Xicor X9420YPM-2.7
Xicor X9420YPM-2.7
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Xicor X9420YPM-2.7

Manufacturer No:

X9420YPM-2.7

Manufacturer:

Xicor

Utmel No:

2772-X9420YPM-2.7

Package:

-

ECAD Model:

Description:

PLASTIC, DIP-16

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User Guide

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Shipping Method

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

Delivery Time

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
X9420YPM-2.7 information

Specifications
Xicor X9420YPM-2.7 technical specifications, attributes, parameters and parts with similar specifications to Xicor X9420YPM-2.7.
  • 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.

    NO
  • Number of Terminals
    16
  • Manufacturer Part Number
    X9420YPM-2.7
  • Part Life Cycle Code
    Obsolete
  • Ihs Manufacturer
    XICOR INC
  • Package Description
    PLASTIC, DIP-16
  • Risk Rank
    5.72
  • Operating Temperature-Max
    125 °C
  • Operating Temperature-Min
    -55 °C
  • Package Body Material
    PLASTIC/EPOXY
  • Package Code
    DIP
  • Package Shape
    RECTANGULAR
  • Package Style
    IN-LINE
  • Temperature Coefficient-Nom
    300 ppm/°C
  • Total Resistance-Nom
    2500 Ω
  • Number of Positions
    64
  • Additional Feature

    Any Feature, including a modified Existing Feature, that is not an Existing Feature.

    NONVOLATILE MEMORY
  • 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.

    DUAL
  • Terminal Form

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

    THROUGH-HOLE
  • Number of Functions
    1
  • 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.

    unknown
  • 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.

    R-PDIP-T16
  • 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.

    MILITARY
  • Converter Type

    The parameter "Converter Type" in electronic components refers to the classification of devices that convert one form of energy or signal to another. This includes devices such as analog-to-digital converters (ADCs), digital-to-analog converters (DACs), and various types of signal converters used in communication, power management, and measurement systems. Each converter type is designed to facilitate the manipulation or transformation of signals to meet specific application requirements. The choice of converter type typically depends on factors such as the signal characteristics, required accuracy, and conversion speed.

    DIGITAL POTENTIOMETER
  • Resistor Terminal Voltage-Max

    Resistor Terminal Voltage-Max refers to the maximum voltage that can be safely applied across the terminals of a resistor without causing damage or failure. This parameter is critical in circuit design as exceeding this voltage can lead to overheating, degradation of the resistor material, or even complete failure of the component. It is essential for engineers to consider this limit to ensure reliable and safe operation of electronic circuits.

    5.5 V
  • Resistor Terminal Voltage-Min

    Resistor Terminal Voltage-Min refers to the minimum voltage that can be applied across the terminals of a resistor without causing damage to the component. This parameter is important to ensure that the resistor operates within its specified limits and does not exceed its maximum voltage rating. Exceeding the minimum terminal voltage can lead to overheating, increased resistance, or even permanent damage to the resistor. It is crucial to adhere to the manufacturer's guidelines and datasheet specifications to prevent any potential issues with the resistor's performance and longevity.

    -5.5 V
  • Resistance Law

    In electronic components, the Resistance Law refers to the relationship between the resistance of a material and its physical dimensions. Specifically, it describes how the resistance of a material changes based on its length, cross-sectional area, and resistivity. The Resistance Law is typically represented by the formula R = ρ * (L/A), where R is the resistance, ρ is the resistivity of the material, L is the length of the material, and A is the cross-sectional area. This law is fundamental in understanding and designing electronic circuits, as it helps determine the behavior of resistors and other components in a circuit based on their physical characteristics.

    LINEAR
  • Control Interface

    The "Control Interface" in electronic components refers to the means by which a user or another system can interact with and control the operation of the component. It typically includes input/output ports, buttons, switches, or other mechanisms that allow for communication and manipulation of the component's settings or functions. The control interface is crucial for configuring the component, adjusting its behavior, and integrating it into larger systems or networks. It serves as the bridge between the user or external system and the internal workings of the electronic component, enabling effective operation and utilization.

    3-WIRE SERIAL
  • Resistance Tolerance-Max

    Resistance tolerance-max is a specification that indicates the maximum allowable deviation from the specified resistance value of an electronic component. It represents the maximum amount by which the actual resistance of the component can differ from the nominal or target resistance value. For example, if a resistor has a resistance tolerance-max of ±5%, it means that the actual resistance of the resistor can vary by up to 5% above or below the specified resistance value. This parameter is important for ensuring the accuracy and reliability of electronic circuits, as components with tighter tolerance values will provide more precise performance.

    20%
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