萝莉影视

Non-Isolated DC-DC converter moduleSmall POL MonoBK™ (Mono-Block)

萝莉影视 has designed compact, low-noise DC-DC converter modules, MonoBK™, which include not only products but also add-on components as well. 萝莉影视's MonoBK™ solves the issue of equipment space.

What is a DC-DC converter?

A DC-DC converter is equipment that converts DC into DC.

Each IC or other component mounted on the board of the set has an intrinsic working voltage range, and in addition the required voltage accuracy differs from one component to another.
When power is supplied from a power source that does not produce a stable voltage, issues such as malfunctioning will occur.
It is therefore necessary to use a DC-DC converter to convert the voltage to the correct value and to stabilize it.

Kinds of DC-DC converters

Generally, there are four kinds of DC-DC converters. Their names are as follows.

Kind Generic name
Power supply equipment that reduces the voltage Buck converter, Step-down converter
Power supply equipment that increases the voltage Boost converter, Step-up converter
Power supply equipment that increases and decreases the voltage Buck-Boost converter
Power supply equipment that generates a negative voltage Negative voltage converter, Inverting converter

What is POL (Point of Load)?

POL is a DC-DC converter installed in the immediately vicinity of a microprocessor or an LSI (Large-Scale Integrated circuit) such as a DSP, FPGA or ASIC.

POL Trends

In recent mega-trends represented by 5G or IoT, equipment such as a base station or a server must be processed to enable it to operate at high speed and to ensure that it has large capacity.
To this end, the LSI is manufactured using a more precision process, thus enhancing the performance of the chip.
Along with the refinement of the process, demands will arise to decrease the voltage and increase the current supplied to the power supply circuit that supplies electric power to the LSI.

When using reduced voltage, it is necessary to increase the voltage accuracy and increase the high-speed response to load fluctuations, in order to prevent malfunctioning of the LSI.
When using large current, power from the switching power supply is output from the LDO. This makes the circuit difficult to design, even though it could previously be designed compactly and with ease.
In addition, when the switching power is generated, the issue of noise arises.

In the light of this background, POL is required to have “voltage accuracy,” “load fluctuation transient response,” “low radiation noise,” and “compactness.”

Features of MonoBK™ with illustrations

1. Small mounting area

Downsizing by circuit design based on extensive power supply design know-how and mounting the inductor in a 3D structure

Image of small mounting area

2. High power density / good heat dissipation characteristics

Enhanced heat dissipation effect with resin molding and thinner printed circuit board

Image of high power density / good heat dissipation characteristics

3. Low noise

Reduced noise with minimization of the current loop using a 3D structure and extensive EMI noise knowledge

Image of low noise
Fig. MYMGK1R820ERSR EMI data

4. High reliability

Improved heat shock resistance with resin molding

Image 1 of high reliability
Swipe left or right to change screens View in landscape mode
Image 2 of high reliability

萝莉影视Lineup

  • Buck converter
  • 2-stageBUck converter
  • Buck converter with PMBus

Input Voltage[V]

Output Current[A]

Output Current[A]

3.3V 5V 12V 24V
0.6

MYRGP080060W21RF
MYRGP080060B21RF

2.0×2.5×1.0

Vin=1.8 – 6.0V

Vo=0.8 to 4.0V

2

MYRGM-X/C

4.7×3.1×1.35

Vin=2.7 - 6.0V

Vo=0.9 - Vin

2.5

MYLSM00502ERPL

7.9×7.9×2.3

Vin=4.5 - 17.0V

Vo=1 - 5.25V

3.5

MYMGA5R03ECLA5RA

10.5×9.0×5.6

Vin=8.0 - 28.8V

Vo=3.3 - 5V

  • 115deg
4

MYTNC1R84RELA2RA

10.5×9.0×2.1

Vin=6.0 - 14.4V

Vo=0.7 - 1.8V

  • 105deg
  • I2C

MYTNA1R84RELA2RA

10.5×9.0×2.1

Vin=6.0 - 14.4V

Vo=0.7 - 1.8V

  • 105deg

MYMGK1R804FRSR

7.5×9.0×5.0max

Vin=4.5 - 8.0V

Vo=0.7 - 1.8V

MYMGK00504ERSR

7.5×9.0×5.0max

Vin=8.0 - 15.0V

Vo=0.7 - 5V

6

MYTNC1R86RELA2RA

10.5×9.0×2.1

Vin=6.0 - 14.4V

Vo=0.7 - 1.8V

  • 105deg
  • I2C

MYTNA1R86RELA2RA

10.5×9.0×2.1

Vin=6.0 - 14.4V

Vo=0.7 - 1.8V

  • 105deg

MYMGK1R806FRSR

7.5×9.0×5.0

Vin=4.5 - 8.0V

Vo=0.7 - 1.8V

MYMGK00506ERSR

7.5×9.0×5.0

Vin=8.0 - 15.0V

Vo=0.7 - 5V

MYSGK02506BRSR

14.7×16.3×7.5

Vin=9.6 - 42.0V

Vo=5 - 25V

10

MYMGK00510ERSR

7.5×9.0×5.0

Vin=8.0 - 15.0V

Vo=0.7 - 5V

12

MYMGK1R812FRSR-H

9.0×10.5×5.6

Vin=4.5 - 8.0V

Vo=0.7 - 1.8V

  • 105deg

MYMGK1R812ERSR-H

9.0×10.5×5.6

Vin=8.0 - 15.0V

Vo=0.7 - 1.8V

  • 105deg

MYMGK1R812FRSR

9.0×10.5×5.6

Vin=4.5 - 8.0V

Vo=0.7 - 1.8V

MYMGK1R812ERSR

9.0×10.5×5.0

Vin=8.0 - 15.0V

Vo=0.7 - 1.8V

MYMGM5R012ELA5RN

9.0×10.5×5.0max

Vin=7.5 - 15.0V

Vo=1.8 - 5V

  • 105deg
  • PMBus
16

MYMGM1R816ELA5RN

9.0×10.5×5.0max

Vin=7.5 - 15.0V

Vo=0.7 - 1.8V

  • 105deg
  • PMBus
20

MYMGK1R820FRSR-H

9.0×10.5×5.6

Vin=4.5 - 8.0V

Vo=0.7 - 1.8V

  • 105deg

MYMGK1R820ERSR-H

9.0×10.5×5.6

Vin=8.0 - 15.0V

Vo=0.7 - 1.8V

  • 105deg

MYMGK1R820FRSR

9.0×10.5×5.6

Vin=4.5 - 8.0V

Vo=0.7 - 1.8V

MYMGK1R820ERSR

9.0×10.5×5.6

Vin=8.0 - 15.0V

Vo=0.7 - 1.8V

24

MYMGM1R824ELA5RN

9.0×10.5×5.0

Vin=7.5 - 15.0V

Vo=0.7 - 1.8V

  • 105deg
  • PMBus
30

MYSGK4R030ERSR

11.0×14.0×8.3

Vin=4.5 - 15.0V

Vo=0.7 - 4V

  • 105deg
50

MYMGM1R824ELA5RP

9.0×10.5×5.0
*In parallel operation

Vin=7.5 - 15.0V

Vo=0.7 - 1.2V

  • 105deg
  • PMBus
3.3V 5V 12V 24V

Input Voltage[V]

  • Buck converter
  • 2-stageBUck converter
  • Buck converter with PMBus

Inquiries

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