HFBR-1527 Avago Technologies US Inc., HFBR-1527 Datasheet - Page 5

XMITTER OPTICAL HI SPEED HORZ

HFBR-1527

Manufacturer Part Number
HFBR-1527
Description
XMITTER OPTICAL HI SPEED HORZ
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of HFBR-1527

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
Function
Can be used for high speed data links without the problems common with copper wire solutions.
Product
Transmitter
Data Rate
32 MBd
Diode Capacitance
60 pF
Maximum Rise Time
12 ns
Maximum Fall Time
9 ns
Operating Supply Voltage
5.25 VDC
Maximum Operating Temperature
+ 70 C
Minimum Operating Temperature
- 40 C
For Use With
Plastic Optical Fiber
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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5 MBd Link (HFBR-15X1/25X1)
System Performance 0 to 70 C unless otherwise specified.
Notes:
1. The propagation delay for one metre of cable is typically 5 ns.
2. Typical propagation delay is measured at P
3. Estimated typical link life expectancy at 40 C exceeds 10 years at 60 mA.
Figure 2. Typical 5 MBd interface circuit
Figure 3. Guaranteed system performance with standard cable (HFBR-15X1/25X1)
5
High
Performance
5 MBd
100
50
40
30
20
10
5
0
– CABLE LENGTH – METRES
10
Parameter
Data Rate
Link Distance
(Standard Cable)
Link Distance
(Improved Cable)
Propagation
Delay
Pulse Width
Distortion t
20
OVERDRIVE
UNDERDRIVE
30
PLH
0°C–70°C
25°C
40
-t
PHL
50
R
= -15 dBm.
Symbol
t
t
PLH
PHL
t
D
Min.
dc
19
27
22
27
Typ. Max. Units Conditions
48
53
80
50
30
Figure 4. Guaranteed system performance with improved cable (HFBR-15X1/25X1)
140
140
100
50
40
30
20
10
5
5
0
MBd
10
– CABLE LENGTH – METRES
ns
ns
ns
m
m
m
m
20
BER 10
I
I
I
I
R
fiber length = 0.5 m
-21.6 P
P
R
Fdc
Fdc
Fdc
Fdc
R
L
L
= 560 , C
= 560 , C
30
= -15 dBm
= 60 mA
= 60 mA, 25 C
= 60 mA
= 60 mA, 25 C
OVERDRIVE
UNDERDRIVE
40
R
-9
, PRBS:2
0°C–70°C
25°C
-9.5 dBm
50
L
L
= 30 pF
= 30 pF
60
7
-1
Fig. 3
Note 3
Fig. 4
Note 3
Fig. 5, 8
Notes 1, 2
Fig. 5, 7
Ref.

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