Texas Instruments 5962-89905022A

DC DC Voltage Regulator 20-Pin Switching Regulator IC Chip

Mfr. Part #:5962-89905022A
Manufacturer:Texas Instruments
Utmel Part #:2502-5962-89905022A
Package:-
Usage Grade:
  • Military
ECAD Model:
Description: 20-Pin DC DC Voltage Regulator SWITCHING CONTROLLER

Unit Price: $66.670282

Ext Price: $66.67

In Stock: 5

Min: 1Mult: 1

QtyUnit PriceExt Price
166.67028266.67
1062.896492628.96
10059.3363135,933.63
50055.97765427,988.83
100052.80910852,809.11

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5962-89905022A Information
Texas Instruments 5962-89905022A technical specifications, attributes, parameters and parts with similar specifications to Texas Instruments 5962-89905022A.
  • Type
    Parameter
  • Type
    Parameter
  • Lifecycle Status

    Lifecycle Status refers to the current stage of an electronic component in its product life cycle, indicating whether it is active, obsolete, or transitioning between these states. An active status means the component is in production and available for purchase. An obsolete status indicates that the component is no longer being manufactured or supported, and manufacturers typically provide a limited time frame for support. Understanding the lifecycle status is crucial for design engineers to ensure continuity and reliability in their projects.

    Production (Last Updated: 1 week ago)
  • Factory Lead Time
    6 Weeks
  • 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
  • Number of Pins
    20
  • Number of Terminals
    20
  • On/Off Pin
    No
  • Number of PWM Outputs
    2
  • Supplier Package
    LCCC
  • Adjustable Output
    No
  • SwitchingFrequency
    1000 kHz
  • Mounting
    Surface Mount
  • Package
    Tube
  • Mfr
    Texas Instruments
  • Product Status
    Active
  • Manufacturer Lifecycle Status
    ACTIVE (Last Updated: 1 week ago)
  • RoHS
    Compliant
  • Package Description
    LCC-20
  • Package Style
    CHIP CARRIER
  • Package Body Material
    CERAMIC, METAL-SEALED COFIRED
  • Package Equivalence Code
    LCC20,.35SQ
  • Operating Temperature-Min
    -55 °C
  • Reflow Temperature-Max (s)
    NOT SPECIFIED
  • Operating Temperature-Max
    125 °C
  • Input Voltage-Max
    20 V
  • Manufacturer Part Number
    5962-89905022A
  • Supply Voltage-Nom (Vsup)
    12 V
  • Package Code
    QCCN
  • Package Shape
    SQUARE
  • Manufacturer
    Texas
  • Part Life Cycle Code
    Active
  • Input Voltage-Min
    12 V
  • Ihs Manufacturer
    Texas INC
  • Output Voltage-Nom
    5.1 V
  • Risk Rank
    1.55
  • Part Package Code
    QLCC
  • Usage Level
    Military grade
  • 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.

    -55 to 125 °C
  • 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.

    *
  • ECCN Code

    An ECCN (Export Control Classification Number) is an alphanumeric code used by the U.S. Bureau of Industry and Security to identify and categorize electronic components and other dual-use items that may require an export license based on their technical characteristics and potential for military use.

    EAR99
  • 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.

    125 °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.

    -55 °C
  • Additional Feature

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

    CAN ALSO BE CONFIGURED IN CURRENT MODE
  • HTS Code

    HTS (Harmonized Tariff Schedule) codes are product classification codes between 8-1 digits. The first six digits are an HS code, and the countries of import assign the subsequent digits to provide additional classification. U.S. HTS codes are 1 digits and are administered by the U.S. International Trade Commission.

    8542.39.00.01
  • Subcategory
    Switching Regulator or Controllers
  • Technology

    In the context of electronic components, the parameter "Technology" refers to the specific manufacturing process and materials used to create the component. This includes the design, construction, and materials used in the production of the component. The technology used can greatly impact the performance, efficiency, and reliability of the electronic component. Different technologies may be used for different types of components, such as integrated circuits, resistors, capacitors, and more. Understanding the technology behind electronic components is important for selecting the right components for a particular application and ensuring optimal performance.

    BICMOS
  • 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.

    NOT SPECIFIED
  • Number of Functions
    1
  • Terminal Pitch

    The center distance from one pole to the next.

    1.27 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.

    not_compliant
  • Pin Count

    a count of all of the component leads (or pins)

    20
  • 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-CQCC-N20
  • Qualification Status

    An indicator of formal certification of qualifications.

    Qualified
  • Brand Name
    Texas
  • Input Voltage-Nom

    Input Voltage-Nom refers to the nominal or rated input voltage that an electronic component or device is designed to operate within. This parameter specifies the voltage level at which the component is expected to function optimally and safely. It is important to ensure that the actual input voltage supplied to the component does not exceed this nominal value to prevent damage or malfunction. Manufacturers provide this specification to guide users in selecting the appropriate power supply or input voltage source for the component. It is a critical parameter to consider when designing or using electronic circuits to ensure reliable performance and longevity of the component.

    12 V
  • 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
  • Max Supply Voltage

    In general, the absolute maximum common-mode voltage is VEE-0.3V and VCC+0.3V, but for products without a protection element at the VCC side, voltages up to the absolute maximum rated supply voltage (i.e. VEE+36V) can be supplied, regardless of supply voltage.

    22 V
  • Analog IC - Other Type

    Analog IC - Other Type is a parameter used to categorize electronic components that are integrated circuits (ICs) designed for analog signal processing but do not fall into more specific subcategories such as amplifiers, comparators, or voltage regulators. These ICs may include specialized analog functions such as analog-to-digital converters (ADCs), digital-to-analog converters (DACs), voltage references, or signal conditioning circuits. They are typically used in various applications where precise analog signal processing is required, such as in audio equipment, instrumentation, communication systems, and industrial control systems. Manufacturers provide detailed specifications for these components to help engineers select the most suitable IC for their specific design requirements.

    SWITCHING CONTROLLER
  • Output Current

    The rated output current is the maximum load current that a power supply can provide at a specified ambient temperature. A power supply can never provide more current that it's rated output current unless there is a fault, such as short circuit at the load.

    2 A
  • 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, Boost
  • 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.

    2.2 A
  • Control Technique

    In electronic components, "Control Technique" refers to the method or approach used to regulate and manage the operation of the component. This parameter is crucial in determining how the component functions within a circuit or system. Different control techniques can include analog control, digital control, pulse-width modulation (PWM), and various feedback mechanisms. The choice of control technique can impact the performance, efficiency, and overall functionality of the electronic component. It is important to select the appropriate control technique based on the specific requirements and characteristics of the application in which the component will be used.

    PULSE WIDTH MODULATION
  • Seated Height-Max

    Seated Height-Max in electronic components refers to the maximum height at which a component can be comfortably installed or operated when a user is seated. It is particularly relevant in designs involving ergonomic considerations, where the placement of controls, displays, or other interfaces must accommodate users in seated positions. This parameter ensures accessibility and usability, preventing strain or discomfort during operation.

    2.03 mm
  • Rise Time

    In electronics, when describing a voltage or current step function, rise time is the time taken by a signal to change from a specified low value to a specified high value.

    20 ns
  • Supply Current-Max (Isup)

    Supply Current-Max (Isup) refers to the maximum amount of current that an electronic component can draw from its power supply during operation. It represents the peak current demand of the device under normal operating conditions and is critical for ensuring that the power supply can adequately support the component's needs without risking damage or malfunction. This parameter is essential for designing circuits and selecting appropriate power supply units to prevent overloading and ensure reliable performance.

    36 mA
  • Switcher Configuration

    Switcher Configuration in electronic components refers to the arrangement or setup of a switcher circuit, which is a type of power supply that converts one form of electrical energy into another. The configuration of a switcher circuit includes the specific components used, such as transistors, diodes, capacitors, and inductors, as well as their interconnections and control mechanisms. The switcher configuration determines the efficiency, voltage regulation, and other performance characteristics of the power supply. Different switcher configurations, such as buck, boost, buck-boost, and flyback, are used for various applications depending on the desired output voltage and current requirements. Understanding and selecting the appropriate switcher configuration is crucial in designing reliable and efficient power supply systems for electronic devices.

    PUSH-PULL
  • 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.

    1150 kHz
  • Screening Level

    In electronic components, the term "Screening Level" refers to the level of testing and inspection that a component undergoes to ensure its reliability and performance. This process involves subjecting the component to various tests, such as temperature cycling, burn-in, and electrical testing, to identify any defects or weaknesses that could affect its functionality. The screening level is typically determined based on the application requirements and the criticality of the component in the system. Components that undergo higher screening levels are generally more reliable but may also be more expensive. Overall, the screening level helps to ensure that electronic components meet the necessary quality standards for their intended use.

    MIL-STD-883
  • Output Voltage-Max

    Output Voltage-Max is a parameter in electronic components that specifies the maximum voltage level that can be safely output by the component under normal operating conditions. This parameter is crucial for ensuring the proper functioning and longevity of the component, as exceeding the maximum output voltage can lead to damage or failure. Designers and engineers must carefully consider this specification when selecting components for a circuit to prevent overloading and potential hazards. It is important to adhere to the specified maximum output voltage to maintain the reliability and performance of the electronic system.

    5.15 V
  • 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.

    100 %
  • Output Voltage-Min

    Output Voltage-Min is a parameter in electronic components that specifies the minimum voltage level that the component can provide at its output terminal under specified operating conditions. This parameter is crucial for determining the range of voltages that the component can deliver reliably to the connected circuit or device. It helps in ensuring that the output voltage remains within acceptable limits to prevent damage to the component or the connected components. Designers and engineers use this parameter to select components that meet the voltage requirements of their circuits and to ensure proper functionality and performance.

    5.05 V
  • Duty Cycle

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

    100 %
  • Width
    8.89 mm
  • Height
    0 m
  • Length
    8.89 mm
  • Thickness

    Thickness in electronic components refers to the measurement of how thick a particular material or layer is within the component structure. It can pertain to various aspects, such as the thickness of a substrate, a dielectric layer, or conductive traces. This parameter is crucial as it impacts the electrical, mechanical, and thermal properties of the component, influencing its performance and reliability in electronic circuits.

    1.83 mm
  • 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.

    Contains Lead
0 Products
Product Details

5962-89905022A Overview

This regulator voltage is equipped with a type of analog integrated circuit that is called a SWITCHING CONTROLLER voltage regulator. Operating at -55 to 125 °C is the recommended temperature for adjusting voltage regulator's operation. Its NOT SPECIFIED peak reflow temperature makes this regulator essentially indestructible. An input voltage of 12 V is required for switching regulator operation. DC DC switching regulator is part of the Switching Regulator or Controllers subcategory and can be found in the Switching Regulator or Controllers category. For switching regulator operation, 20 pins are used. As a result, this regulator operates with the maximum switching frequency of 1150 kHz. This 12 volt voltage regulator is capable of supplying an output current of up to 2.2 A A. This voltage regulator belongs to the * family and is known as a switching DC-DC regulator. CAN ALSO BE CONFIGURED IN CURRENT MODE-switching regulators provide efficiency and stability. Stable operation of switching regulator is ensured by the high maximum operating temperature 125 °C. Ensures reliability by operating at aDC DC switching regulator's minimum temperature of -55 °C. DC DC switching regulator can be operated from a voltage of 22 V as its maximum supply voltage. It has a 20-pin voltage regulator dc to dc. A DC DC switching regulator output current of 2 A is normal.

5962-89905022A Features

Peak reflow temperature (Cel) of NOT SPECIFIED
20 pins
Maxium switching frequency of 1150 kHz
CAN ALSO BE CONFIGURED IN CURRENT MODE

5962-89905022A Applications

There are a lot of Texas Instruments
5962-89905022A Voltage Regulators applications.


  • Computer application technology
  • Network technology
  • Automation technology
  • CMM
  • Various precision measuring instruments
  • Various precision measuring detectors
  • Flaw detection equipment
  • Balance equipment
  • Industrial robots
  • Industrial controllers
5962-89905022A Information