TA33-8K87F2K

Vishay Sfernice TA33-8K87F2K

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  • TA33-8K87F2K
  • Vishay Sfernice
  • SFERNICE THIN FILMS
  • Resistor Networks, Arrays
  • TA33-8K87F2K Datasheet
  • -
  • Tray
  • Lead free / RoHS CompliantLead free / RoHS Compliant
  • 2085
  • Spot Inventory / Athorized Dstributor / Factory Excess Stock
  • 1 year quality assurance 》
  • Click to get rates

What is TA33-8K87F2K

Vishay Sfernice Part Number TA33-8K87F2KResistor Networks, Arrays), developed and manufactured by Vishay Sfernice, distributed globally by Jinftry. We distribute various electronic components from world-renowned brands and provide one-stop services, making us a trusted global electronic component distributor.

TA33-8K87F2K is one of the part numbers distributed by Jinftry, and you can learn about its specifications/configurations, package/case, Datasheet, and other information here. Electronic components are affected by supply and demand, and prices fluctuate frequently. If you have a demand, please do not hesitate to send us an RFQ or email us immediately [email protected] Please inquire about the real-time unit price, Data Code, Lead time, payment terms, and any other information you would like to know. We will do our best to provide you with a quotation and reply as soon as possible.

TA33-8K87F2K Specifications

  • Part NumberTA33-8K87F2K
  • CategoryResistor Networks, Arrays
  • ManufacturerVishay Sfernice
  • DescriptionSFERNICE THIN FILMS
  • PackageTray
  • Series-
  • Operating Temperature-
  • Mounting Type-
  • Package / Case-
  • Supplier Device Package-
  • Applications-
  • Tolerance-
  • Temperature Coefficient-
  • Size / Dimension-
  • Resistance (Ohms)-
  • Height - Seated (Max)-
  • Circuit Type-
  • Number of Resistors-
  • Number of Pins-
  • Power Per Element-
  • Resistor Matching Ratio-
  • Resistor-Ratio-Drift-

Application of TA33-8K87F2K

The role of Resistor Networks and Arrays is particularly significant. In high performance self-return-to-zero programmable instrumentation amplifiers, resistance array circuit is the core part of high precision measurement. At the same time, in the design of electronic products, resistor networks are often used to adjust circuit parameters and protect components from overcurrent damage. Resistor network and array are also widely used in analog signal processing, digital signal processing, communication system and other fields, becoming the key technology to achieve high precision measurement and signal processing. In addition, with the rise of emerging technologies such as the Internet of Things and smart homes, resistor networks and arrays are increasingly widely used in sensor networks and signal processing modules.

TA33-8K87F2K Datasheet

TA33-8K87F2K Datasheet , Tray

TA33-8K87F2K Classification

Resistor Networks, Arrays

Resistor Networks and Arrays are the basic components of electronic circuits, which combine multiple resistors through a specific arrangement and connection mode to form a circuit structure with a specific function. In simple terms, the resistor network refers to a circuit that is connected by a number of resistors according to a certain law, and the resistor array refers to that these resistors are arranged in the form of an array in order to achieve a specific circuit function more efficiently. The main function of resistor networks and arrays is to regulate, distribute and control the current and voltage in the circuit. Through reasonable design and layout, they can realize signal attenuation, voltage division, filtering and other functions, so as to improve the performance and stability of the circuit.

FAQ about Resistor Networks, Arrays

  • 1. What is a resistor network?

    A resistor network is a circuit system composed of multiple resistor elements connected in a certain topological structure. These resistor elements can be discrete resistors or multiple resistors with consistent parameters integrated on a substrate, which are made by comprehensive mask, photolithography and sintering process technologies.
    Basic composition and characteristics of resistor networks
    Structure: A resistor network can be composed of discrete resistors or multiple resistors with consistent parameters integrated on a substrate. These resistors are connected together through specific process technologies to form a complex circuit structure.
    Characteristics: Resistor networks have various characteristics, including but not limited to stability, accuracy and reliability. Integrated resistor networks are often used in application scenarios that require high accuracy and high reliability due to their consistency and stability.

  • 2. How to reduce network resistance?

    The main methods for reducing network resistance include the following:
    Improving the power factor of users: By reducing the reactive power transmitted by the line, the network resistance can be effectively reduced. This can be achieved by installing a reactive power compensation device.
    Adding a reactive power compensation device: By adding a reactive power compensation device, the network energy loss can be reduced, thereby reducing the network resistance.
    Implement economic distribution of power in a closed network: By reasonably distributing power and avoiding local overload, network resistance can be reduced.
    Appropriately improve the operation level of the power grid: By optimizing the operation mode of the power grid, the efficiency of the power grid can be improved, thereby reducing network resistance.
    Organize the economic operation of transformers: Reasonably arrange the operation mode of transformers to avoid overload, which can effectively reduce network resistance.
    Adjust the user's load curve: By adjusting the user's load curve to avoid overload during peak hours, network resistance can be reduced.

  • 3. What is an array in a semiconductor?

    The array in a semiconductor mainly refers to a memory cell array. The memory cell array is the core part of a semiconductor memory, which is composed of a large number of memory cells arranged in a certain pattern. Each memory cell can store one or more bits of data.
    Structure and function of memory cell array
    The memory cell array is a key component of semiconductor memory, which specifically includes the following parts:
    Address decoder: translates the address signal into the selection signal of the corresponding memory cell, and cooperates with the read/write circuit to complete the read/write operation.
    Read/write circuit: includes read amplifier and write circuit, used to complete read/write operation.
    Control logic: determines the read/write operation of the chip.

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Vishay Sfernice
Vishay Sfernice
Vishay Sfernice is a part of Vishay. Vishay Sfernice is a company dedicated to designing, manufacturing, and selling high-quality sensors and electronic components.
Vishay Sfernice's products mainly include resistors, temperature sensors, pressure sensors,...
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