Holt Integrated Circuits HI-8382JT
Holt Integrated Circuits HI-8382JT
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Holt Integrated Circuits HI-8382JT

Driver Drivers Interface ICs

Manufacturer No:

HI-8382JT

Utmel No:

1109-HI-8382JT

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Description:

Receivers 1 Bits 1 Functions

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HI-8382JT information

Specifications
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Product Details
Holt Integrated Circuits HI-8382JT technical specifications, attributes, parameters and parts with similar specifications to Holt Integrated Circuits HI-8382JT.
  • 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
  • Number of Terminals
    28
  • Transmitter Signal Type
    Differential
  • Receiver Signal Type
    Differential
  • Driving Mode
    No
  • Minimum Operating Temperature (°C)
    -55
  • Maximum Operating Temperature (°C)
    125
  • Minimum Single Supply Voltage (V)
    10.8
  • Maximum Single Supply Voltage (V)
    16.5
  • Maximum Supply Current (mA)
    11
  • Standard Package Name
    LCC
  • Supplier Package
    PLCC
  • Mounting
    Surface Mount
  • Package Height
    4.39 - 0.51(Min)
  • Package Length
    11.51
  • Package Width
    11.51
  • PCB changed
    28
  • Lead Shape
    J-Lead
  • Package Description
    QCCJ, LDCC28,.5SQ
  • Package Style
    CHIP CARRIER
  • Moisture Sensitivity Levels
    3
  • Package Body Material
    PLASTIC/EPOXY
  • Package Equivalence Code
    LDCC28,.5SQ
  • Operating Temperature-Min
    -55 °C
  • Supply Voltage-Nom
    5 V
  • Reflow Temperature-Max (s)
    30
  • Supply Voltage-Min
    4.75 V
  • Operating Temperature-Max
    125 °C
  • Rohs Code
    No
  • Manufacturer Part Number
    HI-8382JT
  • Interface Standards
    ARINC 429
  • Package Code
    QCCJ
  • Package Shape
    SQUARE
  • Manufacturer
    Holt Integrated Circuits Inc
  • Part Life Cycle Code
    Not Recommended
  • Ihs Manufacturer
    HOLT INTEGRATED CIRCUITS INC
  • Supply Voltage-Max
    5.25 V
  • Risk Rank
    8.04
  • Part Package Code
    QLCC
  • 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.

    e0
  • Pbfree Code

    The "Pbfree Code" parameter in electronic components refers to the code or marking used to indicate that the component is lead-free. Lead (Pb) is a toxic substance that has been widely used in electronic components for many years, but due to environmental concerns, there has been a shift towards lead-free alternatives. The Pbfree Code helps manufacturers and users easily identify components that do not contain lead, ensuring compliance with regulations and promoting environmentally friendly practices. It is important to pay attention to the Pbfree Code when selecting electronic components to ensure they meet the necessary requirements for lead-free applications.

    No
  • Part Status

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

    NRND
  • 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.

    7A994
  • 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.

    Tin/Lead (Sn/Pb)
  • Additional Feature

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

    ADJUSTABLE ARINC RISE AND FALL TIMES
  • 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
    Line Driver or Receivers
  • 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.

    CMOS
  • 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.

    J BEND
  • 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.

    225
  • 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.

    unknown
  • Pin Count

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

    28
  • 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-J28
  • Function

    The parameter "Function" in electronic components refers to the specific role or purpose that the component serves within an electronic circuit. It defines how the component interacts with other elements, influences the flow of electrical signals, and contributes to the overall behavior of the system. Functions can include amplification, signal processing, switching, filtering, and energy storage, among others. Understanding the function of each component is essential for designing effective and efficient electronic systems.

    Line Transceiver
  • Qualification Status

    An indicator of formal certification of qualifications.

    Not Qualified
  • Power Supplies

    an electronic circuit that converts the voltage of an alternating current (AC) into a direct current (DC) voltage.?

    5,+-12/+-15 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
  • Data Rate

    Data Rate is defined as the amount of data transmitted during a specified time period over a network. It is the speed at which data is transferred from one device to another or between a peripheral device and the computer. It is generally measured in Mega bits per second(Mbps) or Mega bytes per second(MBps).

    100Kbps
  • Output Characteristics

    Output characteristics in electronic components refer to the relationship between the output voltage and output current across a range of input conditions. This parameter is essential for understanding how a device, such as a transistor or operational amplifier, behaves under various loads and operating points. It provides insights into the efficiency, performance, and limitations of the component, helping designers to make informed choices for circuits and applications.

    TOTEM-POLE
  • 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.

    4.597 mm
  • Differential Output

    a differential output voltage in electronics is the difference between the values of two AC voltages, 180° out of phase, present at the output terminals of an amplifier when you apply a differential input voltage to the input terminals of an amplifier.

    YES
  • Output Polarity

    Output polarity in electronic components refers to the orientation of the output signal in relation to the ground or reference voltage. It indicates whether the output voltage is positive or negative with respect to the ground. Positive output polarity means the signal is higher than the ground potential, while negative output polarity signifies that the signal is lower than the ground. This characteristic is crucial for determining compatibility with other components in a circuit and ensuring proper signal processing.

    COMPLEMENTARY
  • Input Characteristics

    In electronic components, "Input Characteristics" refer to the set of specifications that describe how the component behaves in response to signals or inputs applied to it. These characteristics typically include parameters such as input voltage, input current, input impedance, input capacitance, and input frequency range. Understanding the input characteristics of a component is crucial for designing circuits and systems, as it helps ensure compatibility and proper functioning. By analyzing these parameters, engineers can determine how the component will interact with the signals it receives and make informed decisions about its use in a particular application.

    DIFFERENTIAL
  • Interface IC Type

    The parameter "Interface IC Type" in electronic components refers to the type of integrated circuit (IC) that is used to facilitate communication between different electronic devices or subsystems. This IC is responsible for managing the exchange of data and control signals between the devices, ensuring proper communication and coordination. The specific type of interface IC used can vary depending on the requirements of the system, such as serial communication (e.g., UART, SPI, I2C), parallel communication, or specialized interfaces like USB or Ethernet. Choosing the appropriate interface IC type is crucial for ensuring compatibility, reliability, and efficiency in electronic systems.

    LINE DRIVER
  • Driver Number of Bits
    1
  • Isolation

    Isolation in electronic components refers to the ability of a component to prevent the flow of electrical current between two points that are at different potentials. It is crucial for ensuring safety and preventing electrical hazards in electronic circuits. Isolation can be achieved through various methods such as using insulating materials, physical barriers, or optical isolation techniques. Proper isolation helps to protect sensitive components and circuits from damage due to voltage spikes, noise, or short circuits. It is particularly important in high-voltage applications and when dealing with components that are connected to different power sources.

    No
  • Number of Transceivers
    1
  • Transmit Delay-Max

    Transmit Delay-Max refers to the maximum time interval it takes for a signal to be transmitted from the input to the output of an electronic component or system. This parameter is critical in digital circuits and communication systems, as it affects the overall performance and timing of data transmission. A lower Transmit Delay-Max indicates faster signal propagation, which is essential for high-speed applications. It is typically specified in nanoseconds or microseconds, depending on the technology and design of the component.

    3000 ns
  • Number of Receivers
    2
  • Out Swing-Min

    Out Swing-Min is a parameter in electronic components that indicates the minimum voltage level that an output signal can reach when the device is in a low state. It is critical for determining the output swing of digital circuits, particularly in logic devices and amplifiers. This parameter helps to ensure that the output can properly drive the subsequent stage of a circuit or meet the logic level requirements of connected components. A lower Out Swing-Min value may enhance compatibility with other devices in terms of signal integrity.

    9.5 V
  • High Level Input Current-Max

    High Level Input Current-Max is a parameter in electronic components that specifies the maximum current that can be safely input to the device when the input signal is at a high logic level. This parameter is important for ensuring that the component operates within its specified limits and does not get damaged due to excessive current flow. It is typically measured in milliamperes (mA) and helps in determining the compatibility of the component with the input signal source. Designers and engineers use this parameter to select components that can handle the expected input current levels without malfunctioning.

    0.000001 A
  • Number of Transmitters
    1
  • Supply Voltage1-Min

    Supply Voltage1-Min is a parameter in electronic components that specifies the minimum voltage required for the component to operate within its specified performance range. This parameter is crucial for ensuring the proper functioning of the component and preventing damage due to undervoltage conditions. It is typically provided by the manufacturer in the component's datasheet and serves as a guideline for designers and engineers to ensure that the component is powered within the recommended voltage range. Failure to meet the minimum supply voltage requirement may result in unreliable operation, reduced performance, or even permanent damage to the component.

    12 V
  • Supply Voltage1-Max

    Supply Voltage1-Max is a parameter in electronic components that specifies the maximum voltage that can be safely applied to the component's power supply input. This parameter is crucial for ensuring the component operates within its specified limits and does not get damaged due to overvoltage. Exceeding the maximum supply voltage can lead to permanent damage or malfunction of the component. It is important for designers and engineers to carefully consider and adhere to the specified maximum supply voltage to ensure the reliable and safe operation of the electronic system.

    15 V
  • Power Supply Type

    There are three major kinds of power supplies: unregulated (also called brute force), linear regulated, and switching. The fourth type of power supply circuit called the ripple-regulated, is a hybrid between the “brute force” and “switching” designs, and merits a subsection to itself.

    Single
  • Width
    11.5062 mm
  • Length
    11.5062 mm
  • RoHS Status

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

    RoHS non-compliant
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Download datasheets and manufacturer documentation for Holt Integrated Circuits HI-8382JT.

HI-8382JT Overview

ICs that are packaged with market standard pinouts are available on the market.An important feature of this ic receiver was its 1-bit resolution capability.An additional subcategory named Line Driver or Receivers can be created for this rf transceiver module.It is designed to be operated from a 5,+-12/+-15 V power supply, so the module isolated transceiver will work effectively.This IC implements 1 transceivers overall.There are also 2 receivers in it as well.In addition, the optical transceiver module's ADJUSTABLE ARINC RISE AND FALL TIMES function improves signal management accuracy and stability overall.A LINE DRIVER interface IC controls and manages the sharing of information between devices with ic receiver.In telecommunications, transmitters generate radio waves in order to transmit or send data through an antenna to transmit or send data using radio waves.An rf transceiver module like this has 28 terminals, including external ones.

HI-8382JT Features

28 pin count
5,+-12/+-15 V power supply
28 terminals used for its configuration

HI-8382JT Applications

There are a lot of Holt Integrated Circuits
HI-8382JT Drivers/Receivers/Transceivers applications.


  • Desktop PC
  • Notebook
  • Pocket PC
  • Desktop radio
  • Clock radio
  • Tuner
  • Portable radio
  • Car radio
  • Satellite radio receiver
  • Shortwave receiver
HI-8382JT Relevant information

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