The STMicroelectronics L6205PD013TR is a powerful motor driver designed to drive stepper and DC motors efficiently, making it a go-to choice for a variety of applications. Its full-bridge configuration ensures smooth motor operation while supporting a wide range of supply voltages. In this comprehensive article, we'll delve into the intricacies of the L6205PD013TR, uncovering its definition, key features, specifications, applications, and a closer look at its manufacturer.
Catalog
The L6205PD013TR is a Full Bridge Motor Driver designed to control stepper motors and dual or quad DC motors. Operating within a wide voltage range (8V to 52V), it delivers stable and efficient performance while providing effective control of both types of motors. The device employs advanced BCD, Bipolar, CMOS, and DMOS technology, ensuring that it can handle complex tasks with minimal energy loss and heat generation. With a control interface using PWM (Pulse Width Modulation), this driver can easily integrate into diverse electronic systems that demand precise motor control.
Let's delve into the standout features that make the L6205PD013TR a standout in the world of electronics:
· This motor driver operates with supply voltages from 8V to 52V, with a typical operating voltage of 48V.
· The full bridge configuration enables efficient bi-directional control of motors, essential for stepper and DC motors.
· With a maximum operating temperature of 150°C and a minimum of -40°C, this device is capable of functioning in extreme environments.
· The L6205PD013TR comes in a 20-pin PowerSO EP package with a maximum height of 3.3mm and width of 11.1mm.
· This motor driver has a shutdown threshold of 6V.
Now, let's take a closer look at the technical specifications that define the capabilities of the L6205PD013TR:
Type | Parameter |
Automotive | No |
PPAP | No |
Type | Motor Driver |
Motor Type | Stepper Motor |
Process Technology | BCD|Bipolar|CMOS|DMOS |
Control Interface | PWM |
Output Configuration | Full Bridge |
Minimum Operating Supply Voltage (V) | 8 |
Operating Supply Voltage (V) | 8 to 52 |
Typical Operating Supply Voltage (V) | 48 |
Maximum Operating Supply Voltage (V) | 52 |
Shutdown Threshold (V) | 6 |
Minimum Operating Temperature (°C) | -40 |
Maximum Operating Temperature (°C) | 150 |
Packaging | Tape and Reel |
Mounting | Surface Mount |
Package Height | 3.3(Max) |
Package Width | 11.1(Max) |
Package Length | 16(Max) |
PCB changed | 20 |
Standard Package Name | SO |
Supplier Package | PowerSO EP |
Pin Count | 20 |
The L6205PD013TR is versatile and can be used in various motor-driven applications, such as:
· Bipolar Stepper Motors: Ideal for controlling stepper motors, this driver ensures smooth operation and precision in applications like 3D printers, robotics, and industrial automation.
· Dual or Quad DC Motors: It's also well-suited for controlling DC motors in applications such as automotive systems, electric wheelchairs, conveyor belts, and HVAC systems.
· Automated Systems: In industrial automation and robotics, the L6205PD013TR can help ensure high-speed and precise motor control, enhancing system efficiency.
STMicroelectronics, often abbreviated as ST, is a global semiconductor manufacturer with a long-standing reputation for producing innovative and high-quality electronic components. With headquarters in Geneva, Switzerland, and a strong international presence, STMicroelectronics is a leading player in the semiconductor industry. They specialize in designing and manufacturing a wide range of semiconductor devices, including microcontrollers, sensors, power management solutions, and more. STMicroelectronics is trusted by industries worldwide, including automotive, consumer electronics, industrial, and telecommunications, for their cutting-edge technology and commitment to advancing the field of electronics.
The STMicroelectronics L6205PD013TR motor driver is a powerful and flexible solution for controlling stepper motors and DC motors in a variety of applications. Its wide operating voltage range, compact size, and high-temperature tolerance make it a valuable component for demanding environments.