ETC ZL60003

ZL60003
Plastic Optical Fiber Communications 125 to 250Mbps
Data Sheet
DS5612
Issue 1
June 2002
Ordering Information
ZL60003/TBD TO-46 Package
-20 to +700C
Description
This unique Resonant Cavity Surface-Emitting LED
(RCLED) is designed for optical communications over
Plastic Optical Fiber (POF) in applications such as
IEEE1394b (S100, S200) and 155 Mbps ATM. For very
high speed operation, i.e. above 200 Mbps, an electrical
pre-emphasis circuit is recommended to increase the
bandwidth of the device. ZL60003 is also well suited for
applications where visible light is required, such as in
sensing and positioning.
Features
•
•
•
•
•
•
Optimized wavelength for Plastic optical fiber
High Bandwith
No threshold
Surface emitting
High coupling efficiency
Hermetically sealed
04.7
CASE
01.5
ANODE
CATHODE
0.6
Applications
•
•
•
•
3.7
IEEE1394b
155Mpbs ATM
Homenetworking
Industrial applications
2.5
14
0.4
Side View
5.4
Bottom View
All dimensions in mm.
The chip is isolated from the case.
Figure 1 - Pin Description
Parameter
Fiber-Coupled Power
Optical Power
Beam Divergence (FWHM)
Symbol
Min
Pfiber
1.2
Typ
Max
Unit
Test Condition
mW
IF=30mA (Note1)
Po
2.0
mW
IF=30mA
2Θ1/2
25
deg
IF=30mA
MHz
IF=30mA (Note1)
660
nm
IF=30mA (Note1)
IF=30mA (Note1)
Bandwidth (3dBel)
fc
125
Peak Wavelength
λp
640
Spectral Width (FWHM)
∆λ
20
nm
Forward Voltage
VF
2.3
V
650
IF=30mA
Note: Fiber: POF 980/1000µm Step Index, NA=0.48. For high speed communication, a low NA POF or a graded index POF are recommended.
Table 1 - Optical and Electronic characteristics (25oC Case temperature)
SEMICMF.017
1
ZL60003
Data Sheet
Parameter
Symbol
Limit
Storage Temperature
Tstg
-55 to +1250C
Operating Temperature
Top
-20 to +700C
Electrical Power Dissipation
Ptot
130 mW
IF
40 mA
IFRM
85 mA
Reverse Voltage
VR
5V
Soldering Temperature (2mm from the case for 10 sec.)
Tsld
2600C
Continuous Forward Current (f<10 kHz)
Peak Forward Current (duty cycle<50%,f>1 MHz
Table 2 - Absolute Maximum Ratings
Parameter
Symbol
Min
Typ
Max
Unit
Thermal Resistance - Infinite Heat Sink
Rthjc
200
0C/W
Thermal Resistance - No Heat Sink
Rthja
500
0C/W
Temp. Coefficient - Wavelength
dλ/dTj
0.08
nm/0C
Optical Power - Fiber Coupled
dPf/dTj
-0.7
%/0C
Table 3 - Thermal Characteristics
2
SEMICMF.019
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