M02067 [TE]
Rise and fall times <150 ps;型号: | M02067 |
厂家: | TE CONNECTIVITY |
描述: | Rise and fall times <150 ps |
文件: | 总20页 (文件大小:414K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
M02067 -12/-13
3.3 Volt Laser Driver IC for GbE and Fibre Channel to 2.1 Gbps
Rev V4
Applications
Features
•
•
•
•
Gigabit Ethernet
Fibre Channel
2 x Fibre Channel
GBIC
•
•
•
•
Rise and fall times <150 ps
DC or AC-coupled modulation drive
Independently programmable laser bias and modulation currents
Bias current to 100 mA and modulation current to 85 mA at
V
= 3.3V
CC
•
Automatic laser power control, with programmable temperature
compensation and ‘slow-start’
•
•
Bias and modulation current monitors
Operates with +3.3V supply
The M02067 is a highly integrated, programmable laser driver intended for datacom applications up to 2.1 Gbps.
Using differential PECL data inputs, the M02067 supplies the bias and modulation current for driving an edge-
emitting laser. The modulation output can be DC-coupled to the laser diode, giving a significant power saving over
AC-coupled operation.
The M02067 includes automatic power control to maintain a constant average laser output power over temperature
and life. In addition, the modulation current is temperature compensated to minimize variation in extinction ratio
over temperature.
Output flags indicate laser end of life as well as failure of the APC circuitry to maintain average output power.
Functional Block Diagram
V
CC
OUT-
OUT+
RD
R
SHUNT
C
SHUNT
V
CC
DATA
GNDA
X100
DIS
ENA
BIAS
I
MON
X60
BIAS
I
BIAS
55
X1
PD
I
Failure
Detect
MOD
MOD
55
R
FAIL
MON
MPCSET
V
REF
OCA
SET
C
MPC
OCA
V
CC
1
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M02067 -12/-13
3.3 Volt Laser Driver IC for GbE and Fibre Channel to 2.1 Gbps
Rev V4
Ordering Information
Part Number
Package
M02067G-12
M02067G-13
M02067-TEVM
M02067-E-EVM
QFN package (-12 marking)
QFN package (-12• marking)
TO-Can optical evaluation board
Electrical evaluation board
* The letter “G” designator after the part number indicates that the device is RoHS-compliant.
Revision History
Revision
Level
Date
Description
V4
Release
Release
Release
May 2015
July 2011
Updated logos and page layout. No content changes.
G (V3)
F (V2)
Added M02067G-13 ordering information and screen limit.
January 2011
Revised RMODSET value in Table 1-3, Note 4.
Revised production test conditions in Table 1-5.
E (V1)
Release
November 2010
Updated ordering information, packaging information. Added DC screen information.
Replaced all CX02067 references with M02067.
D
C
B
A
Preliminary
Preliminary
Preliminary
Advance
October 2007
June 2006
Updated ordering information.
Added RoHS package information, updated format, no specification changes.
May 2005
Updated to new data sheet format.
Advance.
October 2003
M02067-12 and M02067-13 Marking Diagrams
M02067G-12
M02067G-13
- 12
- 12
02067G
XXXXX
YYWW CC
Part Number
02067G
XXXXX
YYWW CC
Lot Number
Date and Country Code
2
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M02067 -12/-13
3.3 Volt Laser Driver IC for GbE and Fibre Channel to 2.1 Gbps
Rev V4
Top View Pin Configuration
(See Figure 4-1 for detailed drawing)
24
23
22
21
20
1
19
ENA
DIS
OCA
SET
SET
2
18
MOD
TC
BIAS
MOD
3
4
5
6
17
16
15
14
MON
MON
FAIL
OCA
START
SLOPE
4mm
TC
2067
GND
C
MPC
7
13
GND
PD
8
9
10
11
12
4mm
3
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M02067 -12/-13
3.3 Volt Laser Driver IC for GbE and Fibre Channel to 2.1 Gbps
Rev V4
1.0 Product Specification
1.1
Absolute Maximum Ratings
These are the absolute maximum ratings at or beyond which the IC can be expected to fail or be damaged.
Reliable operation at these extremes for any length of time is not implied.
Table 1-1.
Absolute Maximum Ratings
Parameter
Rating
Units
Power supply (VCC-GND)
-0.5 to +6.0
120
V
Maximum laser bias current
mA
mA
°C
Maximum laser modulation current (through OUT+, OUT-)
Storage temperature
100
-65 to +150
-40 to +120
Junction temperature (die)
°C
1.2
Recommended Operating Conditions
Table 1-2.
Recommended Operating Conditions
Parameter
Rating
Units
Power supply (VCC-GND)
3.3 10%
-40 to +85
V
Operating ambient temperature
°C
4
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M02067 -12/-13
3.3 Volt Laser Driver IC for GbE and Fibre Channel to 2.1 Gbps
Rev V4
1.3
DC Characteristics
Table 1-3.
DC Characteristics
Parameter
Conditions
Min
Typ
Max
Units
Supply current
Excluding IBIAS and IMOD but with
IBIAS and IMOD set to maximum
-
52
64
mA
Bias current adjust range
Limited by IREF across temperature
range
4
-
-
100
mA
Bias current with output disabled
Maximum bias current limit
Tx-Dis = HIGH
-
-
300
-
µA
100(1)
2
TA = +85 °C (adjustable)
mA
Monitor diode reverse bias voltage
-
-
-
-
1000
-
V
µA
V
Monitor diode current adjustment range
40
TTL/CMOS input HIGH voltage (enable/
disable)
2.0
TTL/CMOS input LOW voltage (enable/
disable)
-
-
0.8
V
CMOS output HIGH voltage (Fail,OCA)
CMOS output LOW voltage (Fail,OCA)
Differential input impedance
2.4
-
-
-
-
-
0.4
-
V
V
-
Data and clock inputs
2.5
kΩ
V
Common-mode input voltage‘
VCC -1.38
VCC - VIN(Diff)
4
Self-biased common mode input voltage Data and clock inputs
VCC -1.38
-
VCC -0.47
V
Ratio of bias monitoring current, and
bias current
55
Ratio of modulation monitoring current,
and modulation current
Tx_Disable negate time (2)
Tx_Disable assert time (3)
Modulation Off Current (4)
55
.5
CMPC = 3.8 nF
1
1
ms
µs
Measured at pin OUT-,
temperature at 75 °C
300
µA
V
CC = +3.3V 10%, TA = -40 °C to +85 °C, unless otherwise noted
Notes:
(1)Condition when pin 19 OCASET is connected to ground.
(2)Time for optical power to reach 90% of its mean level following negation of Tx_Disable.
(3)Time for optical power to reach 10% of its mean level following assertion of Tx_Disable.
(4)Data input voltage (Vpin21 – Vpin22) > 300 mV, ENA (pin 1) connected to VCC, DIS (pin 2) connected to ground. RMODSET = 5.5 kΩ,
resistance to ground at GNDA = 0.35 Ω.
5
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M02067 -12/-13
3.3 Volt Laser Driver IC for GbE and Fibre Channel to 2.1 Gbps
Rev V4
1.4
AC Characteristics
Table 1-4.
AC Characteristics
Parameter
Conditions
= 2 x (DIN+HIGH-DIN+LOW
Min.
Typ.
Max.
Units.
Differential input voltage
Modulation current range
)
300
2.5
-
-
-
-
-
1860
85
mV
mA
Modulation current with output disabled DIS = HIGH
300
µA
104
Programmable range for modulation
current temperature coefficient
Adjustable
500
ppm/°C
Programmable temperature at which
modulation current TC compensation
enables
Programmed by choice of RTCSLOPE
20
-
60
°C
Modulation output rise/fall times
20% to 80% into 25Ω, with matching network
-
-
150
ps
Overshoot of modulation output current Into 25Ω load, with matching network
-5
-
-
-
+5
50
%
Modulation output Pulse width
distortion
Measured using alternating 1-0 pattern
ps
Modulation output deterministic jitter
Peak-to-peak. Measured into 25Ω load using 27-
-
-
50
ps
1 PRBS at 2.1 Gbps
Notes:
VCC = +3.3V 10%, TA = -40 °C to +85 °C, unless otherwise noted
1.5
DC Screen
The M02067 is screened under the following conditions.
T = 25 °C, V = 3.3 V, R
= 8.46 kΩ
A
CC
MODSET
Table 1-5.
DC Screen
Part Number
Parameter
Production Test Conditions
Screen Limits
Modulation Current
Measured at pin OUT-
41.8 mA min. to 50.8 mA max
M02067G-12
Load resistor at OUT- is 24 Ω connected to V
CC
CC
Modulation Current
Measured at pin OUT-
41.8 mA min. to 48.0 mA max
M02067G-13
Load resistor at OUT- is 24 Ω connected to V
6
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M02067 -12/-13
3.3 Volt Laser Driver IC for GbE and Fibre Channel to 2.1 Gbps
Rev V4
2.0 Pin Description
2.1
Pin Descriptions
Table 2-1.
Pin Descriptions
Pin Number
Pin Name
Function
1
2
3
ENA
DIS
Bias and modulation output enable (TTL/CMOS). Logic HIGH for normal operation.
Bias and modulation output disable (TTL/CMOS). Logic LOW for normal operation.
BIASMON
Bias monitor. Connect a resistor between this pin and VCC to monitor bias current. Connect to VCC if not used.
4
MODMON
Modulation monitor. Connect a resistor between this pin and VCC to monitor modulation current. Connect to
VCC if not used.
5
FAIL
Mean power control failure indicator (TTL/CMOS). Goes LOW when control loop is no longer able to maintain
constant current at PD.
6
7
8
9
OCA
GND
BIAS
VCC
Over-current alarm (TTL/CMOS). Goes LOW when IBIAS exceeds the preset bias current limit.
Ground.
Laser bias current output.
Power supply.
10
11
12
OUT+
OUT-
GNDA
Positive modulation current output. Sinks current when DIN is HIGH.
Negative modulation current output. Sinks current when DIN is HIGH.
Ground to output stage.
13
PD
Monitor photodiode input. This input is connected to the monitor photodiode anode for automatic power
control.
14
CMPC
Mean power control dominant pole capacitor. Connect to VCC via a capacitor.
Ground.
15
16
GND
TCSLOPE
Connecting a resistor between this pin and ground sets the temperature coefficient of IMODSET.
17
TCSTART
Secondary temperature coefficient of IMOD. A resistor on this pin to ground sets the threshold temperature at
which compensation starts.
18
19
20
21
MODSET
OCASET
VCC
Modulation current set. Connect a resistor between this pin and ground to set.
Over-current alarm set. Connect a resistor between this pin and ground to set.
Power supply.
DIN
Positive data input (PECL). Self biased.
7
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M02067 -12/-13
3.3 Volt Laser Driver IC for GbE and Fibre Channel to 2.1 Gbps
Rev V4
Table 2-1.
Pin Descriptions (Continued)
Pin Number
Pin Name
Function
22
23
DIN
VCC
Negative data input (PECL). Self biased.
Power supply.
Ground.
24
GND
Note:
Center pad (pad 25) should be connected to ground.
8
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M02067 -12/-13
3.3 Volt Laser Driver IC for GbE and Fibre Channel to 2.1 Gbps
Rev V4
3.0 Functional Description
3.1
Overview
The M02067 laser driver consists of a high-speed modulation driver and a laser bias generator with mean power
control (MPC). It is optimized for high speed, low power operation at 3.3V supply. Figure 3-1 demonstrates the
functionallity of the M02067.
Figure 3-1. M02067 Block Diagram
V
CC
OUT-
OUT+
RD
R
SHUNT
C
SHUNT
V
CC
DATA
GNDA
X100
DIS
ENA
BIAS
I
MON
X60
BIAS
I
BIAS
55
X1
PD
I
Failure
Detect
MOD
MOD
55
R
FAIL
MON
MPCSET
V
REF
OCA
SET
C
OCA
MPC
V
CC
9
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M02067 -12/-13
3.3 Volt Laser Driver IC for GbE and Fibre Channel to 2.1 Gbps
Rev V4
3.2
Features
•
•
•
•
•
•
•
Rise and fall times <150 ps
DC or AC-coupled modulation drive
Independently programmable laser bias and modulation currents
Bias current to 100 mA and modulation current to 85 mA at V = 3.3V
CC
Automatic laser power control, with programmable temperature compensation and ‘Slow-Start’
Bias and modulation current monitors
Operates with +3.3V supply
3.3
Modulator
The modulator output stage is designed to drive up to 85 mA in either AC-coupled or DC-coupled mode. DC-
coupled performance depends on the laser used.
The M02067 modulation output is optimized for driving a 25Ω load; the minimum required voltage at OUT+ and
OUT- is 0.6V. To interface with the laser diode, a matching resistor (RD) is required for impedance matching. An
RC shunt network is necessary to compensate for the laser diode parasitic inductance, thereby improving the
optical eye. Typical values are R
= 51Ω, C
= 3.3 pF
SHUNT
SHUNT
Any capacitive loading at the cathode of a laser diode will degrade the optical output performance. An inductor is
used to isolate the BIAS pin from the laser cathode.
Figure 3-2 shows the typical I
vs R
characteristic.
MODSET
MOD
Figure 3-2. Modulation Current for Given R
Resistor
MODSET
120
100
80
60
40
20
0
0
4000
8000
12000 16000 20000 24000 28000 32000
R
(Ω)
MODSET
10
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M02067 -12/-13
3.3 Volt Laser Driver IC for GbE and Fibre Channel to 2.1 Gbps
Rev V4
Figure 3-3. Fibre Channel 1.0625 Gbps Electrical Eye Diagram
Fibre Channel 1.0625 Gbps
30 mApp Modulation Current
Figure 3-4. Gigabit Ethernet 1.25 Gbps Electrical Eye Diagram
Gigabit Ethernet
1.25 Gbps
30 mApp Modulation Current
11
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M02067 -12/-13
3.3 Volt Laser Driver IC for GbE and Fibre Channel to 2.1 Gbps
Rev V4
Figure 3-5. 2 x Fibre Channel 2.125 Gbps Electrical Eye Diagram
2 x Fibre Channel
2.125 Gbps
30 mApp Modulation Current
3.4
Mean Power Control Loop
The M02067 employs a Mean Power Control (MPC) loop to maintain a constant optical output power from the laser
across temperature, time and power supply variations. Laser diodes used for communication purposes come with
integrated photo-diodes to monitor the output power and provide the feedback for the MPC loop. The MPC loop (or
its integrated safety features) cannot be used without this feedback.
The MPC loop adjusts the laser bias current so that the monitor current from the photo-diode is matched to a
reference current set by a single external resistor, R
. The time constant of the MPC loop is determined by
MPCSET
C
.
MPC
Table 3-1.
MPC Loop Bandwidth
6 dB cutoff frequency
CMPC
0
17 MHz
100 kHz
10 kHz
1 kHz
1 nF
10 nF
100 nF
(at 6 dB cut off frequency) vs C
(for nominal process)
MPC
Figure 3-6 shows the bias current vs RMPCSET over the full operating temperature range for a typical laser and
monitor photodiode.
12
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M02067 -12/-13
3.3 Volt Laser Driver IC for GbE and Fibre Channel to 2.1 Gbps
Rev V4
Figure 3-6. Bias Current vs. R
MPCSET
120
100
80
60
40
20
0
0
5000 10000 15000 20000 25000 30000 35000
R
Ω
MPCSET
-40
0
25
50
85
Symbols shown indicate °C
There are two safety features integrated into the MPC loop; an Over-Current Alarm and an MPC loop failure alarm.
The Over-Current Alarm (OCA) circuit limits the maximum bias current generated by the M02067. The bias current
limit is set by an external resistor to ground, R
. When this limit is exceeded the OCA pin is asserted LOW.
OCA
Figure 3-7 shows the maximum bias current limit vs R
.
OCA
Figure 3-7. Maximum Bias Current vs. ROCA
100
90
80
70
60
50
40
30
20
10
0
0
10000
20000
30000
40000
R
(Ω )
OCA
13
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M02067 -12/-13
3.3 Volt Laser Driver IC for GbE and Fibre Channel to 2.1 Gbps
Rev V4
The MPC loop FAILure alarm (FAIL) is generated by the M02067 when the MPC loop can no longer maintain the
constant current set by R . When the MPC loop failure alarm is triggered the FAIL pin is asserted LOW.
MPCSET
3.5
Enable Control
The M02067 incorporates a dual polarity laser enable function with both enable (ENA) and disable (DIS) inputs.
Under normal operating conditions the ENA will be HIGH while DIS is LOW. Should ENA go LOW (or DIS go
HIGH) both the bias and modulation currents will be disabled.
Wire OR-ing the OCA and FAIL pins externally and connecting them to the ENA pin will automatically disable the
bias and modulation currents when a failure occurs.
3.6
Current Monitors
The M02067 features bias and modulation current monitor outputs. The BIAS
output sinks a current equal to
MON
nominally 1/55 of the laser bias current (I
). The MOD
output sinks a current equal to nominally 1/55 of the
BIAS
MON
laser modulation current (I
). BIAS
and MOD
should be connected through a pull-up resistor to V
.
MOD
MON
MON
CC
Choose a pull-up resistor value that ensures a voltage at BIAS
greater than V
- 1.6V and a voltage at
MON
CC
MOD
greater than V - 1.0V. These pins should be tied to V if not used.
MON
CC CC
3.7
Slow-Start
For laser safety and reliability, the M02067 incorporates a slow-start circuit that provides a delay of approximately
200 ns before enabling the laser diode.
14
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M02067 -12/-13
3.3 Volt Laser Driver IC for GbE and Fibre Channel to 2.1 Gbps
Rev V4
3.8
Temperature Compensation
The M02067 features built in temperature compensation of the modulation current is set using two external
resistors, TC and TC see Figure 3-8.
SLOPE
START
Current pulled from TC
adjusts the slope of the temperature compensation whereas current pulled from
SLOPE
TC
sets the threshold temperature for the coefficient.
START
Figure 3-8. Temperature Compensation
80mA
Δ1
TCSLOPE
Δ 2
RMPCSET
-40°C
0mA
+80°C
TCSTART
Figures 3-9 through 3-11 show I
temperature compensation using a combination of resistor values for
MOD
RTC
and RTC
SLOPE
START.
15
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M02067 -12/-13
3.3 Volt Laser Driver IC for GbE and Fibre Channel to 2.1 Gbps
Rev V4
Figure 3-9.
0.06
0.058
0.056
0.054
0.052
0.05
0.048
0.046
0.044
0.042
0.04
-40
-20
0
20
40
60
80
100
Temperature (°C)
5000
10000
20000
32000
RTC
RTC
- Figures shown are in Ω
SLOPE
START
= 0Ω , V = 3.3V
CC
Figure 3-10.
0.085
0.08
0.075
0.07
0.065
0.06
0.055
0.05
0.045
0.04
-40
-20
0
20
40
60
80
100
Temperature (°C)
5000
10000
20000
32000
RTC
RTC
- Figures shown are in Ω
SLOPE
START
Ω
= 250 , V = 3.3V
CC
16
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M02067 -12/-13
3.3 Volt Laser Driver IC for GbE and Fibre Channel to 2.1 Gbps
Rev V4
Figure 3-11.
0.1
0.09
0.08
0.07
0.06
0.05
0.04
-40
-20
0
20
40
60
80
100
Temperature (°C)
5000
10000
20000
32000
RTC
RTC
- Figures shown are in Ω
SLOPE
START
Ω
= 400 , V = 3.3V
CC
3.9
Laser eye safety
All lasers for commercial and industrial use, including lasers for optical communications are classified for eye
safety considerations in IEC 60825-1, CDRH and other national standards.
The M02067 alone does NOT ensure that any application within which it is used will be fully compliant with the relevant
eye-safety requirements.
NOTE:
It remains the sole responsibility of the user of this component to ensure that the application within which the M02067
is used meets all eye-safety requirements.
17
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M02067 -12/-13
3.3 Volt Laser Driver IC for GbE and Fibre Channel to 2.1 Gbps
Rev V4
4.0 Packaging Specification
4.1
Packaging Specification
Table 4-1.
Packaging Specifications
Parameter
Value
Assembly location
X dimension (mm)
Y dimension (mm)
Z dimension (mm)
Pad standoff (mm)
Terminal finish
ASE Malaysia
4.00 0.10
4.00 0.10
0.90 0.10
0.02 + 0.03, -0.02
100% Matte SN
Laser
Marking
18
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M02067 -12/-13
3.3 Volt Laser Driver IC for GbE and Fibre Channel to 2.1 Gbps
Rev V4
Figure 4-1. M02067 QFN24 Package Outline Drawing
19
M/A-COM Technology Solutions Inc. (MACOM) and its affiliates reserve the right to make changes to the product(s) or information contained herein without notice.
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M02067 -12/-13
3.3 Volt Laser Driver IC for GbE and Fibre Channel to 2.1 Gbps
Rev V4
M/A-COM Technology Solutions Inc. All rights reserved.
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20
M/A-COM Technology Solutions Inc. (MACOM) and its affiliates reserve the right to make changes to the product(s) or information contained herein without notice.
Visit www.macom.com for additional data sheets and product information.
For further information and support please visit:
http://www.macom.com/support
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