Power Integrations TNY256PN
Power Integrations TNY256PN
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Power Integrations TNY256PN

AC-DC converter TinySwitch® Plus Series 8 Pin AC to DC Converter ICs

Manufacturer No:

TNY256PN

Manufacturer:

Power Integrations

Utmel No:

1932-TNY256PN

Package:

8-DIP (0.300, 7.62mm)

Datasheet:

TNY256

ECAD Model:

Description:

8 Pin AC to DC power converter TinySwitch® Plus Series 130kHz Min 85V V Max 265V V

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In Stock : 23585

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TNY256PN information

Specifications
Documents & Media
Product Details
Power Integrations TNY256PN technical specifications, attributes, parameters and parts with similar specifications to Power Integrations TNY256PN.
  • Type
    Parameter
  • Mounting Type

    The "Mounting Type" in electronic components refers to the method used to attach or connect a component to a circuit board or other substrate, such as through-hole, surface-mount, or panel mount.

    Through Hole
  • Package / Case

    refers to the protective housing that encases an electronic component, providing mechanical support, electrical connections, and thermal management.

    8-DIP (0.300, 7.62mm)
  • Number of Pins
    8
  • Supplier Device Package

    The parameter "Supplier Device Package" in electronic components refers to the physical packaging or housing of the component as provided by the supplier. It specifies the form factor, dimensions, and layout of the component, which are crucial for compatibility and integration into electronic circuits and systems. The supplier device package information typically includes details such as the package type (e.g., DIP, SOP, QFN), number of pins, pitch, and overall size, allowing engineers and designers to select the appropriate component for their specific application requirements. Understanding the supplier device package is essential for proper component selection, placement, and soldering during the manufacturing process to ensure optimal performance and reliability of the electronic system.

    8-DIP
  • Operating Temperature

    The operating temperature is the range of ambient temperature within which a power supply, or any other electrical equipment, operate in. This ranges from a minimum operating temperature, to a peak or maximum operating temperature, outside which, the power supply may fail.

    -40°C~150°C TJ
  • Packaging

    Semiconductor package is a carrier / shell used to contain and cover one or more semiconductor components or integrated circuits. The material of the shell can be metal, plastic, glass or ceramic.

    Tube
  • Series

    In electronic components, the "Series" refers to a group of products that share similar characteristics, designs, or functionalities, often produced by the same manufacturer. These components within a series typically have common specifications but may vary in terms of voltage, power, or packaging to meet different application needs. The series name helps identify and differentiate between various product lines within a manufacturer's catalog.

    TinySwitch® Plus
  • Published
    2001
  • Part Status

    Parts can have many statuses as they progress through the configuration, analysis, review, and approval stages.

    Obsolete
  • Moisture Sensitivity Level (MSL)

    Moisture Sensitivity Level (MSL) is a standardized rating that indicates the susceptibility of electronic components, particularly semiconductors, to moisture-induced damage during storage and the soldering process, defining the allowable exposure time to ambient conditions before they require special handling or baking to prevent failures

    1 (Unlimited)
  • Max Operating Temperature

    The Maximum Operating Temperature is the maximum body temperature at which the thermistor is designed to operate for extended periods of time with acceptable stability of its electrical characteristics.

    150°C
  • Min Operating Temperature

    The "Min Operating Temperature" parameter in electronic components refers to the lowest temperature at which the component is designed to operate effectively and reliably. This parameter is crucial for ensuring the proper functioning and longevity of the component, as operating below this temperature may lead to performance issues or even damage. Manufacturers specify the minimum operating temperature to provide guidance to users on the environmental conditions in which the component can safely operate. It is important to adhere to this parameter to prevent malfunctions and ensure the overall reliability of the electronic system.

    -40°C
  • Power (Watts)

    The parameter "Power (Watts)" in electronic components refers to the amount of electrical energy consumed or dissipated by the component. It is a measure of how much energy the component can handle or generate. Power is typically measured in watts, which is a unit of power that indicates the rate at which energy is transferred. Understanding the power rating of electronic components is crucial for ensuring they operate within their specified limits to prevent overheating and potential damage. It is important to consider power requirements when designing circuits or selecting components to ensure proper functionality and reliability.

    10W
  • Max Power Dissipation

    The maximum power that the MOSFET can dissipate continuously under the specified thermal conditions.

    10W
  • Output Voltage

    Output voltage is a crucial parameter in electronic components that refers to the voltage level produced by the component as a result of its operation. It represents the electrical potential difference between the output terminal of the component and a reference point, typically ground. The output voltage is a key factor in determining the performance and functionality of the component, as it dictates the level of voltage that will be delivered to the connected circuit or load. It is often specified in datasheets and technical specifications to ensure compatibility and proper functioning within a given system.

    5.8V
  • Nominal Supply Current

    Nominal current is the same as the rated current. It is the current drawn by the motor while delivering rated mechanical output at its shaft.

    255μA
  • Control Features

    Control features in electronic components refer to specific functionalities or characteristics that allow users to manage and regulate the operation of the component. These features are designed to provide users with control over various aspects of the component's performance, such as adjusting settings, monitoring parameters, or enabling specific modes of operation. Control features can include options for input/output configurations, power management, communication protocols, and other settings that help users customize and optimize the component's behavior according to their requirements. Overall, control features play a crucial role in enhancing the flexibility, usability, and performance of electronic components in various applications.

    EN
  • Topology

    In the context of electronic components, "topology" refers to the arrangement or configuration of the components within a circuit or system. It defines how the components are connected to each other and how signals flow between them. The choice of topology can significantly impact the performance, efficiency, and functionality of the electronic system. Common topologies include series, parallel, star, mesh, and hybrid configurations, each with its own advantages and limitations. Designers carefully select the appropriate topology based on the specific requirements of the circuit to achieve the desired performance and functionality.

    Flyback
  • Frequency - Switching

    "Frequency - Switching" in electronic components refers to the rate at which a device, such as a transistor or switching regulator, turns on and off during operation. This parameter is crucial in determining the efficiency and performance of power converters, oscillators, and other circuits that rely on rapid switching. Higher switching frequencies typically allow for smaller component sizes but may require more advanced design considerations to manage heat and electromagnetic interference.

    130kHz
  • Internal Switch(s)

    The term "Internal Switch(s)" in electronic components typically refers to a built-in mechanism within a device that allows for the control of electrical current flow. These internal switches can be used to turn circuits on or off, change the direction of current, or regulate the flow of electricity within the component. They are often designed to be controlled externally, either manually or automatically, to enable various functions or operations within the electronic device. Internal switches play a crucial role in the overall functionality and performance of electronic components by providing a means to manage and manipulate electrical signals effectively.

    Yes
  • Fault Protection

    Protection against electric shock under. single fault conditions.

    Current Limiting, Over Temperature
  • Max Duty Cycle

    Max Duty Cycle refers to the maximum percentage of time that an electronic component, such as a switch or a power supply, can be in an "on" state during a defined time period. It is an important parameter in pulse-width modulated (PWM) systems and helps determine how often a device can operate without overheating or sustaining damage. By specifying the maximum duty cycle, manufacturers provide guidance on the safe operational limits of the component, ensuring reliability and efficiency in various applications.

    69 %
  • Max Supply Voltage (AC)

    Max Supply Voltage (AC) refers to the maximum alternating current voltage that an electronic component can safely handle without risk of damage or failure. This parameter ensures the component operates within its designed voltage range and prevents overheating or breakdown. Exceeding the maximum supply voltage can lead to degradation of performance or complete failure of the component. It is crucial for designers to consider this specification when integrating components into electronic circuits to maintain reliability and safety.

    265V
  • Duty Cycle

    the percentage of the ratio of pulse duration, or pulse width (PW) to the total period (T) of the waveform.

    66%
  • Output Isolation

    Output isolation in electronic components refers to the degree to which the output signal is electrically separated or isolated from the input signal or other parts of the circuit. This isolation is important for preventing interference, noise, or voltage fluctuations from affecting the output signal. It helps maintain signal integrity and ensures that the output remains stable and accurate. Output isolation can be achieved through various methods such as using transformers, optocouplers, or isolation amplifiers to physically separate the input and output circuits electrically. This parameter is particularly crucial in applications where there is a need to protect sensitive components or ensure reliable communication between different parts of a system.

    Isolated
  • Voltage - Breakdown

    Voltage - Breakdown is a parameter that refers to the maximum voltage that an electronic component can withstand before it breaks down and allows current to flow through it uncontrollably. This breakdown voltage is a critical specification for components like diodes, transistors, and capacitors, as exceeding this voltage can lead to permanent damage or failure of the component. Manufacturers typically provide this information in datasheets to help engineers and designers ensure the proper operation and reliability of their circuits. It is important to consider the breakdown voltage when designing circuits to prevent overvoltage conditions that could compromise the performance and longevity of the components.

    700V
  • Min Supply Voltage (AC)

    Min Supply Voltage (AC) refers to the minimum alternating current voltage required for an electronic component or device to function properly. It ensures that the device operates within its designed specifications and performance parameters. Operating below this voltage may result in insufficient performance, malfunction, or potential damage to the component. This parameter is critical for ensuring compatibility with power sources and maintaining reliability in electronic applications.

    85V
  • Radiation Hardening

    Radiation hardening is the process of making electronic components and circuits resistant to damage or malfunction caused by high levels of ionizing radiation, especially for environments in outer space (especially beyond the low Earth orbit), around nuclear reactors and particle accelerators, or during nuclear accidents or nuclear warfare.

    No
  • RoHS Status

    RoHS means “Restriction of Certain Hazardous Substances” in the “Hazardous Substances Directive” in electrical and electronic equipment.

    RoHS Compliant
  • Lead Free

    Lead Free is a term used to describe electronic components that do not contain lead as part of their composition. Lead is a toxic material that can have harmful effects on human health and the environment, so the electronics industry has been moving towards lead-free components to reduce these risks. Lead-free components are typically made using alternative materials such as silver, copper, and tin. Manufacturers must comply with regulations such as the Restriction of Hazardous Substances (RoHS) directive to ensure that their products are lead-free and environmentally friendly.

    Lead Free
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Download datasheets and manufacturer documentation for Power Integrations TNY256PN.

TNY256PN Overview

In the 8-DIP (0.300, 7.62mm) package, the ac to dc converter is embedded.In Tube AC/DC power converter, it is available.The AC/DC converter is mounted in the way of Through Hole .It is recommended that the ac dc converter be operated at a temperature of -40°C~150°C TJ in order to ensure its performance.At this point, the switching frequency reaches 130kHz .The ac/dc converter has 8 pins.A member of the TinySwitch® Plus manufacturer family, it has the following characteristics.The output voltage of the AC/DC converter is 5.8V .A voltage of 85V is the minimum supply voltage across the converter.There is a maximum supply voltage of 265V across the converter.A package of 8-DIP is included with this AC to DC converter.Using the maximum 150°C ensures that the AC to DC power converter runs in a stable manner.A minimum working temperature of -40°C must be maintained for this isolated switch.

TNY256PN Features

Packaged with 8-DIP (0.300, 7.62mm)
Switching Frequency at 130kHz
With 8 pins

TNY256PN Applications

There are a lot of Power Integrations
TNY256PN AC DC Converters applications.


  • AC/DC Adaptors/Chargers for Cordless Phone
  • AC/DC Adaptors/Chargers for PDAs
  • AC/DC Adaptors/Chargers for E-books
  • Adaptors for Portable Media Player
  • Adaptors for DSCs
  • Set-top boxes
  • DVD players
  • Records
  • Linear Adapter Replacements
  • Chargers for cell/cordless phones