MAX8875EUK25+ vs MAX8875EUK30+

Part Number
MAX8875EUK25+
MAX8875EUK30+
Category PMIC - Voltage Regulators - Linear PMIC - Voltage Regulators - Linear
Manufacturer Maxim Integrated Maxim Integrated
Description IC REG LINEAR 2.5V 150MA SOT23-5 IC REG LINEAR 3V 150MA SOT23-5
Package Strip Strip
Series - -
Operating Temperature -40°C ~ 85°C (TA) -40°C ~ 85°C (TA)
Mounting Type Surface Mount Surface Mount
Package / Case SC-74A, SOT-753 SC-74A, SOT-753
Supplier Device Package SOT-23-5 SOT-23-5
Output Type Fixed Fixed
Voltage - Output (Min/Fixed) 2.5V 3V
Voltage - Output (Max) - -
Current - Output 150mA 150mA
Output Configuration Positive Positive
Control Features Enable, Power Good Enable, Power Good
Voltage - Input (Max) 6.5V 6.5V
Number of Regulators 1 1
Voltage Dropout (Max) 0.165V @ 150mA (Typ) 0.165V @ 150mA (Typ)
Current - Quiescent (Iq) 180 µA 180 µA
Current - Supply (Max) - -
PSRR 60dB (100Hz) 60dB (100Hz)
Protection Features Over Temperature, Reverse Polarity, Short Circuit Over Temperature, Reverse Polarity, Short Circuit
  • 1. What are the characteristics of linear regulators?

    Linear regulators have the characteristics of low cost, small package, few peripheral devices and low noise. There are many types of linear regulator packages, which are very suitable for use in LCD color TVs. For fixed voltage output applications, only 2-3 small capacitors are needed to form the entire solution. Ultra-low output voltage noise is the biggest advantage of linear regulators. The output voltage ripple is less than 35V (RMS), and it has an extremely high signal-to-noise control ratio, which is very suitable for powering small signal processing circuits that are sensitive to noise.

  • 2. Do linear regulators need capacitors?

    Linear regulators usually require capacitors.
    The working principle and design requirements of linear regulators determine that they usually require capacitors to ensure stable operation. These capacitors are mainly used to filter and stabilize the output voltage, help reduce output ripple and noise, and thus improve the stability and reliability of the power supply.
    Specifically:
    1. Input and output capacitors: Linear regulators usually require one or more input capacitors and one output capacitor. These capacitors help smooth the input and output voltages, reduce voltage fluctuations, and thus provide a stable output voltage.
    2. Power supply rejection capability: The power supply rejection capability of a linear regulator is an important indicator, which is related to whether it can effectively suppress unwanted signals and avoid interference with the output voltage. If the power supply rejection capability is poor, unnecessary signals may be left behind, affecting the purity of

  • 3. How to choose a linear regulator?

    1. Switching regulator: A switching regulator uses an output stage that repeatedly switches between "on" and "off" states to generate an output voltage together with an energy storage component. Its adjustment is achieved by adjusting the switching timing based on the feedback sample of the output voltage. In a fixed-frequency regulator, the switching timing is adjusted by adjusting the pulse width of the switching voltage, which is called PWM control.
    2. Parameter regulator: LDO is a linear regulator. Linear regulators use transistors or FETs operating in their linear region to subtract excess voltage from the applied input voltage to produce a regulated output voltage. This transistor allows saturation, so the regulator can have a very low dropout voltage, usually around 200mV.
    3. Regulators for laser cutting machines: According to the use requirements of high-power laser cutting machines and the current power supply situation in my country, regulators that meet

  • 4. What are the two main categories of linear and switching stabilizers?

    The two main categories of linear and switching stabilizers are linear voltage voltage power and switching voltage power supply.
    Linear voltage voltage power has achieved the advantages of transformer, rectification, filtering, and voltage voltage. It has the advantages of good stability, fast transient response speed, high reliability, and high output voltage accuracy. However, its transformation efficiency is low, especially when the output voltage difference is large, if the output current is also large, there will be obvious fever and hot phenomenon, and may even burn the regulator. The linear voltage voltage power supply includes two types: fixed output voltage and adjustable output voltage. According to the selection of the output current and the difference in the input output voltage difference, the design of the linear regulator needs to pay attention to the heat dissipation problem and the choice of bypass capacitors.
    The switching voltage voltage power supply, also known as

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