HFBR-1528Z Avago Technologies US Inc., HFBR-1528Z Datasheet - Page 3

XMITTER FIBER OPTIC 600NM 10MBD

HFBR-1528Z

Manufacturer Part Number
HFBR-1528Z
Description
XMITTER FIBER OPTIC 600NM 10MBD
Manufacturer
Avago Technologies US Inc.
Datasheets

Specifications of HFBR-1528Z

Wavelength
600nm
Voltage - Forward (vf) Typ
2.02V
Current - Dc Forward (if)
1A
Voltage - Dc Reverse (vr) (max)
5V
Connector Type
Versatile Link
Function
Ideal for solving problems with voltage isolation/insulation, EMI/RFI immunity or data security.
Product
Transmitter
Data Rate
10 MBd
Diode Capacitance
60 pF
Maximum Rise Time
13 ns (Typ)
Maximum Fall Time
10 ns (Typ)
Operating Supply Voltage
4.75 V to 5.25 V
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
Data Rate Max
10Mbps
Forward Current If
80mA
Forward Voltage
1.67V
Reverse Voltage Vr
5V
Data Transmission Distance
50ft
Wavelength Typ
660nm
Msl
MSL 4 - 72 Hours
Fiber Material
Plastic
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Capacitance
-
Spectral Bandwidth
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
For Use With
Plastic Optical Fiber, Hard Clad Silica
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Other names
516-2047

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
HFBR-1528Z
Quantity:
600
Part Number:
HFBR-1528Z
Manufacturer:
AVAGO
Quantity:
784
Company:
Part Number:
HFBR-1528Z
Quantity:
8 000
HFBR-1528Z Transmitter
The HFBR-1528Z transmitter incorporates a 650 nm LED
in a light gray, nonconductive plastic housing. The high
light output power enables the use of both plastic optical
fiber (POF) and Hard Clad Silica (HCS
ter can be operated up to 10 MBd using a simple driver
circuit. The HFBR-1528Z is com pat ible with all Versatile
Link connectors.
Electrical and Optical Characteristics: T
Notes:
1. Typical data are at 25°C.
2. Optical power measured at the end of 0.5 meters of 1 mm diameter plastic or 200 μm diameter hard clad silica fiber with a large area detector.
3. Minimum and maximum values for P
4. Typical value measured from junction to PC board solder joint for horizontal mount package, HFBR-1528Z.
5. Pins 5 and 8 are for mounting and retaining purposes, but are electrically connected; pins 3 and 4 are electrically isolated. It is recommended
6. Refer to the “Plastic Optical Fiber and HCS Fiber Cable and Connectors for Versatile Link” Technical Data Sheet for cable connector options for 1
3
1 mm POF, 60 mA
1 mm POF, 20 mA
200 μm HCS, 60 mA
Parameter
Peak Output Power
Peak Output Power
Peak Output Power
Optical Power Tem-
perature Coefficient
Peak Emission
Wavelength
Peak Wavelength
Temperature
Coefficient
Spectral Width
Forward Voltage
Forward Voltage Tem-
perature Coefficient
Reverse Input Break-
down Voltage
Diode Capacitance
Transmitter
Numerical Aperture
Thermal Resistance,
Junction to Case
Optical Rise Time
Optical Fall Time
compensation which reduces the variation in P
that pins 3, 4, 5 and 8 all be connected to ground to reduce coupling of electrical noise.
mm plastic and 200 μm HCS optical fiber.
Symbol
ΔP
FWHM
ΔV
ΔO/ΔT
NA
V
C
T
T
P
P
P
O
T
V
F
t
A
t
BR
/ΔT
/ΔT
over temperature are based on a fixed drive current. The recommended drive circuit has temperature
jc
T
T
T
P
F
O
r
f
= -40° to +85°C unless otherwise noted.
) fiber. This transmit-
T
-15.6
-16.5
-16.8
-16.1
-17.0
-17.3
over temperature; refer to Figures 4 and 6.
Min.
-6.0
-6.9
-7.2
640
635
1.8
3.0
Typ.
-12.5
-0.40
-0.02
0.12
-3.5
-9.0
650
-1.8
140
2.1
0.5
21
13
60
13
10
[1]
Max.
+0.5
+1.3
2.65
-2.0
-1.5
-0.7
-8.5
-8.0
-7.2
660
662
0.0
nm/°C
mV/°C
dB/°C
°C/W
Units
dBm
dBm
dBm
%/°C
nm
nm
pF
ns
ns
V
V
-40 to +85
-40 to +85
-40 to +85
-40 to +85
0 to +70
0 to +70
0 to +70
0 to +70
T
+25
+25
+25
A
(°C)
HFBR-1528Z Transmitter, top view
CATHODE
GROUND
GROUND
ANODE
I
I
I
I
I
V
f = 1 MHz
10% to 90%,
I
F, dc
F,dc
F,dc
F,dc
F,dc
F
Conditions
F
= 60 mA
SEE NOTE 5
= 0 V,
= 20 mA
= 60 mA
= 60 mA
= -10 μA
= 60 mA
1
2
3
4
8 GROUND
5 GROUND
Fig. 2
Fig. 2
Fig. 2
Fig. 3
Fig. 3
Fig. 1
Fig. 1
Note
2, 3
2, 3
2, 3
4

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