HFBR-5527 Agilent(Hewlett-Packard), HFBR-5527 Datasheet - Page 7

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HFBR-5527

Manufacturer Part Number
HFBR-5527
Description
125 Megabaud Fiber Optic Transceiver JIS FO7 Connection
Manufacturer
Agilent(Hewlett-Packard)
Datasheet

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HFBR-5527 Transmitter
Electrical/Optical Characteristics
Notes:
1. 1.6 mm below seating plane.
2. Typical data is at 25 C.
3. Optical Power measured at the end of 0.5 meter of 1 mm diameter plastic or 200 m diameter hard clad silica optical fiber with a large
4. Typical value measured from junction to PC board solder joint.
5. Optical rise and fall times can be reduced with the appropriate driver circuit.
6. Pins 9 and 10 are primarily for mounting and retaining purposes, but are electrically connected with conductive housing; pins 5 and 6
7. Refer to the Versatile Link Family Fiber Optic Cable and Connectors Technical Data Sheet for cable connector options for 1 mm
8. The LED current peaking necessary for high frequency circuit design contributes to electromagnetic interference (EMI). Care must be
Transmitter Output Optical
Power, 1 mm POF
Transmitter Output Optical
Power, 200 m HCS
Output Optical Power
Temperature Coefficient
Peak Emission Wavelength
Peak Wavelength
Temperature Coefficient
Spectral Width
Forward Voltage
Forward Voltage
Temperature Coefficient
Transmitter Numerical
Aperture
Thermal Resistance,
Junction to Case
Reverse Input Breakdown
Voltage
Diode Capacitance
Unpeaked Optical Rise
Time, 10% - 90%
Unpeaked Optical Fall
Time, 90% - 10%
area detector.
are electrically unconnected. It is recommended that pins 5, 6, 9, and 10 all be connected to Rx ground to reduce coupling of
electrical noise.
plastic optical fiber and 200 m HCS fiber.
taken in circuit board layout to minimize emissions for compliance with governmental EMI emissions regulations.
Parameter
®
Symbol
FWHM
V
NA
C
P
P
V
t
t
BR
P
PK
V
jc
T
T
T
r
f
T
T
F
O
T
F
-10.4
Min.
0 to 70 C, unless otherwise stated.
-9.5
640
1.8
3.0
Typ.
-13.0
-0.02
0.12
-7.0
650
-1.8
140
2.0
0.5
21
13
60
12
9
[2]
Max.
-10.5
-10.0
-4.8
-4.3
660
2.4
nm/ C
mV/ C
dB/ C
Unit
dBm
dBm
C/W
nm
nm
pF
ns
ns
V
V
I
I
F,dc
F,dc
Half Maximum
I
f = 100 kHz
f = 100 kHz
F,dc
I
I
I
Full Width,
Condition
= 30 mA, 25 C
= 60 mA, 25 C
f = 1 MHz
F
F
F
V
= 60 mA
= 60 mA
= 60 mA
F
0-70 C
0-70 C
= -10 A
= 0 V,
Figure 5
Figure 5
Note 5
Note 5
Note 3
Note 3
Note 4
Note
171

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