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ADP1032ACPZ-4-R7 数据表(PDF) 31 Page - Analog Devices

部件名 ADP1032ACPZ-4-R7
功能描述  Two-Channel, Isolated Micropower Management Unit with Seven Digital Isolators
PDF  37 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

ADP1032ACPZ-4-R7 数据表(HTML) 31 Page - Analog Devices

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Data Sheet
ADP1032
Rev. 0 | Page 31 of 37
VOUT1
Tx1
VINP
SWP
D1
1:1
LLEAK
LPRI
DCLAMP
ZCLAMP
Figure 74. Diode, Zener Diode Clamp
Clamping Resistor
To calculate the clamping resistor (RCLAMP) value, the clamping
voltage (VCLAMP) must be determined. The clamping voltage is
the voltage on which any voltage spike that occurs on the flyback
switch is clamped. Choose a VCLAMP that provides sufficient margin
between the SWP maximum voltage rating (SWPVMAX) specified
in the Absolute Maximum Ratings section and that also is greater
than the summation of the maximum input supply (VINP(MAX))
and the maximum flyback output voltage (VOUT1 (MAX)) of the
application as given by
SWPVMAX > VINP(MAX) + VCLAMP > VINP (MAX) + VOUT1 (MAX)
VINP (MAX)
VOUT1 (MAX) + VINP (MAX)
VCLAMP
SWPVMAX
Figure 75. Clamping Waveform
Use the following equation to calculate the value of the clamping
resistor for a given VCLAMP value:
RCLAMP = (2 × VCLAMP × (VCLAMP − VOUT1))/(LLEAK × IPEAK2 × fSW)
where fSW is the switching frequency of the flyback regulator.
To calculate the power dissipation across the snubber resistor,
use the following equation:
PRCLAMP = (VCLAMP)2/(RCLAMP)
where PRCLAMP is the power dissipation across RCLAMP. Choose
RCLAMP with a power rating of about twice this value to have a
margin.
Clamping Capacitor
The clamping capacitor (CCLAMP) is used to minimize the voltage
ripple level (VRIPPLE) superimposed in VCLAMP. Calculate the
clamping capacitor by using the following equation for the
desired VRIPPLE level and the calculated RCLAMP:
CCLAMP = VCLAMP/(VRIPPLE × fSW × RCLAMP)
where:
CCLAMP is the value of the clamping capacitor.
VRIPPLE is the voltage ripple superimposed in VCLAMP. A VRIPPLE of
about 5% to 10% of VCLAMP is reasonable.
Clamping Diode
Schottky diodes are typically the best choice for clamping diodes.
However, fast recovery diodes can also be used. The diode reverse
voltage rating must be higher than the maximum SWP pin voltage
rating.
Diode, Zener Diode Clamp
A Zener diode can replace the resistor, capacitor (RC) network
on the resistor, capacitor, diode clamp when the clamping level
must be consistent and well defined. Choose the Zener diode
breakdown voltage to balance power loss and switch voltage
protection. Calculate the Zener voltage by using the following
equation:
VZENER (MAX) ≤ SWPVMAX − VINP(MAX)
where VZENER (MAX) is the maximum Zener diode breakdown
voltage or the Zener voltage, which can be the same as the
VCLAMP.
The power loss in the clamp determines the power requirement
for the Zener diode. Use the following equation to calculate the
Zener diode power dissipation:
PZENER = (VZENER × LLEAK × IPEAK2 × fSW)/(2 × (VZENER − VOUT1))
where:
PZENER is the Zener diode power dissipation. Choose a Zener
diode with power rating higher than the calculated value.
VZENER is the Zener diode breakdown voltage or the Zener voltage.
Ripple Current (IAC) vs. Inductance
Calculate the ripple current by first determining the duty cycle
in continuous conduction mode.
DCCM = (VOUT1 + VD)/(VOUT1 + VD + VINP)
where DCCM is the duty cycle of the flyback switch.
Then, from the duty cycle, calculate the IAC in the flyback switch
and transformer primary.
IAC = (VINP × DCCM)/(fSW × LPRI)
where IAC is the ripple current through the primary side of the
transformer and flyback switch.



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