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ADP1074WARWZ-R7 数据表(PDF) 26 Page - Analog Devices

部件名 ADP1074WARWZ-R7
功能描述  Isolated, Synchronous Forward Controller with Active Clamp and iCoupler
PDF  32 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

ADP1074WARWZ-R7 数据表(HTML) 26 Page - Analog Devices

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ADP1074
Data Sheet
Rev. D | Page 26 of 32
VFB 1.2V
SS2 = 1.4V
DEPENDS ON
LOOP BANDWIDTH
TIME
VDD2
DEPENDS ON
LOOP BANDWIDTH
VDD2_UVLO
3.5V
Figure 21. Tracking with SS2 Pin
OCP COUNTER
During overload conditions, when the peak sensed currents
exceed the OCP threshold voltage of 120 mV on the CS pin, the
ADP1074 immediately terminates the remainder of the PWM
pulse. If the peak sense current continues to exceed the threshold
every switching period for 1.5 ms, the system enters hiccup mode,
by which it shuts down for approximately 40 ms and then soft
starts. During an exceeded overcurrent situation, such as a dead
short, it is likely that the programmed slope compensation is
not enough, and therefore, the system enters subharmonic
oscillation. If this is the case, the system cannot enter hiccup
mode because the OCP threshold is crossed every alternate
switching period, and the 1.5 ms hiccup counter resets.
To prevent this scenario, the ADP1074 latches the last known
state, whereby if an OCP condition registered as a 1 in one
switching period and as a 0 in the next switching period, it is
still counted as a 1. In this manner, the system can enter hiccup
mode even in subharmonic oscillation. Missing two OCP
thresholds consecutively resets the hiccup counter.
INSULATION LIFETIME
All insulation structures eventually break down when subjected
to voltage stress over a sufficiently long period. The rate of
insulation degradation is dependent upon 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 ADP1074.
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 10 summarize the peak voltage for
50 years of service life for a bipolar ac operating condition. 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.
The ADP1074 insulation lifetime depends on the voltage wave-
form 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 22,
Figure 23, and Figure 24 show these different isolation voltage
waveforms.
A bipolar ac voltage environment is the worst case for the iCoupler
products, yet meets the 50 year operating lifetime recommended
by Analog Devices for maximum working voltage. In the case
of unipolar ac or dc voltage, the stress on the insulation is
significantly lower. The low stress allows operation at higher
working voltages while still achieving a 50 year service life. Treat
any cross insulation voltage waveform that does not conform to
Figure 23 or Figure 24 as a bipolar ac waveform, and limit its peak
voltage to the 50 year lifetime voltage value listed in Table 10.
Note that the voltage presented in Figure 23 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.
0V
RATED PEAK VOLTAGE
Figure 22. Bipolar AC Waveform
0V
RATED PEAK VOLTAGE
Figure 23. Unipolar AC Waveform
0V
RATED PEAK VOLTAGE
Figure 24. DC Waveform



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