HFBR-5963AL Avago Technologies US Inc., HFBR-5963AL Datasheet - Page 11

Fiber Optic Transmitters, Receivers, Transceivers OC3/FE 2X5 LC SD LVT TL EXTD TEMP

HFBR-5963AL

Manufacturer Part Number
HFBR-5963AL
Description
Fiber Optic Transmitters, Receivers, Transceivers OC3/FE 2X5 LC SD LVT TL EXTD TEMP
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HFBR-5963AL

Function
Transceivers for ATM, FDDI, Fast Ethernet and SONET OC-3/SDH STM-1 with LC connector.
Product
Transceiver
Data Rate
125 Mbps, 155 Mbps
Wavelength
1300 nm
Maximum Rise Time
3 ns, 2.2 ns
Maximum Fall Time
3 ns, 2.2 ns
Pulse Width Distortion
0.4 ns, 0.3 ns
Maximum Output Current
50 mA
Operating Supply Voltage
2.97 V to 3.63 V
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
Package / Case
DIP-10 with Connector
Optical Fiber Type
TX/RX
Data Transfer Rate
155.52MBd
Optical Rise Time
3/2.2ns
Optical Fall Time
3/2.2ns
Jitter
0.4/0.3ns
Operating Temperature Classification
Industrial
Peak Wavelength
1308/1380nm
Package Type
DIP With Connector
Operating Supply Voltage (min)
2.97V
Operating Supply Voltage (typ)
3.3V
Operating Supply Voltage (max)
3.63V
Output Current
50mA
Operating Temp Range
-40C to 85C
Mounting
Snap Fit To Panel
Pin Count
10
For Use With
Multimode Glass
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
HFBR-5963ALZ
Manufacturer:
AVAGO
Quantity:
3 200
Part Number:
HFBR-5963ALZ
Manufacturer:
Avago Technologies
Quantity:
135
Part Number:
HFBR-5963ALZ
Manufacturer:
AVAGO/安华高
Quantity:
20 000
Receiver Optical and Electrical Characteristics
HFBR-5963L (T
HFBR-5963AL (T
Notes:
1. This is the maximum voltage that can be applied across the Differential
. The data outputs are terminated with 0 W connected to VCC –  V.
. The power supply current needed to operate the transmitter is provided
. This value is measured with the outputs terminated into 0 W connected
a. The power dissipation of the transmitter is calculated as the sum of the
b. The power dissipation of the receiver is calculated as the sum of the
. The data output low and high voltages are measured with respect to
. The data output rise and fall times are measured between 0% and 0%
Parameter
Input Optical Power at minimum at Window Edge
OC-3
FE
Input Optical Power at Eye Center
OC-3
FE
Input Optical Power Maximum
OC-3
FE
Operating Wavelength
Systematic Jitter Contributed by the Receiver
OC-3
Duty Cycle Distortion Contributed by the Receiver
FE
Data Dependent Jitter Contributed by the Receiver
FE
Random Jitter Contributed by the Receiver
OC-3
Signal Detect - Asserted
OC-3
FE
Signal Detect - Deasserted
Signal Detect - Hysteresis
Signal Detect Assert Time (off to on)
Signal Detect Deassert Time (on to off )
FE
Transmitter Data Inputs to prevent damage to the input ESD protection
circuit.
The signal detect output is terminated with 0 W connected to a pull-up
resistor of . KW tied to VCC.
to differential ECL circuitry. This circuitry maintains a nearly constant
current flow from the power supply. Constant current operation helps to
prevent unwanted electrical noise from being generated and conducted
or emitted to neighboring circuitry.
to VCC – V and an Input Optical Power level of –1 dBm average.
products of supply voltage and current.
products of supply voltage and currents, minus the sum of the products
of the output voltages and currents.
VCC with the output terminated into 0 W connected to VCC –  V.
The signal detect output low and high voltages are measured with load
condition as mentioned in note .
levels with the output connected to VCC – V through 0W.
C
C
= 0 ºC to +70 ºC, V
= -40 ºC to +85 ºC, V
CC
= 2.97 V to 3.63 V)
CC
= 2.97 V to 3.63 V)
Symbol
P
P
P
l
SJ
DCD
DDJ
RJ
P
P
P
A
A
IN MIN
IN MIN
IN MAX
D
- P
D
(C)
(W)
. These optical power values are measured with the following condi-
. The Extinction Ratio is a measure of themodulation depth of the optical
10. The transmitter will provide this low level of Output Optical Power when
Minimum
-14
-14
1270
P
-45
1.5
0
0
D
tions:
The Beginning of life (BOL) to the End of Life (EOL) optical power degrada-
tion is typically 1. dB per the industry convention for long wavelength
LEDs. The actual degradation observed in Avago Technologies’ 100
nm LED products is < 1dB, as specified in this data sheet. Over the
specified operating voltage and temperature ranges. With  MBd (1.
MHz square-wave), input signal. At the end of one meter of noted optical
fiber with cladding modes removed. The average power value can be
converted to a peak power value by adding  dB. Higher output optical
power transmitters are available on special request. Please consult with
your local Avago Technologies sales representative for further details.
signaL. The data “0” output optical power is compared to the data “1”
peak output optical power and expressed as a percentage. With the
transmitter driven by a  MBd (1. MHz square-wave) input signal,
the average optical power is measured. The data “1” peak power is then
calculated by adding  dB to the measured average optical power. The
data “0” output optical power is found by measuring the optical power
when the transmitter is driven by a logic “0” input. The extinction ratio
is the ratio of the optical power at the “0” level compared to the optical
power at the “1” level expressed as a percentage or in decibels.
driven by a Logic “0” input. This can be useful in link troubleshooting.
+ 1.5 dB
Typical
0.2
0.08
0.07
0.3
0.3
2
5
Maximum Units
-30
-31
-31
-31.8
1380
1.2
0.4
1.0
1.91
2.14
-31
-33
100
100
dBm avg
dBm avg
dBm avg
nm
ns p-p
ns p-p
ns p-p
ns p-p
dBm avg
dBm avg
dB
µs
µs
Notes
15a, Figure 8
15b
16a, Figure 8
16b
15a
15b
17a
17b
17c
18a
18b
19
20
21
22

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