参数资料
型号: ADN2870ACPZ-RL7
厂商: Analog Devices Inc
文件页数: 15/20页
文件大小: 0K
描述: IC LSR DRVR 3.3GPBS 3.6V 24LFCSP
标准包装: 1,500
类型: 激光二极管驱动器(光纤)
数据速率: 3.3Gbps
通道数: 1
电源电压: 3 V ~ 3.6 V
电流 - 电源: 30mA
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
ADN2870
V CC
PHOTODIODE
PAVSET
ADN2870
μC ADC
INPUT
R
Figure 31. Single Measurement of I MPD Across a
Sense Resistor in Resistor Setpoint I MPD Monitoring
LOOP BANDWIDTH SELECTION
To ensure that the ADN2870 control loops have sufficient
bandwidth, the average power loop capacitor (PAVCAP) and
the extinction ratio loop capacitor (ERCAP) are calculated
using the laser slope efficiency and the average power required.
For resistor setpoint control:
POWER CONSUMPTION
The ADN2870 die temperature must be kept below 125°C. The
LFCSP package has an exposed paddle that should be connected
such that it is at the same potential as the ADN2870 ground pins.
Power consumption can be calculated as
I CC = I CC min + 0.3 I MOD
P = V CC × I CC + (I BIAS × V BIAS_PIN ) + I MOD (V MODP_PIN + V MODN_PIN )/ 2
T DIE = T AMBIENT + θ JA × P
Thus, the maximum combination of I BIAS + I MOD must be
calculated.
where:
I CC min is 30 mA, the typical value of I CC provided in the
Specifications with I BIAS = I MOD = 0.
T DIE is the die temperature.
T AMBIENT is the ambient temperature.
PAVCAP = 3 . 2 × 10 ? 6 ×
LI
P AV
(Farad)
V BIAS_PIN is the voltage at the IBIAS pin.
V MODP_PIN is the voltage at the IMODP pin.
ERCAP =
PAVCAP
2
(Farad)
V MODN_PIN is the voltage at the IMODN pin.
AUTOMATIC LASER SHUTDOWN (Tx_DISABLE)
For voltage setpoint control:
ALS (Tx_DISABLE) is an input that is used to shut down the
PAVCAP = 1 . 28 × 10 ? 6 ×
LI
P AV
(Farad)
transmitter optical output. The ALS pin is pulled up internally
with a 6 kΩ resistor and conforms to SFP MSA specification.
When ALS is logic high or open, both the bias and modulation
ERCAP =
PAVCAP
2
(Farad)
currents are turned off.
BIAS AND MODULATION MONITOR CURRENTS
LI =
where:
P AV (mW) is the average power required.
LI (mW/mA) is the typical slope efficiency at 25°C of a batch of
lasers that are used in a design.
The capacitor value equation is used to get a centered value for
the particular type of laser that is used in a design and average
power setting. The Laser LI can vary by a factor of 7 between
different physical lasers of the same type and across
temperature without the need to recalculate the PAVCAP and
ERCAP values. In the ac coupling configuration, LI can be
calculated as
P1 ? P0
(mW/mA)
I MOD
where P1 is the optical power (mW) at the one level, and P0 is
the optical power (mW) at the zero level.
These capacitors are placed between the PAVCAP and ERCAP
IBMON and IMMON are current-controlled current sources
that mirror a ratio of the bias and modulation current. The
monitor bias current, IBMON, and the monitor modulation
current, IMMON, should both be connected to ground through
a resistor to provide a voltage proportional to the bias current
and modulation current, respectively. When using a micro-
controller, the voltage developed across these resistors can be
connected to two of the ADC channels, making available a
digital representation of the bias and modulation current.
DATA INPUTS
Data inputs should be ac-coupled (10 nF capacitors are
recommended) and are terminated via a 100 Ω internal resistor
between the DATAP and DATAN pins. A high impedance
circuit sets the common-mode voltage and is designed to allow
maximum input voltage headroom over temperature. It is
necessary to use ac coupling to eliminate the need for matching
between common-mode voltages.
pins and ground. It is important that these capacitors are low
leakage multilayer ceramics with an insulation resistance
greater than 100 GΩ or a time constant of 1000 sec, whichever
is less. The capacitor tolerance may be ±30% from the calculated
value to the available off-the-shelf value, including the tolerance
of the capacitors.
Rev. A | Page 15 of 20
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