Medical Appliances Motor

Medical Appliances Motor

Model: TW-DC40 Series
Classification:Permanent Magnet Motor
Application:Medical devices, Hospital instrument, Electric Tool, Mixer, Blender, Power Distribution Equipment.etc
Notes: The motors can be designed according to customer requirements
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Product Introduction

Medical appliances motor


Medical appliances motors, like motors in various other applications, work based on the principles of electromagnetism and the interaction between magnetic fields and electric current. Here's a simplified explanation of how a medical appliance motor works:

Power Supply: The motor requires an electrical power supply. In medical appliances, this power is typically supplied by a standard electrical outlet or a battery, depending on the device.

Electromagnetic Components: A typical motor consists of two main parts: a stationary part called the stator and a rotating part called the rotor. The stator is stationary, while the rotor is mounted on a shaft, which can rotate.

Coils and Magnets: In the stator, there are coils of wire wound around an iron or steel core. These coils are typically connected to the power source. When current flows through these coils, they create electromagnetic fields.

Magnetic Field Interaction: In the rotor, there are either permanent magnets or electromagnets. The rotor is attracted to the magnetic fields generated by the stator. The interaction of these magnetic fields causes the rotor to start rotating.

Switching the Current: In some motors, the direction of the current through the stator coils is switched periodically. This switching of current direction causes the rotor to continually rotate. In a simple motor, this is done with a commutator and brushes. In more advanced motors, electronic circuits may control the current direction.

Control and Regulation: In medical appliances, it's often important to control the motor's speed, direction, and operation. This can be achieved by adjusting the voltage and current supplied to the motor and by using various control mechanisms. The control mechanisms can be manual, such as switches or dials, or they can be automated and computerized for precise control.

Drive Mechanisms: In medical appliances, motors are often used to drive various mechanisms, such as pumps for delivering medication, actuators for adjusting positions, or fans for temperature control. The specific function of the motor depends on the appliance.

The exact workings of a medical appliance motor can vary depending on the type of motor (DC or AC), the specific application, and the level of automation and control needed. Motors used in medical appliances are designed to be reliable, durable, and often equipped with safety features to ensure the safe and efficient operation of the medical device


1.Product Introduction


This is a low voltage DC motor that is primarily suitable for use on medical equipment. Model DM-40 series, steering with CW/CCW, Hall sensor options.


2. Product Parameter


Model

No-load speed

No-load current

Max efficiency

Max output power

Max torque


RPM

A

%

W

m/NM

DM4025

3200

0.32

71

64

760

DM4030

3200

0.35

72

76

1000

DM403532000.407389
1300


3. Product Feature and application


Typical applications: medical equipment, hospital instruments, power distribution equipment. and many more


Production Details

Outline drawing:

1

2


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