Allegro MicroSystems, LLC A4975SB-T

Mfr.Part #:

A4975SB-T
Description:
IC MOTOR DRIVER PAR 16DIP

RoHS Status:

RoHS

Datasheet:

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Specifications

Product Details

Product Comparison

Factory Lead Time
16 Weeks
Mount
Through Hole
Mounting Type

Mounting Type refers to the method by which an electronic component is attached to a printed circuit board (PCB) or other surface. Common mounting types include: * Through-hole: Component leads are inserted into holes in the PCB and soldered on the other side. * Surface-mount: Component is placed on the surface of the PCB and soldered in place. * Press-fit: Component is pressed into place on the PCB without soldering. * Socket: Component is inserted into a socket on the PCB, allowing for easy replacement. The mounting type is determined by factors such as the component's size, shape, and power requirements.

Through Hole
Package / Case

Package / Case refers to the physical housing or enclosure that encapsulates an electronic component. It provides protection, facilitates handling, and enables electrical connections. The package type determines the component's size, shape, pin configuration, and mounting options. Common package types include DIP (dual in-line package), SOIC (small outline integrated circuit), and BGA (ball grid array). The package also influences the component's thermal and electrical performance.

16-PowerDIP (0.300, 7.62mm)
Number of Pins

Number of Pins: Indicates the number of electrical connections available on the component. These pins are used to connect the component to other components or circuits on a printed circuit board (PCB). The number of pins determines the functionality and connectivity options of the component. It is important to ensure that the component has the correct number of pins for the intended application.

16
Operating Temperature

Operating Temperature is the range of temperatures at which an electronic component can function properly. It is typically specified in degrees Celsius (°C) and indicates the minimum and maximum temperatures at which the component can operate without experiencing damage or degradation. Operating Temperature is an important parameter to consider when designing electronic circuits, as it ensures that the components will function reliably in the intended operating environment.

-20°C~150°C TJ
Packaging
Tube
Published
2011
JESD-609 Code
e3
Part Status

Part Status is an electronic component parameter that indicates the availability and production status of a component. It is typically used to inform customers about the availability of a component, whether it is in production, end-of-life, or obsolete. Part Status can also provide information about any restrictions or limitations on the component's use, such as whether it is only available for certain applications or if it has been discontinued.

Obsolete
Moisture Sensitivity Level (MSL)

Moisture Sensitivity Level (MSL) is a measure of the susceptibility of a surface mount electronic component to moisture-induced damage during soldering. It is classified into six levels, from 1 (least sensitive) to 6 (most sensitive). MSL is determined by the materials used in the component's construction, including the solderability of its terminals and the presence of moisture-absorbing materials. Components with higher MSL ratings require more stringent handling and storage conditions to prevent moisture absorption and subsequent damage during soldering.

1 (Unlimited)
Number of Terminations
16
Terminal Finish
Matte Tin (Sn)
Applications
General Purpose
Additional Feature
ALSO REQUIRE 5V TO 50V
Subcategory
Motion Control Electronics
Technology

Technology, in the context of electronic components, refers to the specific manufacturing process and materials used to create the component. It encompasses the semiconductor fabrication techniques, such as the type of transistor used (e.g., MOSFET, BJT), the gate oxide thickness, and the interconnect materials. Technology also includes the packaging type, such as surface mount or through-hole, and the leadframe or substrate material. The technology used impacts the component's performance characteristics, such as speed, power consumption, and reliability.

Power MOSFET
Voltage - Supply
4.5V~5.5V
Terminal Position
DUAL
Supply Voltage

Supply Voltage is the voltage required to power an electronic component. It is typically measured in volts (V) and is specified in the component's datasheet. The supply voltage must be within the specified range for the component to function properly. If the supply voltage is too low, the component may not function at all. If the supply voltage is too high, the component may be damaged.

5V
Terminal Pitch
2.54mm
Base Part Number
A4975
Function

Function refers to the primary purpose or role of an electronic component within a circuit. It describes the specific task or operation that the component is designed to perform. For example, a resistor's function is to limit current flow, a capacitor's function is to store electrical energy, and a transistor's function is to amplify or switch signals. Understanding the function of a component is crucial for selecting the appropriate component for a particular application and ensuring its proper operation within the circuit.

Driver - Fully Integrated, Control and Power Stage
Number of Outputs

Number of Outputs refers to the number of independent output signals or channels that an electronic component can provide. It indicates the capability of the component to drive multiple external devices or circuits simultaneously. A higher number of outputs allows for greater flexibility and connectivity in electronic systems.

1
Output Voltage

Output Voltage is the voltage level produced by an electronic component when it is operating. It is typically measured in volts (V) and can be either positive or negative. The output voltage of a component is determined by its design and the input voltage applied to it. For example, a voltage regulator will produce a fixed output voltage regardless of the input voltage, while an amplifier will produce an output voltage that is proportional to the input voltage.

50V
Supply Voltage-Max (Vsup)
5.5V
Power Supplies
5V
Supply Voltage-Min (Vsup)
4.5V
Interface

In electronics, an interface refers to the connection point or boundary between two or more electronic systems or devices. It defines the physical, electrical, and logical characteristics that enable communication and data exchange between them. An interface specifies the protocols, pinouts, voltage levels, data formats, and other parameters necessary for the systems to interact seamlessly. It ensures compatibility and interoperability between different components or devices, allowing them to exchange information and perform their intended functions.

Parallel
Output Configuration

Output Configuration refers to the arrangement of output terminals or pins on an electronic component. It specifies the number, type, and arrangement of these terminals, allowing for various connection options. This parameter is crucial for determining the component's compatibility with other devices and ensuring proper signal flow within a circuit.

Half Bridge (2)
Collector Emitter Voltage (VCEO)

Collector-Emitter Voltage (VCEO) is a parameter that specifies the maximum voltage that can be applied between the collector and emitter terminals of a transistor when it is in the off state. It is important to ensure that the VCEO rating of a transistor is not exceeded, as this can lead to damage to the device. The VCEO rating is typically specified in the datasheet for a transistor.

50V
Max Collector Current
1.5A
Voltage - Load
5V~50V
Motor Type

Motor Type refers to the type of electric motor used in an electronic device. It specifies the design and operating characteristics of the motor, such as its construction, winding configuration, and commutation method. Common motor types include DC motors, AC motors (synchronous and asynchronous), stepper motors, and brushless DC motors. Each type has unique properties and is suitable for specific applications based on factors such as speed, torque, efficiency, and control requirements.

Stepper
Motor Type - Stepper
Bipolar
Step Resolution

Step Resolution refers to the smallest increment of movement or change that an electronic component can make. It is typically measured in units of degrees, steps, or counts. A higher step resolution indicates that the component can make more precise adjustments, resulting in smoother and more accurate operation. Step Resolution is a crucial parameter for components used in applications such as motors, actuators, and encoders, where precise control of movement or position is essential.

1, 1/2, 1/4, 1/8
Height

Height, in the context of electronic components, refers to the vertical dimension of the component. It is typically measured in millimeters (mm) or inches (in). Height is an important parameter to consider when designing and assembling electronic circuits, as it affects the overall size and form factor of the device. Components with a smaller height are often preferred for applications where space is limited, such as in portable devices or embedded systems.

5.33mm
Length

Length, in the context of electronic components, refers to the physical dimension of a component along its longest axis. It is typically measured in millimeters (mm) or inches (in). Length is a crucial parameter for determining the physical size and space requirements of a component on a printed circuit board (PCB) or other assembly. It also affects the component's electrical characteristics, such as inductance and capacitance, which can be influenced by the length of conductors or traces within the component.

19.05mm
Width
6.35mm
Radiation Hardening
No
REACH SVHC
No SVHC
RoHS Status
ROHS3 Compliant
Description
The A4975 is a full-bridge PWM microstepping motor driver designed to drive one winding of a bipolar stepper motor. It features:
Continuous output current up to ±1.5 A
Output voltage rating of 50 V
Internal PWM current control
3-bit nonlinear DAC
Fast, mixed fast/slow, and slow current-decay modes
Internal thermal shutdown circuitry
Crossover-current and UVLO protection

Features
High output current capability (1.5 A continuous)
Wide operating voltage range (up to 50 V)
Internal PWM current control for precise motor control
Nonlinear DAC for microstepping with reduced torque variations
Multiple current-decay modes for optimized performance
Thermal shutdown and protection circuitry for enhanced reliability

Applications
The A4975 is suitable for a wide range of applications, including:
Industrial automation
Robotics
Medical devices
Printers
Scanners
Other applications requiring precise and efficient stepper motor control
  • Image
    Part Number
    Manufacturer
    Factory Lead Time
    Mount
    Mounting Type
    Package / Case
    Number of Pins
    Operating Temperature
    Packaging
    Published
    JESD-609 Code
    Part Status
    Moisture Sensitivity Level (MSL)
    Number of Terminations
    Terminal Finish
    Applications
    Additional Feature
    Subcategory
    Technology
    Voltage - Supply
    Terminal Position
    Supply Voltage
    Terminal Pitch
    Base Part Number
    Function
    Number of Outputs
    Output Voltage
    Supply Voltage-Max (Vsup)
    Power Supplies
    Supply Voltage-Min (Vsup)
    Interface
    Output Configuration
    Collector Emitter Voltage (VCEO)
    Max Collector Current
    Voltage - Load
    Motor Type
    Motor Type - Stepper
    Step Resolution
    Height
    Length
    Width
    Radiation Hardening
    REACH SVHC
    RoHS Status
    Surface Mount
    Pbfree Code
    HTS Code
    Terminal Form
    Peak Reflow Temperature (Cel)
    Reflow Temperature-Max (s)
    Qualification Status
    Analog IC - Other Type
    Supply Current-Max (Isup)
    Motor Type - AC, DC
    Height Seated (Max)
    Supplier Device Package
    View Compare
  • A4975SB-T
    A4975SB-T
    16 Weeks
    Through Hole
    Through Hole
    16-PowerDIP (0.300, 7.62mm)
    16
    -20°C~150°C TJ
    Tube
    2011
    e3
    Obsolete
    1 (Unlimited)
    16
    Matte Tin (Sn)
    General Purpose
    ALSO REQUIRE 5V TO 50V
    Motion Control Electronics
    Power MOSFET
    4.5V~5.5V
    DUAL
    5V
    2.54mm
    A4975
    Driver - Fully Integrated, Control and Power Stage
    1
    50V
    5.5V
    5V
    4.5V
    Parallel
    Half Bridge (2)
    50V
    1.5A
    5V~50V
    Stepper
    Bipolar
    1, 1/2, 1/4, 1/8
    5.33mm
    19.05mm
    6.35mm
    No
    No SVHC
    ROHS3 Compliant
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
  • A4915MLPTR-T
    11 Weeks
    -
    Surface Mount
    28-TSSOP (0.173, 4.40mm Width) Exposed Pad
    28
    -20°C~150°C TJ
    Cut Tape (CT)
    2014
    e3
    Active
    2 (1 Year)
    28
    Matte Tin (Sn)
    General Purpose
    ALSO OPERATES WITH THE RANGE OF 5V-50V SUPPLY
    Motion Control Electronics
    Power MOSFET
    3V~5.5V
    QUAD
    24V
    0.65mm
    A4915M
    Controller - Commutation, Direction Management
    -
    -
    5.5V
    24V
    3V
    Parallel
    Pre-Driver - Half Bridge
    -
    -
    5V~50V
    -
    -
    -
    -
    9.7mm
    4.4mm
    -
    -
    ROHS3 Compliant
    YES
    yes
    8542.39.00.01
    NO LEAD
    260
    40
    Not Qualified
    BRUSHLESS DC MOTOR CONTROLLER
    24mA
    Brushless DC (BLDC)
    1.2mm
    -
  • A4945KLJTR-T
    10 Weeks
    -
    Surface Mount
    8-SOIC (0.154, 3.90mm Width) Exposed Pad
    -
    -
    Tape & Reel (TR)
    -
    -
    Obsolete
    1 (Unlimited)
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    ROHS3 Compliant
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    8-SOIC-EP

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