The KSSM series servo motor is a special servo motor designed for application environments such as ultra-high vacuum ultra-high tem- perature, deep low temperature, and irradiation. The shell is made of stain- less steel material and uses a rotary transformer as the motor position feedback component. Rated power of 400W, 750W.1800W, 3800W, volt- age level of 48VDC/220V AC/380VAC.
KLS Series Radiation-Resistant Linear Module from China Suppliers | Ideal for Synchrotron Radiation Facilities and Extreme Environments
Introducing our high-performance stepper motors designed for specialized operations in challenging environments such as vacuum, cryogenic, high temperature, and radiation applications. These motors are perfect for industries requiring precision and reliability under extreme conditions, - **Vacuum Capability**: Operate seamlessly in environments with vacuum levels as low as 10-7Pa, - **Temperature Range**: Our stepper motors function efficiently in temperature extremes, from -196°C to 200°C, - **Radiation Resistance**: Built to withstand radiation exposure, these motors can handle up to 106Gy, making them ideal for applications in nuclear and space industries, - **Base Width Options**: Select from a variety of base widths to suit your specific requirements: 30mm, 40mm, 60mm, 80mm, 135mm, and 170mm, - **Load Capacity**: Designed to support a maximum load capacity of 150Kg in horizontal positioning and 100Kg vertically, ensuring robustness and efficiency, - **Precision and Repeatability**: Achieve exceptional precision with a repeatability of ±0.01mm, vital for high-stakes applications, As a leading manufacturer and trusted supplier in China, our factory guarantees high-quality production and reliable execution of stepper motors tailored for demanding applications. Choose us for your stepper motor needs and experience unmatched performance
Please refer to the specification tables for the available stroke length.
4 Screw Lead (mm)
2, 4, 5, 10, 16, 20mm
Please refer to the specification tables for the available screw lead.
5 Motor Mounting
ISC: In-line (with coupling)
PR: Parallel on right side (with high precision gear, ratio 1:1)
PL: Parallel on left side (with high precision gear, ratio 1:1)
PB: Parallel below the linear motion stage (with high precision gear, ratio 1:1)
6 Environmental Temperature Ratings
Environmental Temperature Rating Code
Temperature Range (℃)
Vacuum Class (Pa, optional)
Radiation Resistance (Gy, optional)
RHT
-20~+200
10-3
106
SHT
-20~+200
10-3 / 10-5 / 10-7
-
HT
-20~+150
10-3 / 10-5 / 10-7
-
NTL1
-40~+85
10-3 / 10-5
-
NTL2
-40~+100
-
-
NTL3
-65~+125
10-3
-
NTL4
-80~+40
10-3
-
NTL5
-55~+150
-
-
7 Vacuum Class
Blank = Non-vacuum
V3 = Low pressure or vacuum to 10-3Pa
V5 = Vacuum to 10-5Pa
V7 = Vacuum to 10-7Pa
8 Radiation Resistance
Blank = No radiation resistance
RH = Radiation resistance (total dose 106Gy)
9 Designator of Mounted Motor
KH42 = KH series 42mm stepper motor
KVM57 = KVM series 57mm stepper motor
KECM400 = KECM series 400W servo motor
KSSM750 = KSSM series 750W servo motor
PB60L2 = PB60 2-stage reducer (please specify the reducer stage, e.g. L1 or L2)
Description
Core Perspective: "Ultra-long maintenance-free life" and "remote fault-tolerant control" in inaccessible, high-radiation environments
Once a beamline at a synchrotron radiation facility is commissioned, the internal equipment often must operate continuously for months or even years without the possibility of routine maintenance. Especially in the front-end regions subjected to radiation intensity of 10^6Gy, even robots cannot enter for service. Any motion module must possess "maintenance-free" characteristics by design. The KLS Series Radiation-Resistant Linear Module is precisely engineered for this purpose. This radiation-resistant linear module completely eliminates organic lubricants, instead employing solid lubrication (embedding) technology. Under high vacuum degree of 10^-7Pa and ultra-high dose rate irradiation, its coefficient of friction remains stable over the long term.
When the heat load from the synchrotron beam raises the ambient temperature to max +200°C, or when a liquid nitrogen-cooled monochromator requires cooling to min -196°C, the clearances of this radiation-resistant linear module are specifically designed to compensate for thermal expansion. This ensures it neither jams from interference fit at high temperatures nor develops excessive play causing instability at low temperatures. At the control level, this radiation-resistant linear module integrates radiation-hardened optical encoders and absolute position feedback. The ±0.01mm repeatability signal remains error-free even after cumulative radiation intensity of 10^6Gy.
The massive body width of 170mm radiation-resistant linear module supports the first crystal of a double-crystal monochromator weighing up to the maximum horizontal load of 150kg. It adjusts the crystal's grazing angle at the nanometer scale to output X-rays of different energies. Conversely, the miniature body width of 30mm radiation-resistant linear module fine-tunes focusing mirrors for sub-millimeter beam spot adjustments. For pulsed neutron sources like the China Spallation Neutron Source (CSNS), the KLS Series Radiation-Resistant Linear Module must maintain position locking under strong vibration. Its unique brake design instantly locks the load upon power loss.
For maintenance, this radiation-resistant linear module supports remote self-diagnostics and predictive maintenance by monitoring motor current fluctuations to estimate internal wear. More advanced is the modular design of the KLS Series Radiation-Resistant Linear Module, which allows the drive motor to be quickly replaced by a remote manipulator inside a hot cell without disassembling the main guideway body. In actual operation, this radiation-resistant linear module has demonstrated that after a cumulative dose of 10^6Gy, the degradation in its ±0.01mm repeatability is less than 5%. In conclusion, the KLS Series Radiation-Resistant Linear Module represents a design philosophy of "maintenance-free, radiation-tolerant, and high-reliability," making it an indispensable radiation-resistant linear module for extreme applications such as synchrotrons and nuclear waste handling.
Frequently Asked Questions
What makes the KLS Series suitable for radiation environments?
The KLS Series is specifically engineered to survive cumulative radiation doses up to 10^6Gy. It achieves this by completely eliminating organic lubricants and utilizing advanced solid lubrication (embedding) technology, alongside radiation-hardened optical encoders for feedback.
Can the KLS Series operate in high vacuum and high temperature conditions?
Yes, the stages support vacuum classes up to 10^-7Pa (V7 code) and high temperature ratings up to +200°C (RHT and SHT codes). Their mechanical clearances are design-compensated for thermal expansion to prevent jamming or excessive play.
What is the repeatability accuracy of these linear modules under radiation?
The KLS Series features a ±0.01mm repeatability. Real-world testing demonstrates that even after a cumulative radiation dose of 10^6Gy, the degradation in repeatability is less than 5%.
How does the modular design benefit remote maintenance?
In high-radiation hot cells or inaccessible areas, the modular design allows the drive motor to be quickly replaced by a remote manipulator without disassembling the main guideway body. Additionally, it supports remote self-diagnostics by monitoring motor current fluctuations to predict internal wear.
What are the available base widths and stroke lengths?
Base widths range from a miniature 30mm (for sub-millimeter beam spot adjustments) up to a massive 170mm (supporting loads up to 150kg). Standard stroke lengths are available from 50mm up to 1500mm.