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ADUM7643

更新时间: 2023-12-20 18:44:43
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亚德诺 - ADI /
页数 文件大小 规格书
20页 385K
描述
1 kV RMS 四通道数字隔离器(3/3通道方向性)

ADUM7643 数据手册

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Data Sheet  
ADuM7640/ADuM7641/ADuM7642/ADuM7643  
The insulation lifetime of the ADuM7640/ADuM7641/  
ADuM7642/ADuM7643 depends on the voltage waveform type  
imposed across the isolation barrier. The iCoupler insulation  
structure degrades at different rates depending on whether the  
waveform is bipolar ac, unipolar ac, or dc. Figure 24, Figure 25,  
and Figure 26 illustrate these different isolation voltage  
waveforms.  
POWER CONSUMPTION  
The supply current at a given channel of the ADuM7640/  
ADuM7641/ADuM7642/ADuM7643 isolator is a function of  
the supply voltage, the data rate of the channel, and the output  
load of the channel.  
For each input channel, the supply current is given by  
IDDI = IDDI (Q)  
DDI = IDDI (D) × (2f fr) + IDDI (Q)  
f ≤ 0.5 fr  
f > 0.5 fr  
Bipolar ac voltage is the most stringent environment. The goal  
of a 50-year operating lifetime under the bipolar ac condition  
determines the Analog Devices recommended maximum  
working voltage.  
I
For each output channel, the supply current is given by  
I
I
DDO = IDDO (Q)  
f ≤ 0.5 fr  
In the case of unipolar ac or dc voltage, the stress on the insulation  
is significantly lower. This allows operation at higher working  
voltages while still achieving a 50-year service life. The working  
voltages listed in Table 18 can be applied while maintaining the  
50-year minimum lifetime, provided that the voltage conforms to  
either the unipolar ac or dc voltage case. Any cross-insulation  
voltage waveform that does not conform to Figure 25 or Figure 26  
should be treated as a bipolar ac waveform, and its peak voltage  
should be limited to the 50-year lifetime voltage value listed in  
Table 18.  
DDO = (IDDO (D) + (0.5 × 10−3) × CL × VDDO) × (2f − fr) + IDDO (Q)  
f > 0.5 fr  
where:  
DDI (D), IDDO (D) are the input and output dynamic supply currents  
per channel (mA/Mbps).  
DDI (Q), IDDO (Q) are the specified input and output quiescent  
I
I
supply currents (mA).  
f is the input logic signal frequency (MHz); it is half the input  
data rate, expressed in units of Mbps.  
fr is the input stage refresh rate (Mbps).  
CL is the output load capacitance (pF).  
The voltage presented in Figure 25 is shown as sinusoidal for  
illustration purposes only. It is meant to represent any voltage  
waveform varying between 0 V and some limiting value. The  
limiting value can be positive or negative, but the voltage cannot  
cross 0 V.  
V
DDO is the output supply voltage (V).  
To calculate the total VDD1 and VDD2 supply current, the supply  
currents for each input and output channel corresponding to  
RATED PEAK VOLTAGE  
VDD1 and VDD2 are calculated and totaled. Figure 10 and Figure 11  
0V  
show per-channel supply currents as a function of data rate for  
an unloaded output condition. Figure 12 shows the per-channel  
supply current as a function of data rate for a 15 pF output  
condition. Figure 13 through Figure 17 show the total VDD1 and  
Figure 24. Bipolar AC Waveform  
RATED PEAK VOLTAGE  
VDD2 supply current as a function of data rate for ADuM7640/  
ADuM7641/ADuM7642/ADuM7643 channel configurations.  
0V  
INSULATION LIFETIME  
Figure 25. Unipolar AC Waveform  
All insulation structures eventually break down when subjected to  
voltage stress over a sufficiently long period. The rate of insulation  
degradation depends on the characteristics of the voltage waveform  
applied across the insulation. In addition to the testing performed  
by the regulatory agencies, Analog Devices carries out an extensive  
set of evaluations to determine the lifetime of the insulation  
structure within the ADuM7640/ADuM7641/ADuM7642/  
ADuM7643 components.  
RATED PEAK VOLTAGE  
0V  
Figure 26. DC Waveform  
Analog Devices performs accelerated life testing using voltage  
levels higher than the rated continuous working voltage. Accel-  
eration factors for several operating conditions are determined.  
These factors allow calculation of the time to failure at the actual  
working voltage. The values shown in Table 18 summarize the peak  
voltage for 50 years of service life for a bipolar ac operating  
condition and the maximum working voltages. In many cases,  
the approved working voltage is higher than the 50-year service life  
voltage. Operation at these high working voltages can lead to  
shortened insulation life in some cases.  
Rev. 0 | Page 19 of 20  
 
 
 
 
 

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