参数资料
型号: ADN2526ACPZ-R7
厂商: Analog Devices Inc
文件页数: 12/16页
文件大小: 0K
描述: IC LASER DRIVER 11.3GBPS 16LFCSP
标准包装: 1,500
类型: 激光二极管驱动器
数据速率: 11.3Gbps
通道数: 1
电源电压: 3 V ~ 3.6 V
电流 - 电源: 46mA
电流 - 调制: 80mA
电流 - 偏置: 100mA
工作温度: -40°C ~ 85°C
封装/外壳: 16-VFQFN 裸露焊盘,CSP
供应商设备封装: 16-LFCSP-VQ
包装: 带卷 (TR)
安装类型: 表面贴装
ADN2526
Data Sheet
MSET
VCC
800?
VCC
Using the resistance of the TOSA, the user can calculate the
voltage range that should be applied to the MSET pin to generate
the required modulation current range (see the example in the
200?
Figure 26. Equivalent Circuit of the MSET Pin
The circuit used to drive the MSET voltage must be able to
drive the 1 k? resistance of the MSET pin. To be able to drive
80 mA modulation currents through the differential load, the
VCC
25?
IMODN
IMODP
VCC
25?
output stage of the ADN2526 (the IMODP and IMODN pins)
must be ac-coupled to the load. The voltages at these pins have
a dc component equal to VCC and an ac component with
single-ended, peak-to-peak amplitude of IMOD × 25 ?. This is
3.3?
3.3?
the case even if the load impedance is less than 50 ? differential,
because the transmission line characteristic impedance sets the
peak-to-peak amplitude. For proper operation of the output stage,
Figure 27. Equivalent IMODP and IMODN Pins, As Seen From Laser Side
The recommended configuration of the MSET, IMODP,
and IMODN pins is shown in Figure 28. See Table 7 for the
recommended components.
the voltages at the IMODP and IMODN pins must be between
the compliance voltage specifications for these pins over supply,
temperature, and modulation current range, as shown in Figure 30.
See the Applications Information section for examples of
headroom calculations.
IMODP, IMODN
IBIAS
VCC
ADN2526
L
L
Z 0 = 25?
C
Z 0 = 25?
VCC + 1.1V
IMODP
NORMAL OPERATION REGION
TOSA
VCC
MSET
IMODN
Z 0 = 25?
C
Z 0 = 25?
V MSET
VEE
L
L
VCC VCC
VCC – 1.1V
Figure 28. Recommended Configuration for the MSET, IMODP, and IMODN Pins
The ratio between the voltage applied to the MSET pin and the
differential modulation current available at the IMODP and
IMODN pins is a function of the load resistance value, as shown
220
210
200
190
Figure 30. Allowable Range for the Voltage at IMODP and IMODN
LOAD MISTERMINATION
Due to its excellent S22 performance, the ADN2526 can drive
differential loads that range from 5 ? to 50 ?. In practice, many
TOSAs have differential resistance less than 50 ?. In this case, with
50 ? differential transmission lines connecting the ADN2526 to
the load, the load end of the transmission lines are misterminated.
180
170
160
150
140
130
120
110
100
90
80
70
60
50
40
MAXIMUM
TYPICAL
MINIMUM
This mistermination leads to signal reflections back to the driver.
The excellent back-termination in the ADN2526 absorbs these
reflections, preventing their reflection back to the load. This
enables excellent optical eye quality to be achieved, even when
the load end of the transmission lines is significantly mistermi-
nated. The connection between the load and the ADN2526 must
be made with 50 ? differential (25 ? single-ended) transmission
lines so that the driver end of the transmission lines is properly
terminated.
0
10
20
30
40
50
60
DIFFERENTIAL LOAD RESISTANCE ( ? )
Figure 29. MSET Voltage-to-Modulation Current Ratio vs.
Differential Load Resistance
Rev. B | Page 12 of 16
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