National Semiconductor Corporation LP3907QSQ-JXIP/NOPB
National Semiconductor Corporation LP3907QSQ-JXIP/NOPB
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National Semiconductor Corporation LP3907QSQ-JXIP/NOPB

PMIC

Manufacturer No:

LP3907QSQ-JXIP/NOPB

Utmel No:

1704-LP3907QSQ-JXIP/NOPB

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Description:

0.5 mm PMIC

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Currently, our products are shipped through DHL, FedEx, SF, and UPS.

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Once the goods are shipped, estimated delivery time depends on the shipping methods you chose:

FedEx International, 5-7 business days.

The following are some common countries' logistic time.transport
  • Prepare productStep1:Prepare product
  • Vacuum packagingStep2:Vacuum packaging
  • Anti-static bagStep3:Anti-static bag
  • Individual packageStep4:Individual package
  • Packaging boxStep5:Packaging box
  • Barcode shipping labelStep6:Barcode shipping label
LP3907QSQ-JXIP/NOPB information

Specifications
Documents & Media
Product Details
National Semiconductor Corporation LP3907QSQ-JXIP/NOPB technical specifications, attributes, parameters and parts with similar specifications to National Semiconductor Corporation LP3907QSQ-JXIP/NOPB.
  • Type
    Parameter
  • Surface Mount

    having leads that are designed to be soldered on the side of a circuit board that the body of the component is mounted on.

    YES
  • Material

    In electronic components, the parameter "Material" refers to the substance or material used in the construction of the component. The choice of material is crucial as it directly impacts the component's performance, durability, and other characteristics. Different materials have varying properties such as conductivity, resistance to heat, corrosion resistance, and mechanical strength, which determine how the component functions in a circuit. Common materials used in electronic components include metals like copper and aluminum, semiconductors like silicon, insulators like ceramics and plastics, and various alloys. Selecting the appropriate material is essential for designing reliable and efficient electronic components.

    aluminium
  • Number of Terminals
    24
  • Type of sound transducer
    microphone
  • Kind of microphone
    electret
  • Microphone sensitivity
    -40dB
  • Body dimensions
    Ø4x1.5mm
  • Operating current
    0.5mA
  • Leads
    cables
  • Mounting
    cables
  • Gross weight
    1.41 g
  • Rohs Code
    Yes
  • Part Life Cycle Code
    Transferred
  • Ihs Manufacturer
    NATIONAL SEMICONDUCTOR CORP
  • Operating Temperature-Max
    85 °C
  • Operating Temperature-Min
    -40 °C
  • Package Body Material
    PLASTIC/EPOXY
  • Package Code
    QCCN
  • Package Equivalence Code
    LCC24,.16SQ,20
  • Package Shape
    SQUARE
  • Package Style
    CHIP CARRIER
  • Operating temperature
    -40...70°C
  • JESD-609 Code

    The "JESD-609 Code" in electronic components refers to a standardized marking code that indicates the lead-free solder composition and finish of electronic components for compliance with environmental regulations.

    e3
  • Terminal Finish

    Terminal Finish refers to the surface treatment applied to the terminals or leads of electronic components to enhance their performance and longevity. It can improve solderability, corrosion resistance, and overall reliability of the connection in electronic assemblies. Common finishes include nickel, gold, and tin, each possessing distinct properties suitable for various applications. The choice of terminal finish can significantly impact the durability and effectiveness of electronic devices.

    MATTE TIN
  • Terminal Position

    In electronic components, the term "Terminal Position" refers to the physical location of the connection points on the component where external electrical connections can be made. These connection points, known as terminals, are typically used to attach wires, leads, or other components to the main body of the electronic component. The terminal position is important for ensuring proper connectivity and functionality of the component within a circuit. It is often specified in technical datasheets or component specifications to help designers and engineers understand how to properly integrate the component into their circuit designs.

    QUAD
  • Terminal Form

    Occurring at or forming the end of a series, succession, or the like; closing; concluding.

    NO LEAD
  • Peak Reflow Temperature (Cel)

    Peak Reflow Temperature (Cel) is a parameter that specifies the maximum temperature at which an electronic component can be exposed during the reflow soldering process. Reflow soldering is a common method used to attach electronic components to a circuit board. The Peak Reflow Temperature is crucial because it ensures that the component is not damaged or degraded during the soldering process. Exceeding the specified Peak Reflow Temperature can lead to issues such as component failure, reduced performance, or even permanent damage to the component. It is important for manufacturers and assemblers to adhere to the recommended Peak Reflow Temperature to ensure the reliability and functionality of the electronic components.

    260
  • Terminal Pitch

    The center distance from one pole to the next.

    0.5 mm
  • Reach Compliance Code

    Reach Compliance Code refers to a designation indicating that electronic components meet the requirements set by the Registration, Evaluation, Authorization, and Restriction of Chemicals (REACH) regulation in the European Union. It signifies that the manufacturer has assessed and managed the chemical substances within the components to ensure safety and environmental protection. This code is vital for compliance with regulations aimed at minimizing risks associated with hazardous substances in electronic products.

    compliant
  • Time@Peak Reflow Temperature-Max (s)

    Time@Peak Reflow Temperature-Max (s) refers to the maximum duration that an electronic component can be exposed to the peak reflow temperature during the soldering process, which is crucial for ensuring reliable solder joint formation without damaging the component.

    40
  • JESD-30 Code

    JESD-30 Code refers to a standardized descriptive designation system established by JEDEC for semiconductor-device packages. This system provides a systematic method for generating designators that convey essential information about the package's physical characteristics, such as size and shape, which aids in component identification and selection. By using JESD-30 codes, manufacturers and engineers can ensure consistency and clarity in the specification of semiconductor packages across various applications and industries.

    S-PQCC-N24
  • Qualification Status

    An indicator of formal certification of qualifications.

    Not Qualified
  • Temperature Grade

    Temperature grades represent a tire's resistance to heat and its ability to dissipate heat when tested under controlled laboratory test conditions.

    INDUSTRIAL
  • Impedance

    In electrical engineering, impedance is the opposition to alternating current presented by the combined effect of resistance and reactance in a circuit.

    2.2kΩ
  • Cable length
    0.17m
  • Control Mode

    In electronic components, "Control Mode" refers to the method or mode of operation used to regulate or control the behavior of the component. This parameter determines how the component responds to input signals or commands to achieve the desired output. The control mode can vary depending on the specific component and its intended function, such as voltage regulation, current limiting, or frequency modulation. Understanding the control mode of an electronic component is crucial for proper integration and operation within a circuit or system.

    VOLTAGE-MODE
  • Output Current-Max

    Output Current-Max is a parameter in electronic components that specifies the maximum amount of current that can be safely drawn from the output of the component without causing damage. It is an important specification to consider when designing circuits to ensure that the component can handle the required current without overheating or failing. Exceeding the maximum output current can lead to performance issues, component damage, or even complete failure of the circuit. It is crucial to adhere to the specified maximum output current to ensure the reliable operation of the electronic component and the overall circuit.

    1 A
  • Bandwidth

    In electronic components, "Bandwidth" refers to the range of frequencies over which the component can effectively operate or pass signals without significant loss or distortion. It is a crucial parameter for devices like amplifiers, filters, and communication systems. The bandwidth is typically defined as the difference between the upper and lower frequencies at which the component's performance meets specified criteria, such as a certain level of signal attenuation or distortion. A wider bandwidth indicates that the component can handle a broader range of frequencies, making it more versatile for various applications. Understanding the bandwidth of electronic components is essential for designing and optimizing circuits to ensure proper signal transmission and reception within the desired frequency range.

    0.1...20kHz
  • Switching Frequency-Max

    Switching Frequency-Max is a parameter in electronic components that refers to the maximum frequency at which the device can switch on and off within a given period of time. This parameter is crucial in determining the performance and efficiency of the component, especially in applications such as power supplies, inverters, and motor drives. A higher switching frequency allows for faster operation and can result in smaller component sizes, reduced power losses, and improved overall system performance. However, it is important to consider the trade-offs between switching frequency, efficiency, and heat dissipation to ensure optimal operation of the electronic component.

    400 kHz
  • Saturation Current

    Saturation current is the maximum current that flows through a diode when it is in the forward-biased condition, and additional increases in voltage do not lead to significant increases in current. It represents the point where all available carriers have been used for conduction, and further increases in voltage only result in a minimal change in current. In transistors, saturation current refers to the collector current in a saturated state, where the transistor is fully ON and providing the maximum amplification of input signals. This parameter is crucial for understanding the behavior of semiconductor devices in various operating conditions.

    1
  • Operating voltage
    2...10V
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Download datasheets and manufacturer documentation for National Semiconductor Corporation LP3907QSQ-JXIP/NOPB.

LP3907QSQ-JXIP/NOPB Overview

In order to relow solder, it is necessary to allow the temperature to peak 260.

LP3907QSQ-JXIP/NOPB Features

Peak Reflow Temperature: 260

LP3907QSQ-JXIP/NOPB Applications

There are a lot of National Semiconductor Corporation
LP3907QSQ-JXIP/NOPB Linear Regulator Controllers applications.


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