 865 900 (Ascot UK)
Lucent Technologies Inc. reserves the right to make changes to the product(s) or information contained herein without notice. No liability is assumed as a result of their use or application. No
rights under any patent accompany the sale of any such product(s) or information.
Copyright © 1999 Lucent Technologies Inc.
All Rights Reserved
Jul y 2000
DS99-070LWP-1 (Replaces DS99-070LWP)
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