MAX3668EHJ Maxim Integrated Products, MAX3668EHJ Datasheet - Page 6

IC LSR DRVR 622MBPS 3.63V 32TQFP

MAX3668EHJ

Manufacturer Part Number
MAX3668EHJ
Description
IC LSR DRVR 622MBPS 3.63V 32TQFP
Manufacturer
Maxim Integrated Products
Type
Laser Diode Driver (Fiber Optic)r
Datasheet

Specifications of MAX3668EHJ

Data Rate
622Mbps
Number Of Channels
1
Voltage - Supply
3.14 V ~ 5.5 V
Current - Supply
38mA
Current - Modulation
75mA
Current - Bias
80mA
Operating Temperature
-40°C ~ 85°C
Package / Case
32-TQFP, 32-VQFP
Mounting Type
Surface Mount
Operating Supply Voltage
3.3 V
Supply Current
38 mA
Maximum Power Dissipation
929 mW
Mounting Style
SMD/SMT
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

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Quantity
Price
Part Number:
MAX3668EHJ
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+3.3V, 622Mbps SDH/SONET
Laser Driver with Automatic Power Control
Figure 3. Functional Diagram
The MAX3668 laser driver consists of two main parts: a
high-speed modulation driver and a laser-biasing block
with Automatic Power Control (APC). The circuit is opti-
mized for low-voltage (+3.3V) operation.
The output stage is composed of a high-speed differential
pair and a programmable modulation current source.
Since the modulation output drives a maximum current
of 75mA into the laser with a 230ps edge speed, large
transient voltage spikes can be generated due to the
parasitic inductance. These transients and the laser for-
ward voltage leave insufficient headroom for the proper
operation of the laser driver if the modulation output is
DC-coupled to the laser diode. To solve this problem,
the MAX3668’s modulation output is designed to be
6
_______________________________________________________________________________________
ENABLE
DATA+
DATA-
Detailed Description
MAX3668
V
CC
100k
MODSET
R
MODSET
R
BIASMAX
165X
BIASMAX
AC-coupled to the cathode of a laser diode. A simpli-
fied functional diagram is shown in Figure 3.
The MAX3668 modulation output is optimized for driv-
ing a 20Ω 10Ω load; the minimum required voltage at
OUT+ is 2.0V. Modulation current swings of 75mA are
possible. To interface with the laser diode, a damping
resistor (R
RC shunt network may be used to compensate for the
laser-diode parasitic inductance, thereby improving the
optical output aberrations and duty-cycle distortion.
At a 622Mbps data rate, any capacitive load at the cath-
ode of a laser diode degrades the optical output perfor-
mance. Since the BIAS output is directly connected to the
laser cathode, minimize the parasitic capacitance associ-
ated with this pin by using an inductor to isolate the BIAS
pin from the laser cathode.
FAIL
5X
DETECTOR
FAILURE
40X
C
D
APC
) is required for impedance matching. An
CAPC
I
MD
APCSET
R
APCSET
I
BIAS
BIAS
MD
OUT+
OUT-

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