LMS1585AISX-3.3/NO vs MAX8875EUK30+

Part Number
LMS1585AISX-3.3/NO
MAX8875EUK30+
Category PMIC - Voltage Regulators - Linear PMIC - Voltage Regulators - Linear
Manufacturer Texas Instruments Maxim Integrated
Description IC REG LIN 3.3V 5A DDPAK/TO263-3 IC REG LINEAR 3V 150MA SOT23-5
Package Tube Strip
Series - -
Operating Temperature -40°C ~ 125°C -40°C ~ 85°C (TA)
Mounting Type Surface Mount Surface Mount
Package / Case TO-263-4, D²Pak (3 Leads + Tab), TO-263AA SC-74A, SOT-753
Supplier Device Package DDPAK/TO-263-3 SOT-23-5
Output Type Fixed Fixed
Voltage - Output (Min/Fixed) 3.3V 3V
Voltage - Output (Max) - -
Current - Output 5A 150mA
Output Configuration Positive Positive
Control Features - Enable, Power Good
Voltage - Input (Max) 13V 6.5V
Number of Regulators 1 1
Voltage Dropout (Max) 1.4V @ 5A 0.165V @ 150mA (Typ)
Current - Quiescent (Iq) 13 mA 180 µA
Current - Supply (Max) - -
PSRR 72dB (120Hz) 60dB (100Hz)
Protection Features Over Current, Over Temperature Over Temperature, Reverse Polarity, Short Circuit
  • 1. What is the difference between linear regulators and switching regulators?

    There are significant differences between linear regulators and switching regulators in terms of working principles, efficiency, stability, cost and application range.
    Working principle:
    Linear regulators achieve the function of stabilizing the output at a set value by adjusting the voltage difference between the output voltage and the input voltage. It achieves stable output voltage by controlling the conductivity state of the power transistor.
    The switching regulator converts the input voltage into a pulse signal transmission and smoothes the output through a filter by quickly switching between the input and output ends to achieve the function of stabilizing the output at the set value. The switching regulator uses PWM (pulse width modulation) control to control the output voltage by adjusting the time duty ratio of the high and low levels within a cycle.
    Efficiency:
    The efficiency of the linear regulator is relatively low, usually between 60% and 70%. When the voltage differenc

  • 2. What is the difference between a linear regulator and a resistor?

    Linear regulators and resistors have significant differences in function, working principle and application scenarios.
    Function and working principle:
    A linear regulator is an electronic device that achieves a stable voltage output by adjusting linear elements (such as resistors, transistors, etc.) in the circuit. It uses the negative feedback principle. When the input voltage changes, the regulator senses this change and adjusts the parameters of the circuit elements (such as the resistance value or the conduction state of the transistor) accordingly to keep the output voltage stable within the required range. Linear regulators can provide lower output noise and fluctuations, and have better responsiveness to load changes.
    Resistors are a basic electronic component used to limit current and divide voltage. It works by hindering the flow of current, has a fixed resistance value, and does not have the function of adjusting the output voltage.
    Application scenarios:
    Linear regulator

  • 3. What are the three types of voltage regulator?

    The three types of voltage regulators include the contact voltage regulator, the transistor regulator and the integrated circuit regulator.
    Contact voltage regulator: This is the type of voltage regulator used earlier. Its working principle is based on the vibration of the contact, but there is mechanical inertia and electromagnetic inertia, resulting in low voltage adjustment accuracy. Large, poor reliability, and short life, so it has been eliminated.
    Crystal tube regulator: With the development of semiconductor technology, the transistor regulator becomes the mainstream. It uses a triode for voltage adjustment. Compared with the contact -type voltage regulator, the advantages of the transistor regulator is that the response speed, high efficiency, small volume, light weight, and not easily affected by external magnetic fields are widely used.
    Integrated circuit regulator: Integrated circuit regulator is a new type of voltage regulator developed in recent years. It integrates mult

  • 4. What is the minimum input voltage of a linear regulator?

    The minimum input voltage range of linear regulator varies from model and application.
    For certain low -voltage lower -voltage regulators, its minimum input voltage range is usually 2.5V to 2.7V. This type of regulator design is used to power the internal LDO drive circuit and can drive PMOS FET to provide high output current. However, when the output voltage is lower than 1.8V and the output current is greater than 2.5A, the linear regulator with PMOS bypass components may be used for external heat dissipation due to additional air flow requirements and/or the heat generated by the regulator. It becomes inconvenient and the cost will increase.
    For universal linear stabilizers, its input voltage range can be very wide. For example, some general -purpose linear regulators have 3V to 40V input voltage range. Even for models suitable for 24V systems, the input maximum voltage can reach 60V Then, then
    In summary, the minimum input voltage of the linear regulator does not have a fixed st

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