Domestic rotary encoder CAB-85: $r $n √ non-contact $r $n √ with bearings $r $n √ without couplings $r $n √ maintenance free $r $n √ absolute value $r $n √ high precision $r $n √ compact structure $r $n √ easy to install $r $n √ anti vibration, anti impact $r $n √ anti electromagnetic interference $r $n √ low power consumption $r $n √ wide dynamic measurement range $r $n √ integrated solution circuit $r $n √ size customizable
Domestic rotary encoder
CAB-85 Encoder Product Parameters:
Basic Performance
Angular resolution: 18bits
Maximum static error: ± 0.015 °
Repetitive error: ± 1LSB
Maximum operating speed: 3000rpm
Measurement range: single circle
Rotation direction: default clockwise (adjustable)
Mechanical dimensions and installation
Outer diameter \ Inner diameter \ Thickness: 85 \ \ 29 \ \ 26mm
Weight (approximately): 215g
Allowable installation eccentricity: ± 0.1mm
Allowable axial installation tolerance: ± 0.1mm
Fixed rotor clearance: 1mm
Electrical and Interface
Supply voltage: 5V ± 5%
Current: 50mA
Electrical interface: RS-422 shielded cable
Output protocols: SSI, BiSS-C, UART
Application Environment
EMC:IEC 61000-6-2,IEC 61000-6-4
Working temperature: -40 ℃ to+85 ℃
Storage temperature: -50 ℃ to+100 ℃
Relative humidity: 0~99%
Impact: 100g/11ms
Vibration: 20g (10Hz-2000Hz)
Highest protection level: IP67
Domestic rotary encoder
CAB-85 is an inductive angle encoder designed using non-contact electromagnetic induction principles based on wireless energy transmission technology. The product consists of a stator and a rotor. After the stator is powered, it wirelessly transmits energy to the rotor and induces the electromagnetic field of the rotor; The rotor does not require power supply, it receives stator energy in real time and applies it to the coil to form a regular electromagnetic field. The inductive encoder adopts a dual channel design to achieve absolute angle output. The rotor and stator are non-contact and frictionless, with an integrated angle calculation circuit on the rotor*The technology achieves low power consumption and integrates multiple high-speed digital interfaces.
The rotor and stator are both annular hollow structures, and the large hollow structure facilitates the passage of components such as shafts and cables.
When in use, the stator and rotor need to be installed coaxially and parallel to facilitate energy transmission and electromagnetic field induction between the stator and rotor. The products are divided into bearing series and non bearing series, and no coupling is required during installation, with no precision installation requirements. Due to the absence of components such as glass encoders and light sources, induction encoders can achieve high reliability angle measurement in harsh environments. It can be widely used in medical, defense, aerospace, industrial, and robotics applications.