ZL60212TGD [ZARLINK]

880 nm High-Performance Single-chip DUPLEX; 880纳米高性能单芯片双面打印
ZL60212TGD
型号: ZL60212TGD
厂家: ZARLINK SEMICONDUCTOR INC    ZARLINK SEMICONDUCTOR INC
描述:

880 nm High-Performance Single-chip DUPLEX
880纳米高性能单芯片双面打印

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文件: 总7页 (文件大小:231K)
中文:  中文翻译
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ZL60212  
880 nm High-Performance Single-chip  
DUPLEX  
Data Sheet  
May 2004  
Ordering Information  
ZL60212TBD TO-46 Package with lens  
ZL60212TDD ST Housing  
ZL60212TGD SMA Housing  
-55°C to +125°C  
Description  
This single-chip device operates as both an Emitter  
and Detector, and transmits data over a single fiber in  
half-duplex mode; therefore, reducing both fiber and  
component costs when compared with traditional  
approaches.  
Features  
Ø4.7  
Ø1.5  
Half Duplex over single fiber  
Single chip solution  
High speed  
Industrial temperature range  
Typical Rated Fiber couple power of 120 µW  
0.6  
3.7  
Applications  
Industrial control systems  
Long reach RS232  
Security systems  
14  
Single fiber Datacom  
0.4  
CASE  
CATHODE  
ANODE  
2.5  
5.4  
Bottom View  
All dimensions in mm.  
The diode chip is isolated from the case.  
TO-46 Package with Lens  
1
Zarlink Semiconductor Inc.  
Zarlink, ZL and the Zarlink Semiconductor logo are trademarks of Zarlink Semiconductor Inc.  
Copyright 2003-2004, Zarlink Semiconductor Inc. All Rights Reserved.  
ZL60212  
Data Sheet  
Optical and Electrical Characteristics - Case Temperature 25°C  
Symbol Min  
Typ Max Unit  
Parameter  
Test Condition  
Fiber-coupled Power  
(Figures 1, 2, and 3)  
(Table 1)  
Pfiber  
80  
120  
µW IF = 60 mA  
Fiber  
62.5/125 µm  
(See notes 1 and  
2)  
Rise and Fall Time  
(10-90%)  
trtf  
fc  
7
10  
ns  
IF = 60 mA  
(no bias)  
Graded  
Index  
Emitting  
Mode  
Bandwidth  
(3 dB)  
50  
MHz IF = 60 mA  
NA = 0.275  
Peak Wavelength  
λp  
∆λ  
VF  
860  
880 890  
50  
nm  
nm  
V
IF = 60 mA  
IF = 60mA  
IF = 60mA  
Spectral Width (FWHM)  
Forward Voltage  
(Figure 5)  
1.9  
2.1  
Responsivity  
(Figures 6, 7, and 8)  
(Table 2)  
R
0.10 0.15  
A/W VR = 1 V  
Fiber  
62.5/125 µm  
λ = 880 nm  
Rise and Fall Time  
(10-90%)  
trtf  
7
10  
ns  
VR = 1 V  
RL = 50 Ω  
(no bias)  
Graded  
Index  
Receiving  
Mode  
Bandwidth  
fc  
50  
MHz VR = 1 V  
NA = 0.275  
RL = 50 Ω  
Capacitance  
Dark Current  
C
Id  
30  
10  
pF  
nA  
VR = 1 V, f 1 MHz  
VR = 1 V  
50  
Note 1: Measured at the exit of 100 meters of fiber.  
Note 2: Rated Fiber coupled power apply only on the TO-46 package, for housing options fiber coupled power is typically 10% less.  
Absolute Maximum Ratings  
Parameter  
Symbol  
Limit  
Storage Temperature  
Tstg  
Top  
Ptot  
IF  
-55 to +125°C  
-55 to +125°C  
160 mW  
80 mA  
Operating Temperature (derating: Figure 4)  
Electrical Power Dissipation (derating: Figure 4)  
Continuous Forward Current (f<10 kHz)  
Peak Forward Current (duty Cycle<50%, f>1 MHz  
Reverse Voltage  
IFRM  
VR  
130 mA  
2.0 V  
Soldering Temperature (2 mm from the case for 10 sec.)  
Tsld  
260°C  
2
Zarlink Semiconductor Inc.  
ZL60212  
Data Sheet  
Thermal characteristics  
Parameter  
Symbol  
Min.  
Typ.  
Max.  
Unit  
Thermal Resistance - Infinite Heat Sing  
Thermal Resistance - No Heat Sink  
Temperature Coefficient - Optical Power  
Temperature Coefficient - Wavelength  
Temperature Coefficient - Responsivity  
Temperature Coefficient - Dark Current  
Rthjc  
Rthja  
200  
500  
°C/W  
°C/W  
%/°C  
nm/°C  
%/°C  
%/°C  
dP/dTj  
dl/dTj  
-0.4  
0.3  
0.2  
2.5  
dR/dTj  
dLd/dTj  
Typical Fiber-Coupled Power  
Core Diameter/Cladding Diameter  
Numerical Aperture  
50/125 µm  
62.5/125 µm  
0.20  
0.275  
55 µW  
120 µW  
Table 1 - Typical Fiber-Coupled Power  
Typical Responsivity  
Core Diameter/Cladding Diameter  
Numerical Aperture  
50/125 µm  
62.5/125 µm  
0.20  
0.275  
0.15 A/W  
0.15 A/W  
Table 2 - Typical Responsivity  
3
Zarlink Semiconductor Inc.  
ZL60212  
Data Sheet  
%
%
100  
100  
z = opt.  
= 62.5  
c
See Note 1.  
µ
m
80  
60  
80  
60  
40  
20  
Note 1  
40  
20  
r
r = opt.  
= 62.5  
See Note 1.  
z
µ
m
c
0
0.5  
0
1.0  
1.5 2.0 2.5 3.0 mm  
0
20  
40  
60  
80 100 µm  
z - Axial Displacement of Fiber  
r - Radial Displacement of Fiber  
Figure 2 - r - Radial Displacement of Fiber  
Figure 1 - z - Axial Displacement of Fiber  
mW  
300  
mA  
100  
50% Duty Cycle  
80  
200  
60  
Infinite  
Heat Sink  
40  
100  
DC  
No Heat Sink  
20  
Heat Sinked  
0
0
0
40  
80  
120  
160  
220%  
o
150 C  
0
50  
100  
Forward Current  
Operating Temperature  
Figure 3 - Forward Current  
Figure 4 - Operating Temperature  
A/W  
0.2  
mA  
200  
0.1  
100  
0
0
0
0
20  
40  
60  
80 100 C  
1
2
3V  
Emitter and Detector Temperature  
Forward Voltage  
Figure 5 - Forward Voltage  
Figure 6 - Emitter and Detector Temperature  
4
Zarlink Semiconductor Inc.  
ZL60212  
Data Sheet  
AW  
0.2  
AW  
0.2  
0.1  
0.1  
0
0
0
-50 -30  
0
10  
30 50 C  
870  
880  
890nm  
Emitter Minus Detector Temperature  
Emitter Wavelength  
Figure 7 - Emitter Minus Detector Temperature  
Figure 8 - Emitter Wavelength  
5
Zarlink Semiconductor Inc.  
BOTTOM VIEW ( 10 : 1 )  
SIDE VIEW  
13,46`0,76  
3,8  
2,54  
0,6  
0,03  
0,04  
+
0,05  
0
+
n0,45  
(3x)  
n1,17  
(3x)  
-
-
R2,7  
45°  
Lens n1.5`0.05  
R0,2 max (4x)  
0,3 max glass overmould (2x)  
R0,4 max  
NOTES:-  
1. All dimensions in mm.  
2. General tol. ISO-2768-mK.  
3. Coating:  
Case: Ni 1,5-2,5 µm.  
Header: Ni 2-3 µm / Au min 1,32 µm.  
© Zarlink Semiconductor 2002. All rights reserved.  
Package code  
TB  
ISSUE  
ACN  
1
Drawing type  
Previous package codes  
Package drawing, TO-46 with lens  
JS004076R1A  
22-MAR-03  
DATE  
Title  
APPRD. TD/BE  
JS004076  
For more information about all Zarlink products  
visit our Web Site at  
www.zarlink.com  
Information relating to products and services furnished herein by Zarlink Semiconductor Inc. or its subsidiaries (collectively “Zarlink”) is believed to be reliable.  
However, Zarlink assumes no liability for errors that may appear in this publication, or for liability otherwise arising from the application or use of any such  
information, product or service or for any infringement of patents or other intellectual property rights owned by third parties which may result from such application or  
use. Neither the supply of such information or purchase of product or service conveys any license, either express or implied, under patents or other intellectual  
property rights owned by Zarlink or licensed from third parties by Zarlink, whatsoever. Purchasers of products are also hereby notified that the use of product in  
certain ways or in combination with Zarlink, or non-Zarlink furnished goods or services may infringe patents or other intellectual property rights owned by Zarlink.  
This publication is issued to provide information only and (unless agreed by Zarlink in writing) may not be used, applied or reproduced for any purpose nor form part  
of any order or contract nor to be regarded as a representation relating to the products or services concerned. The products, their specifications, services and other  
information appearing in this publication are subject to change by Zarlink without notice. No warranty or guarantee express or implied is made regarding the  
capability, performance or suitability of any product or service. Information concerning possible methods of use is provided as a guide only and does not constitute  
any guarantee that such methods of use will be satisfactory in a specific piece of equipment. It is the user’s responsibility to fully determine the performance and  
suitability of any equipment using such information and to ensure that any publication or data used is up to date and has not been superseded. Manufacturing does  
not necessarily include testing of all functions or parameters. These products are not suitable for use in any medical products whose failure to perform may result in  
significant injury or death to the user. All products and materials are sold and services provided subject to Zarlink’s conditions of sale which are available on request.  
Purchase of Zarlink’s I2C components conveys a licence under the Philips I2C Patent rights to use these components in and I2C System, provided that the system  
conforms to the I2C Standard Specification as defined by Philips.  
Zarlink, ZL and the Zarlink Semiconductor logo are trademarks of Zarlink Semiconductor Inc.  
Copyright Zarlink Semiconductor Inc. All Rights Reserved.  
TECHNICAL DOCUMENTATION - NOT FOR RESALE  

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