参数资料
型号: ADN2871ACPZ-RL7
厂商: Analog Devices Inc
文件页数: 13/20页
文件大小: 0K
描述: IC LASER DRIVER 4.25GBPS 24LFCSP
标准包装: 1,500
类型: 激光二极管驱动器(光纤)
数据速率: 4.25Gbps
通道数: 1
电源电压: 3 V ~ 3.6 V
电流 - 电源: 32mA
电流 - 调制: 90mA
电流 - 偏置: 100mA
工作温度: -40°C ~ 85°C
封装/外壳: 24-VFQFN 裸露焊盘,CSP
供应商设备封装: 24-LFCSP-VQ(4x4)
包装: 带卷 (TR)
安装类型: 表面贴装

ADN2871
THEORY OF OPERATION
Laser diodes have a current-in to light-out transfer function, as
shown in Figure 28. Two key characteristics of this transfer
function are the threshold current, Ith, and the slope in the
linear region beyond the threshold current, referred to as the
slope efficiency, LI.
CONTROL METHODS
The ADN2871 has two methods for setting the average power
(P AV ) and extinction ratio (ER). The average power and
extinction ratio can be voltage-set using the output of a
microcontroller’s voltage DACs to provide controlled reference
P1
P AV
ER =
P AV =
P1
P O
P1 + P O
2
Δ P
voltages, PAVREF and ERREF. Alternatively, the average power
and extinction ratio can be resistor-set using potentiometers at
the PAVSET and ERSET pins, respectively.
VOLTAGE SETPOINT CALIBRATION
The ADN2871 allows interface to a microcontroller for both
P O
Δ I
LI =
Δ P
Δ I
control and monitoring (see Figure 29). The average power and
extinction ratio can be set using the microcontroller DACs to
provide controlled reference voltages, PAVREF and ERREF.
I MOD × R ERSET
Ith CURRENT
Figure 28. Laser Transfer Function
LASER CONTROL
PAVREF = P AV × R SP × R PAV
ERREF =
100
(V)
(V)
Typically, laser threshold current and slope efficiency are both
functions of temperature. For FP- and DFB-type lasers, the
threshold current increases and the slope efficiency decreases
with increasing temperature. In addition, these parameters vary
as the laser ages. To maintain a constant optical average power
and a constant optical extinction ratio over temperature and
laser lifetime, it is necessary to vary the applied electrical bias
current and modulation current to compensate for the changing
LI characteristics of the laser.
Average Power Control Loop (APCL)
The APCL compensates for changes in Ith and LI by varying
IBIAS. Average power control is performed by measuring the
MPD current, I MPD . This current is bandwidth-limited by the
MPD. This is not a problem because the APCL is required to
respond to the average current from the MPD.
where:
R SP is the optical responsivity (in amperes per watt).
P AV is the average power required.
R PAV = R ERSET = 1 kΩ.
I MOD is the modulation current.
In voltage setpoint mode, R PAV and R ERSET must be 1 kΩ resistors
with a 1% tolerance and a temperature coefficient of 50 ppm/°C.
Power-On Sequence in Voltage Setpoint Mode
Note that during power-up, there is an internal sequence that
allows 25 ms before enabling the alarms; therefore, the
customer must ensure that the voltages for PAVREF and ERREF
are active within 20 ms after ramp-up of the power supply. If the
PARREF and ERREF voltages are supplied after 25 ms, then the
part alarms and FAIL is activated.
Extinction Ratio (ER) Control
ER control is implemented by adjusting the modulation current.
Temperature calibration is required to adjust the modulation
current to compensate for variations of the laser characteristics
with temperature.
Rev. A | Page 13 of 20
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