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PDF ZL60114 Data sheet ( Hoja de datos )

Número de pieza ZL60114
Descripción (ZL60113 / ZL60114) 12 x 3.125 Gbps Parallel Fiber Optic Link Transmitter
Fabricantes Zarlink Semiconductor 
Logotipo Zarlink Semiconductor Logotipo



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No Preview Available ! ZL60114 Hoja de datos, Descripción, Manual

ZL60113/4
12 x 3.125 Gbps Parallel Fiber Optic Link
Transmitter and Receiver
Data Sheet
Features
www.DataSheet4U.com
12 parallel channels, total 37.5 Gbps capacity
Data rate up to 3.125 Gbps per channel
850 nm VCSEL array
Link reach 200 m with 50/125 µm 500 MHz.km
fiber at 3.125 Gbps
Channel BER better than 10-12
Industry standard MPO/MTPribbon fiber
connector interface
Pluggable MegArray® ball grid array connector
Optionally available with EMI shield
Laser class 1M IEC 60825-1:2001 compliant
Power supply 3.3 V
Compatible with industry MSA
Applications
• High-speed interconnects within and between
switches, routers and transport equipment
• Low cost SONET/SDH VSR (Very Short Reach)
OC-192/STM64 connections
• InfiniBand® connections
• General high-bandwidth density interconnections
May 2007
Ordering Information
ZL60113MLDA Parallel Fiber Transmitter
ZL60114MLDA Parallel Fiber Receiver
ZL6011xMMDA Parallel Fiber Module with
EMI gasket
0°C to +80°C
Description
The ZL60113 and ZL60114 together make a high speed
transmitter/receiver pair for parallel fiber applications.
The ZL60113 transmitter module converts parallel
electrical input signals via a laser driver and a VCSEL
array into parallel optical output signals at a wavelength
of 850 nm.
The ZL60114 receiver module converts parallel optical
input signals via a PIN photodiode array and a
transimpedance and limiting amplifier into electrical
output signals.
The modules are pluggable each fitted with an industry-
standard MegArray® BGA connector. This provides
ease of assembly on the host board and enables
provisioning of bandwidth on demand.
Reliability assurance is based on Telcordia GR-468-
CORE and the parts are compliant to the EU directive
2002/95/EC issued 27 January 2003 [RoHS].
Exemption 6 & 7
1
Zarlink Semiconductor Inc.
Zarlink, ZL and the Zarlink Semiconductor logo are trademarks of Zarlink Semiconductor Inc.
Copyright 2007, Zarlink Semiconductor Inc. All Rights Reserved.

1 page




ZL60114 pdf
ZL60113/4
Data Sheet
Classified in accordance with IEC 60825-1/A2:2001, IEC 60825-2: 2000
Class 1 M Laser Product
Emitted wavelength: 840 nm
www.DataSheet4U.com
DIN1+
DIN1-
DIN12+
DIN12-
VCSEL
Driver
VCSEL
Array
VCSEL Driver Controller
VCC VEE RESET Tx_DIS Tx_EN FAULT
Figure 2 - ZL60113 Transmitter Block Diagram
1
2
3
4
5
6
7
8
9
10
11
12
Front view - MTP key up
Ch12 Ch11 Ch10 Ch9 Ch8 Ch7 Ch6 Ch5 Ch4 Ch3 Ch2 Ch1
Host circuit board
Table 1 - Transmitter Optical Channel Assignment
5
Zarlink Semiconductor Inc.

5 Page





ZL60114 arduino
ZL60113/4
Data Sheet
ZL60114 Receiver Specifications
All parameters below require operating conditions according to “Recommended Operating Conditions,” on page 3
and a termination load of 100 differential at the electrical output.
Parameter
Symbol
Min.
Max.
Unit
Optical Parameters
Receiver sensitivity (OMA) (50/125 µm MMF)1
Center wavelength
Return loss2
Stressed receiver sensitivity (OMA)3
Total link jitter contribution (peak to peak)4
Deterministic link jitter contribution (peak to peak)5
Channel to channel skew6
Signal detect assert
Signal detect de-assert
Electrical Parameters
SOMA
λC
RL
SSOMA
TJL
DJL
tSK
PSA
PSD
38
830
12
80
-30
755
860
0.65
0.27
100
-15
µW
nm
dB
µW
UI
UI
ps
dBm
dBm
Power dissipation
PD 1.5 W
Supply current
Differential output voltage amplitude (peak to peak)7
www.DataSheet4U.com
Output differential load impedance
ICC 450 mA
VOUT
500
800
mVp-p
ZL 80 120
Electrical output rise time (20 - 80%)
tRE 120 ps
Electrical output fall time (20 - 80%)
tFE 120 ps
1. Optical modulation amplitude are peak to peak values. Receiver sensitivity is measured using a source that does not degrade the
sensitivity measurement, i.e. ideal source with fast rise/fall time and low RIN. Receive power for a channel is measured for a BER of
10-12 and 6 dB extinction ratio and the other 11 channels operating with incident power of 6 dB above the channel under test.
2. Return loss is measured as defined in TIA/EIA-455-107A Determination of Component Reflectance or Link/System Return Loss Us-
ing a Loss Test Set.
3. Based on Gigabit Ethernet Link model. See “Link Model Parameters,” on page 17 and receiver sensitivity specified.
4. Total link jitter equals TP4 - TP1.
5. Deterministic jitter is informative. Deterministic link jitter equals TP4 - TP1.
6. Channel skew is defined for the condition of equal amplitude, zero ps skew signals applied to the receiver inputs.
7. Differential output voltage is defined as the peak to peak value of the differential voltage between DOUT+ and DOUT- and measured
with a 100 differential load connected between DOUT+ and DOUT-. Data outputs are CML compatible.
11
Zarlink Semiconductor Inc.

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