MAX668EUB Maxim Integrated Products, MAX668EUB Datasheet - Page 16

IC PWM BST FLYBCK ISO CM 10UMAX

MAX668EUB

Manufacturer Part Number
MAX668EUB
Description
IC PWM BST FLYBCK ISO CM 10UMAX
Manufacturer
Maxim Integrated Products
Datasheet

Specifications of MAX668EUB

Pwm Type
Current Mode
Number Of Outputs
1
Frequency - Max
575kHz
Duty Cycle
94%
Voltage - Supply
3 V ~ 28 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
575kHz
Duty Cycle (max)
94 %
Output Voltage
28 V
Output Current
1000 mA
Mounting Style
SMD/SMT
Switching Frequency
100 KHz to 500 KHz
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
Synchronous Pin
Yes
Topology
Boost, Flyback
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
Q1513668

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430
larger or smaller than the output voltage, such as when
converting four NiMH, NiCd, or Alkaline cells to a 5V
output. The SEPIC configuration is often a good choice
for combined step-up/step-down applications.
The N-channel MOSFET (Q1) must be selected to with-
stand a drain-to-source voltage (V
sum of the input and output voltages. The coupling
capacitor (C2) must be a low-ESR type to achieve max-
imum efficiency. C2 must also be able to handle high
ripple currents; ordinary tantalum capacitors should not
be used for high-current designs.
The circuit in Figure 6 provides greater than 1A output
current at 5V when operating with an input voltage from
3V to 25V. Efficiency will typically be between 70% and
85%, depending upon the input voltage and output cur-
rent.
1.8V to 28V Input, PWM Step-Up
Controllers in µMAX
16
Figure 6. MAX668 in SEPIC Configuration
1 F
______________________________________________________________________________________
D1: MBR5340T3, 3A, 40V SCHOTTKY DIODE
R4: WSL-2512-R020F, 0.02
C3: AVX TPSZ686M020R0150, 68 F, 150m ESR
100k
R3
0.22 F
1
2
4
5
DS
LDO
FREQ
REF
FB
) greater than the
9
V CC
GND
3
MAX668
10
SHDN
22 F x 3
@ 35V
PGND
7
CS+
EXT
8
6
4.9 H
TRANSISTOR COUNT: 1861
CTX5-4
The circuit of Figure 7 provides a 5V isolated output at
400mA from a 5V input power supply. Transformer T1
provides electrical isolation for the forward path of the
converter, while the TLV431 shunt regulator and
MOC211 opto-isolator provide an isolated feedback
error voltage for the converter. The output voltage is set
by resistors R2 and R3 such that the mid-point of the
divider is 1.24V (threshold of TLV431). Output voltage
can be adjusted from 1.24V to 6V by selecting the
proper ratio for R2 and R3. For output voltages greater
than 6V, substitute the TL431 for the TLV431, and use
2.5V as the voltage at the midpoint of the voltage-
divider.
3V to 25V
L1
V
IN
R4
0.02
Q1
30V
FDS6680
10 F @ 35V
C2
520pF
Isolated 5V to 5V Power Supply
C4
Chip Information
40V
D1
R1
75k
R2
25k
C3
68 F x 3
V
5V @ 1A
OUT

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