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LTM4607 Datasheet(PDF) 11 Page - Linear Technology

Part # LTM4607
Description  58VIN, 48VOUT Buck-Boost 關Module Regulator
PDF  28 Pages
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Manufacturer  LINER [Linear Technology]
Direct Link  http://www.linear.com
Logo LINER - Linear Technology

LTM4607 Datasheet(HTML) 11 Page - Linear Technology

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LTM8056
11
8056fa
For more information www.linear.com/LTM8056
APPLICATIONS INFORMATION
For most applications, the design process is straight for-
ward, summarized as follows:
1. Look at Table 1 and find the row that has the desired
input range and output voltage.
2. Apply the recommended CIN, COUT, RFB1/RFB2 and RT
values.
3. Apply the output sense resistor to set the output current
limit. The output current is limited to 58mV/RSENSE,
where RSENSE is the value of the output current sense
resistor in ohms.
Whilethesecomponentcombinationshavebeentestedfor
proper operation, it is incumbent upon the user to verify
proper operation over the intended system’s line, load and
environmental conditions. Bear in mind that the maximum
output current is limited by junction temperature, the rela-
tionship between the input and output voltage magnitude
and other factors. Please refer to the graphs in the Typical
Performance Characteristics section for guidance.
The maximum frequency (and attendant RT value) at
which the LTM8056 should be allowed to switch is given
in Table 1 in the fMAX column, while the recommended
frequency (and RT value) for optimal efficiency over the
given input condition is given in the fOPTIMAL column.
There are additional conditions that must be satisfied if
the synchronization function is used. Please refer to the
Synchronization section for details.
Note that Table 1 calls out both ceramic and electrolytic
output capacitors. Both of the capacitors called out in
the table must be applied to the output. The electrolytic
capacitors in Table 1 are described by voltage rating,
value and ESR. The voltage rating of the capacitor may
be increased if the application requires a higher voltage
stress derating. The LTM8056 can tolerate variation
in the ESR; other capacitors with different ESR may
be used, but the user must verify proper operation
over line, load and environmental conditions. Table 2
gives the description and part numbers of electrolytic
capacitors used in the LTM8056 development testing and
design validation.
Table 1. Recommended Component Values and Configuration (TA = 25°C)
VIN RANGE
VOUT
CIN
COUT
RFB1/RFB2 fOPTIMAL (kHz) RT(OPTIMAL) fMAX (kHz) RT(MAX)
5V to 24V
3.3V
2 × 4.7µF, 50V, 0805
22µF, 6.3V, X5R, 0805
100µF, 6V, 75mΩ, Electrolytic
100k/56.2k
650
31.6k
800
24.9k
5V to 22V
5V
2 × 4.7µF, 50V, 0805
22µF, 6.3V, X5R, 0805
100µF, 6V, 75mΩ, Electrolytic
100k/31.6k
450
53.6k
800
24.9k
5V to 28V
8V
2 × 4.7µF, 50V, 0805
22µF, 10V, X7R, 1206
100µF, 16V, 100mΩ, Electrolytic
100k/17.4k
500
45.3k
800
24.9k
5V to 41V
12V
2 × 4.7µF, 50V, 0805
22µF, 25V, X5R, 0805
68µF, 16V, 200mΩ, Electrolytic
100k/11k
650
31.6k
800
24.9k
5.8V to 58V
18V
3 × 2.2µF, 100V, 1206 22µF, 25V, X5R, 0805
47µF, 25V, 900mΩ, Electrolytic
100k/6.98k
650
31.6k
800
24.9k
7V to 58V
24V
3 × 2.2µF, 100V, 1206 22µF, 25V, X5R, 0805
33µF, 35V 300mΩ, Electrolytic
100k/5.23k
525
43.2k
800
24.9k
8.5V to 58V
36V
3 × 2.2µF, 100V, 1206 10µF, 50V, X5R, 1206
10µF, 50V 120mΩ, Electrolytic
100k/3.40k
500
45.3k
800
24.9k
12.5V to 58V
48V
3 × 2.2µF, 100V, 1206 10µF, 50V, X5R, 1206
10µF, 63V 120mΩ, Electrolytic
100k/2.55k
475
49.9k
800
24.9k
Notes: An input bulk capacitor is required. The output capacitance uses a combination of a ceramic and electrolytic in parallel. Other combinations of
resistor values for the RFB network are acceptable.



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