HFBR-1537Z Avago Technologies US Inc., HFBR-1537Z Datasheet - Page 3

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HFBR-1537Z

Manufacturer Part Number
HFBR-1537Z
Description
FIBER OPTIC TRANSCEIVER MODULE
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HFBR-1537Z

Msl
MSL 4 - 72 Hours
Peak Reflow Compatible (260 C)
Yes
Leaded Process Compatible
Yes
Wavelength
650nm
Spectral Bandwidth
21nm
Voltage - Forward (vf) Typ
2.1V
Current - Dc Forward (if)
60mA
Voltage - Dc Reverse (vr) (max)
3V
Capacitance
60pF
Connector Type
Versatile Link
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
3
Plastic Optical Fiber (1 mm POF) Transmitter Application Circuit: Performance of the HFBR-15X7Z transmitter in the recom-
mended application circuit (Figure 1) for POF; 1-125 MBd, 25°C.
Hard Clad Silica Fiber (200 µm HCS) Transmitter Application Circuit: Performance of the HFBR-15X7Z transmitter in the recom-
mended application circuit (Figure 1) for HCS; 1-125 MBd, 25°C.
Notes:
1. Average optical power is measured with an average power meter at 50% duty cycle, after 1 meter of fiber.
2. To allow the LED to switch at high speeds, the recommended drive circuit modulates LED light output between two non-zero power levels.
3. High and low level LED currents refer to the current through the HFBR-15X7Z LED. The low level LED “off” current, sometimes referred to as
Parameter
Average Optical Power 1 mm POF
Average Modulated Power 1 mm POF
Optical Rise Time (10% to 90%)
Optical Fall Time (90% to 10%)
High Level LED Current (On)
Low Level LED Current (Off )
Optical Overshoot - 1 mm POF
Transmitter Application Circuit
Current Consumption - 1 mm POF
Parameter
Average Optical Power 200 µm HCS
Average Modulated Power 200 µm HCS
Optical Rise Time (10% to 90%)
Optical Fall Time (90% to 10%)
High Level LED Current (On)
Low Level LED Current (Off)
Optical Overshoot - 200 µm HCS
Transmitter Application Circuit
Current Consumption - 200 µm HCS
The modulated (useful) power is the difference between the high and low level of light output power (transmitted) or input power (received),
which can be measured with an average power meter as a function of duty cycle (see Figure 3). Average Modulated Power is defined as one
half the slope of the average power versus duty cycle:
“hold-on” current, is prebias supplied to the LED during the off state to facilitate fast switching speeds.
Average Modulated Power =
Symbol
P
P
I
I
I
Symbol
mod
t
t
avg
F,H
F,L
CC
[P
r
f
P
P
I
I
I
avg
mod
t
F,H
t
F,L
CC
avg
r
f
@ 80% duty cycle - P
Typical
-11.3
-9.7
110
2.1
2.8
19
45
3
Typical
-14.6
-16.2
130
(2) [0.80 - 0.20]
3.1
3.4
60
30
6
avg
@ 20% duty cycle]
dBm
dBm
Unit
mA
mA
mA
ns
ns
%
dBm
dBm
Unit
mA
mA
mA
ns
ns
%
50% Duty
Condition
50% Duty
Condition
5 MHz
5 MHz
Cycle
5 MHz
5 MHz
Cycle
Note 1, Fig 3
Note 2, Fig 3
Note 1, Fig 3
Note 2, Fig 3
Figure 1
Figure 1
Note 3
Note 3
Note 3
Note 3
Note
Note

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