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MAX8541EEE датащи(PDF) 9 Page - Maxim Integrated Products

номер детали MAX8541EEE
подробное описание детали  Synchronizable, High-Frequency Current- and Voltage-Mode PWM Controllers for Isolated Supplies
PDF  16 Pages
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производитель  MAXIM [Maxim Integrated Products]
домашняя страница  https://www.maximintegrated.com/en.html
Logo MAXIM - Maxim Integrated Products

MAX8541EEE датащи(HTML) 9 Page - Maxim Integrated Products

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Detailed Description
Overvoltage Threshold
The MAX8540/MAX8541 include an overvoltage protec-
tion (OVP) feature that turns off the external MOSFET
when the input voltage exceeds the user-set threshold.
Connect a resistor-divider from the system input to
GND with OV connected to the center to set the OVP
trip point. The threshold voltage for OV is 3.021V (typ):
where VOV is the OV threshold, VIN(MAX) is the overvolt-
age trip point, R1 is the resistor from the system input
to OV, and R2 is the resistor from OV to GND.
Undervoltage Threshold
The MAX8540/MAX8541 also include an undervoltage
(UV) sensing input. The IC holds the external MOSFET
low until UV reaches its threshold (1.25V typ). Once the
threshold has been reached, the circuit enters soft-start
and brings the output into regulation. Connect a resistor-
divider from the system input to GND with UV at the cen-
ter to set the undervoltage protection (UVP) trip point.
where VUV is the UV threshold, VIN(MIN) is the UV trip
point, R3 is the resistor from the system input to UV,
and R4 is the resistor from UV to GND.
An alternate method used in the application circuits for
setting the OV and UV trip points is demonstrated in
Figure 1. Use 36.5k
Ω for the bottom resistor (RC). RA
and RB are calculated as follows:
where VIN(MIN) is the UV trip point, VIN(MAX) is the OV
trip point, VUV is the UV threshold (1.25V typ), and VOV
is the OV threshold (3.021V typ). RA should consist of
two equal-value resistors in series to protect against
single-point failure.
Switching Frequency and Synchronization
The MAX8540/MAX8541 oscillator operates in two
modes: stand-alone or synchronized (sync). A single
input, FREQ/SYNC, doubles as the attachment point for
the frequency-programming resistor and as the syn-
chronization input. The mode recognition is automatic,
based on the signal applied to FREQ/SYNC.
In stand-alone mode, an external resistor connected
from FREQ/SYNC to GND sets the operating frequency.
A 1.25V source is internally applied to FREQ/SYNC and
the oscillator frequency is proportional to the current
out of FREQ/SYNC through the programming resistor.
RA
RC
V
V
RB
RC
IN MIN
UV
=
×
−−
()
RB
RC
VV
VV
OV
IN MIN
UV
IN MAX
×
×
()
()
1
V
RR
R
V
IN MIN
UV
() =
+


×
34
4
V
RR
R
V
IN MAX
OV
() =
+


×
12
2
Synchronizable, High-Frequency Current- and
Voltage-Mode PWM Controllers for Isolated Supplies
_______________________________________________________________________________________
9
Table 1. Typical Specifications of UV/OV
and the Actual On/Off Hysteresis of Input
Voltage
UV VOLTAGE
SPECIFICATIONS
(V)
VIN OFF
WINDOW (LTP)
(V)
VIN ON
WINDOW (UTP)
(V)
MIN
1.083
29.76
TYP
1.128
31.00
MAX
1.173
32.24
MIN
1.200
32.97
TYP
1.250
34.34
MAX
1.300
36.00
OV VOLTAGE
SPECIFICATIONS
(V)
VIN OFF
WINDOW (UTP)
(V)
VIN ON
WINDOW (LTP)
(V)
MIN
2.901
79.70
TYP
3.021
83.00
MAX
3.142
86.32
MIN
2.778
76.32
TYP
2.894
79.50
MAX
3.010
82.68
Assume that 1.250V at UV/OV is scaled to 34.34V for a 48V bus.
RFREQ/SYNC (k
Ω)
SWITCHING FREQUENCY (kHz)
48.7
200
19.1
500
15.8
600
11.0
800
8.87
1000
Table 2. Switching Frequency Selection



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