MAX15001AEUB+T Maxim Integrated Products, MAX15001AEUB+T Datasheet - Page 13

IC CNTRLR PWM CURRENT MD 10UMAX

MAX15001AEUB+T

Manufacturer Part Number
MAX15001AEUB+T
Description
IC CNTRLR PWM CURRENT MD 10UMAX
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX15001AEUB+T

Pwm Type
Current Mode
Number Of Outputs
1
Frequency - Max
2.5MHz
Duty Cycle
50%
Voltage - Supply
9.5 V ~ 24 V
Buck
No
Boost
Yes
Flyback
Yes
Inverting
No
Doubler
No
Divider
No
Cuk
No
Isolated
Yes
Operating Temperature
-40°C ~ 85°C
Package / Case
10-MSOP, Micro10™, 10-uMAX, 10-uSOP
Frequency-max
2.5MHz
Duty Cycle (max)
50 %
Output Current
1000 mA
Mounting Style
SMD/SMT
Switching Frequency
25 KHz to 625 KHz
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
Synchronous Pin
No
Topology
Boost
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Choose a higher value for R1 than the one calculated in
the previous equation if a longer startup time can be
tolerated to minimize power loss on this resistor.
The above startup method is applicable to a circuit simi-
lar to the one shown in
tiary winding has the same phase as the output
windings. Thus, the voltage on the tertiary winding at any
given time is proportional to the output voltage and goes
through the same soft-start period as the output voltage.
The minimum discharge time of C1 from 21.6V to 9.74V
must be greater than the soft-start time of 5.6ms.
Figure 5. Secondary-Side Regulated, Isolated Power Supply
TRANS.
OPTO
U2
V
IN
R6
______________________________________________________________________________________
R5
C1
R1
Figure 1. In this circuit, the ter-
Programmable Switching Frequency
Current-Mode PWM Controllers with
R7
C2
IN
V
COMP
FB
UFLG
CC
R12
MAX15000A
RT
U1
C6
UVLO/EN
R15
NDRV
GND
D1
CS
Another method for bootstrapping the power supply is
to use a bias winding that is in phase with the MOSFET
on-time (see Figure 5). In this case, the amount of
capacitance required at IN (C1) is much smaller.
However, the input voltage cannot have a range
greater than approximately 2:1 (primary winding volt-
age to bias winding voltage ratio).
For hiccup-mode fault protection, make the bias wind-
ing in phase with the output, then the power-supply hic-
cups and soft-starts under output short-circuit
conditions. The power supply does not hiccup if the
bias winding is in phase with the MOSFET on-time.
R3
R2
Q1
R4
T1
D2
OPTO LED
C4
TL431
U3
U2
R8
C3
R9
R10
V
OUT
13

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