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Minggu, 03 Februari 2013

Safety Standard

Safety Standard
KS Mark (Korean Industrial Standards)
KS means Korean Industrial Standards, established as National Standards through examination and deliberation of Industrial Standard Deliberation Committee, based on Industrial Standardization Law announced in Sep. 30, 1961. This defines technical terms, codes, dimension, type, shape, test, analysis, inspection method, design, materials, production and packing method etc. and the standard related to electrical section shall be marked as KSC. The standard for motor is as follows
  • Method of characteristic calculation for 3 phase induction motor
  • Low pressure 3 phase induction motor for general purpose
  • High pressure 3 phase induction motor for general purpose
  • Single phase induction motor for general purpose
  • Starting class of induction motor

JIS (Japanese Industrial Standards)
JIS is Japanese Industrial Standards, established as National Standards by deliberation of Japanese Industrial Standard Committee which was organized by all experts based on Standardized Law.
  • General Principle of Revolving Electric Machine
  • High pressure (3000V) 3 phase induction motor
  • Single phase induction motor for general purpose
  • Starting class of induction motor
  • Method of characteristic calculation for 3 phase induction motor
  • Low pressure 3 phase cage type induction motor for general purpose
  • Low pressure 3 phase induction machine
  • Principle of general explosion-proof structure of electrical machine
  • General explosion-proof structure of electric power machine

CCC (China Compulsory Certification)
CCC is the certification system for quality safety, executed from August 2003 in China. Before joining the WTO, China has implemented the binary policy that the certification system related to quality and safety is applied separately for the domestic products and the imported products. However, according to the comments that it is giving preference to the people of China, China integrated CCEE (China Certification for the Safety of Domestic Products) and CCIB (China Certification for the Safety of Imported Products) as one certification system of CCC for the improvement of certification system since May 1, 2002 and later put CCC certification system into force since August 2003 after having a grace period. The manufacturers who produce the corresponding product in China or who export to China are required to obtain CCC mark and if failed to obtain a certificate, the products are not allowed for customs as well as charged maximum 4.8 million KRW for penalty.

RoHS (The Restriction of the use of certain Hazardous Substances in electrical and electronic equipment)
This is a regulation for the restriction for the use of certain Hazardous Substances in manufacturing electrical and electronic equipment and an environmental regulation set in force by EU. 6 certain hazardous substances include lead (Pb), Cadmium (Cd), mercury (Hg), Chrome (Cr6+), PBBs(Polybrominated phenyls), and PBDEs(Polybrominated diphenyl ethers).

UL (Underwriters Laboratories Inc)
This is non-profit foundation established by the Union of USA Fire Underwriters Laboratories in 1894 and the world authoritative inspection institute who works for test research and certification for the safety of machine, instrument or materials in order to protect the life of personnel and properties from fire or other accidents. The range of certification is limited to the general purpose such as electronic application machine, motor application machine, electronic parts etc but in most states of USA, the products are not allowed to sell without UL certification and even if the sales are allowed, if the fire breaks out due to the product without UL certificate, USA Fire Underwriter Laboratories shall not be responsible for that. Thus, as the consumers purchase only the products with UL certificates, the products having obtained UL certificate are distributed in USA. In addition, recently, UL was acknowledged as certification institution or test institution by SCC (Standard Council of Canada) and authorized from all states of Canada. When requesting a UL, if you request a SCC together and receive the test result ‘PASS’, you can attach c-UL to distribute in USA and CANADA at the same time.
  • UL - 50: ENCLOSURES FOR ELECTRICAL EQUIPMENT
  • UL - 73: STANDARD FOR MOTOR - OPERATED APPLIANCES
  • UL - 94: TEST FOR FLAMMABILITY OF PLASTIC MATERIALS
  • UL - 507: ELECTRIC FANS
  • UL - 519: IMPEDANCE PROTECTED MOTOR
  • UL - 547: THERMAL PROTECTED MOTOR
  • UL - 674: ELECTRIC MOTORS AND GENERATORS
  • UL - 845: MOTOR CONTROL CENTERS
  • UL - 1004: ELECTRIC MOTOR
  • UL - 1446: SYSTEM OF INSULATING MATERIALS - GENERAL
  • UL - 1692: POLYMERIC MATERIALS - COIL FORMS

CSA (Canadian Standards Association)
This standard was established by Electric Association of Canada and for electric equipment, electric parts, GAS, petroleum fuel equipment, safety instruments etc, it is not allowed to sell except for the products with CSA mark in order to protect the life of personnel and properties from fire or other accidents. Thus CSA defines the standard as requirements of inspection to verify the safety of these parts. In addition, as CSA is acknowledged as NRTL (Nationally Recognized Test Laboratories) by OSHA (Occupation Safety Health Association) of USA, if it is recognized as suitable for safety standard of USA, it is allowed to sell and use in USA by attaching the NRTL added mark to CSA mark.
  • C22.2 NO. 77 : MOTORS WITH INHERENT OVERHEATING PROTECTION
  • C22.2 NO.100 : MOTORS AND GENERATORS
  • C22.2 NO.113 : FAN AND VENTILATORS

CE Marking
This is the product safety mark obligated for the products which are distributed in EU and this mark is allowed only for the products suitable for the safety principles directed by EC Directive. The purpose of CE mark is to unify the safety principles per country and distribute the safety assured products smoothly, and by adjusting and unifying the safety principles for machine, medical instruments, toys, pressurized container etc per product, the unified principles are delivered as orders. For example, for industrial robot, the obligation to meet the orders related to machine until January 1995, the orders related to EMC (Electromagnetic Conformity) until January 1996 and the orders related to low voltage until 1997 shall be generated.

EN STANDARD
In the area of EU, the efforts to unify the industrial standard and safety standard of each country are being in process and CEN (European Committee for Standardization) and CENELEC (European Committee for Electrotechnical Standardization) are leading its role. The unified standard is called ‘HARMONIZED STANDARD’ and EN is attached in the front digit of standard number. In case of exporting to EU area, EN standard is based on the design and manufacturing but in case not yet established by EN standard, IEC and VDE are applied and when tested by civil certification institution such as TÜV Rheinland. If passed, each safety mark can be used for the products by inspecting from certificate authorities such as VDE and get approved.

DIN (Deutsches Institut für Normung)
DIN is the standard established by German Standardization Committee and for E Class motors of Korea, this standard is applied.

ISO-9000
This is an international standard based on BS 5750 and ANSI Z 1,15 of UK and a system that ISO (International Standardization Organization) evaluates general quality system of supplier who provides the product or service to consumers and acknowledges the quality assurance capability based on ISO-9000 established in 1987.

IEC (International Electrotechnical Commision Publications)
IEC covers the part related to motor directly such as insulation, system of attached dimension, shaft system etc as well as general and wide range of electric and mechanic. That is, this is designed to be used properly with the standard in actual operation and currently JIS or KS of motor is also defined based on IEC dimension.

Technical Data DKM - Gearhead

Technical Data - Gearhead
1. Definition of Gearhead
It is a speed converter using gears and an instrumental device to reduce the rpm of motor into the required rpm and get a bigger torque.
2. Features of DKM Gearheads
Small type having a big transfer capability
Good durability
Wide range of gear ratio
3. The Kind of DKM Gearhead
⑴ According to Frame Size
Frame Size □60mm Gearhead
Frame Size □70mm Gearhead
Frame Size □80mm Gearhead
Frame Size □90mm Gearhead
⑵ According to Direction of Output Shaft of Gearhead
1) Parallel Gearhead
Parallel Gearhead is the most common type in small geared motor.
DKM employs spur type and helical type.
Especially the helical gear is employed for the low-noise and high-strength performance.
Regarding noise the important part in gear is the contacting point with motor shaft which rotating rapidly. DKM employed helical gear which cut high precisely in that point and realized low-noise performance.
2) Worm Gearhead
Worm Gearhead has the advantage of using the limited space with high efficiency and realizes the cost saving effect by the reduction of using power transmission part like coupling.
DKM has worm solid type (for up to 120W) and worm hollow type (for 60W-200W).
4. The Efficiency of Gearhead
1) The Efficiency of Parallel Gearhead
2) The Efficiency of Worm Gearhead
5. Maximum Permissible Torque
The output torque of gearhead is in proportion to the gear ratio.
But there is limit in the size of load which can be applied to the gearhead in specific gear ratio depending on gear construction and materials etc. affecting the gearhead mechanical strength.
This torque is called the maximum permissible torque.
The maximum permissible torques of typical gearheads are shown in the figure.
6. Gearhead Life Expectancy and Service Factor
Life expectancy of gearhead varies depending on load fluctuation and is determined by the 'service factor' based on its load. Service factor is a coefficient which is used to estimate the service life of the gearhead. This value is generally derived from experience and based on type of the load and operating conditions. The standard life can be expected when the product is operated at service factor 1.0. The life of a component during particular application is estimated by dividing the standard life expectancy by the service factor.
For example, if the motor is operating with an ordinary load for 8 continuous hours a day, the service factor is 1.0. Thus, if the operation continues within the permissible torque for the gearhead and within the range of prescribed temperature (letting the gearhead case temperature stay below 50℃), the life expectancy of the gearhead is 10,000 hours for the ball bearing type and 2,000 hours for the metal type. However, if a ball bearing type of gearhead is operating for 24 hours a day, the service factor becomes 1.5 so that the life expectancy decreases to 1/1.5. Therefore the service factor should be taken into acoount to select such a motor and a gearhead which have biggest permissible torque.
7. Overhung Load and Thrust Load
1) The overhung load is defined as a load applied to the output shaft in the right-angle direction. This load is generated when the gearhead is coupled to the machine using a chain, belt, etc., but not when the gearhead is directly connected to the coupling. The thrust load is defined as a load applied to the output shaft in the axial direction.
2) Since the overhung load exerts a load directly on the bearing, it affects the life span of the gearhead.
The overhung load can be calculated from the following equation.
3) If the motor operates with the calculated overhung load exceeds the maximum allowable value in below table, the output shaft may bend and the fatigue deformation may occur due to the repeated load. So consider it and take care in sizing.
4) In the case of that calculated overhung load value exceeds above allowable value, please set up the structure of the motor as below to withstand the overhung load.
5) Also, if a load should be directly imposed on the output shaft, please place the load as near to the gearhead as possible to avoid the one-sided load.
6) In the case of that a helical gear or a worm gear is employed as an output delivery mechanism, make sure not to exceed both the overhung load and the thrust load simultaneously.
8. Backlash Noise of Gearhead
1) Operating Noise of Gearhead
The backlash noise can be indicated by operating noise value.
DKM Gearhead’s operating noise is like below.
< Reference>
i) Operating noise value is the value measured beside Gearhead with 1m distance.
ii) dB (decibel) is a unit of measurement which is used to indicate how loud a sound is.
iii) Level of operating noise (Ref. value)
    20dB --- The sound of a leaf is shaking
    30dB --- The sound in suburb of city in night time
    40dB --- The sound in a silent park
    50dB --- The sound in a silent office
2) The check point of Gearhead Noise
(1) Noise in no load
The backlash noise depends on the situation of load. For example, in case of no load rotation, gear could pop and crash between them therefore there could be little vibration and it could cause noise. This noise can be restrained and controlled by carrying some friction load.
(2) Noise in Mounting with Load
When mounting is not good in mounting plate, there could be some noise by vibration caused from eccentric force. In this case, please check the mounting situation.
(3) Noise of Damaged Gear
In assembly gearhead and motor, users have to turn the gearhead slowly according to the shape of pinion. Otherwise gear could get damaged. And by over load gear could get damaged. As a result there may some abnormal noise in gearhead. So please handle gearhead with special care in assembly.
9. Assembly Method of Motor and Gearhead
To assemble the motor and the gearhead, adjust the assembling faces together in such a way as shown in below figure and turn slowly to complete the assembly. When doing the assembly, special care should be taken neither to exert excessive force on the motor shaft nor to hit inside of the gearhead. Otherwise, the gear will get damaged, resulting in a abnormal noise and a shortened lifetime of the motor.

Use the provided mounting screws for set mounting of gearhead and motor, and tighten the screws correctly. Be sure there is no-gab between motor flange, gearhead surface and the mounting surface.

Technical Data DKM - AC & DC Motor

Technical Data - AC & DC Motor
1. Definition of Motor
Motor is a machine to get a driving force for rotation or straight movement by converting the electrical energy into mechanical energy and the light-weighted motor which enables to select the model suitable for the load, has less noise and vibration as well as no exhaust pollution.
2. Features of DKM Motors
DKM AC geared motor was developed first in Korea in 1987 and has been used in a good reputation throughout the whole areas of domestic/overseas industry up to know. Our AC geared motor is proud of various and wide range of specification which satisfies various electrical requirements from all over the world.
(1) Various and Abundant Models
  • There are various and abundant models in frame size covering from □60/70/80/90mm such as Induction Motor, 2 Pole Motor, Reversible Motor, E.M. Brake Motor, Clutch & Brake Motor, Torque Motor and Speed Control Motor.
  • For use voltage, we have various voltage specification covering all areas in the globe: 100V 50/60Hz(Japan), 200V 50/60Hz(Japan), 110V 60Hz(Taiwan), 220V 60Hz(Korea, Taiwan), 115V 60Hz(North America), 230V 50Hz(Europe, Oceania), 220V/240V 50Hz(South-East Asia)
(2) Low Noise and Low Vibration
  • Due to the enhancement of quality standard such as places and conditions for motors to use, the low noise and low vibration are required.
  • To satisfy theses conditions, we employed high precision of gear processing and skiving cutting method and we are making a rotor which is the root cause of vibration by verifying with balance machine for low noise and low vibration.
(3) Easy to Use
  • Easy and safe to use as motor and gearhead are sold according to the requirements so that it can be designed and manufactured optimally.
  • It is easy to drive to get a driving force by connecting capacitor to the commercial power available to be used anywhere and anytime. As capacitor is not needed for three phase power, it is available to get a driving force easily by connecting three phase power to the motor directly.
(4) Just-In-Time System
  • Just-In-Time system is available in DKM Motor Co., Ltd. for the best delivery system. DKM realized user's satisfaction with the world best delivery system.
3. Types of Motor
(1) Classification by Power
1) AC motor: A motor operated by AC power. For example, inductive motor, synchronous motor, AC commutator motor etc.
① Single Phase Motor
  • Single phase power is composed of one phase as commercial power for home.
  • As power itself does not make motor rotate, capacitor is connected to auxiliary coil to start.
② Three Phase Motor
  • Three phase motor stands for electrical power and it is consisted of three electrical sources with a phase of 120° in voltage.
  • Connect the power to motor to start and the rotor will start to run easily.
  • The efficiency of motor is high and the starting torque is relatively big.
2) DC motor: A motor which rotates by supplying the direct current to the armature. The torque generated by placing the coil between magnetic poles N and S and applying the current to this coil rotates the motor. Whenever this coil passes the neutral shaft, it turns the direction of current reversely and rotates continuously
(2) Classification by Function
1) Motor with Constant Speed
⑴ Induction Motor : An induction motor which is a type of AC motor where power is supplied to the rotor by means of electromagnetic induction. These motors are widely used in industrial drives, particularly polyphase induction motors, because they are rugged and have no brushes. Their speed is determined by the frequency of the suppply current, so they are most widely used in constant-speed applications, although variable speed versions, using variable frequency drives are becoming more common.

⑵ Reversible Motor: A kind of induction motor and a motor having the same characteristic in any direction such as left turn or right turn. In principle, it is same as induction motor but there is no relation of main coil and auxiliary coil like general induction motor in order to stand frequent normal/reverse rotation and get a big starting torque.
2) Electromagnetic Brake Motor
It is a motor embedded with fail-safe electromagnetic brake. Perfect braking enables to get a staying power. Brake runs only when the power is shutdown, so this is suitable as a brake for safe use.
※ DKM havs 'A Type' electronic brake motor which runs when the power is applied. (Customized specification)
3) Clutch & Brake Motor
DKM Clutch & Brake motor is equipped with Clutch & Brake mechanism available to be used with gearhead. As the continuously rotating induction motor and Clutch & Brake are combined, this can be used for frequent start/stop, position control, index operation and relative value feeding operation etc.
4) Torque Motor
DKM torque motor has big starting torque and sloping characteristics. It runs safely over the whole area of rotation speed-torque characteristic. (Torque is highest at zero speed and decreases steadily with increasing speed) With these characteristics, this can be used for more application as a winding or tension motor.
5) Speed Control Motor
User can easily set and adjust the motor speed. There are three kinds of speed controller for AC speed motors. Select the best system depending upon your application.
4. Structure of AC Motor
① Flange Bracket
Die-cast aluminum bracket is press-fitted into the motor case. The flange and the housing are a single body type which plays an important part to attach the motor alone or combine the gearhead.
② Stator
This is comprised of a stator core made from laminated silicon/steel plates, a polyester-coated copper coil and insulation film. The roles are to generate magnetic field, form the rotation and run the rotor.
③ Motor Case
Die-cast aluminum with a machined finish inside
④ Rotor
It is comprised of laminated silicon/steel plates with die-cast aluminum. Rotor plays the part to change the electric energy to mechanical energy and transfer it to outside through shaft.
⑤ Output Shaft
There are round type shaft, D-cut type shaft, key type shaft which are for using by motor itself and gear type shaft (pinion shaft) which is for attaching gearhead. It is made by S45C with a machined finish.
⑥ Ball Bearing
It ensures that the rotor remains at the right position for the reliability and fast rotational motion.
⑦ Lead Wire
Lead wires with heat-resistant polyethylene coating
⑧ Painting
Backed finish of acrylic resin and melamine resin with beautiful look
5. Temperature Rise of AC Motor
(1) Temperature Rise
In operation of motor, the loss inside of motor is changed to heat causing the motor’s temperature to rise.
  • Induction motor (for continuous duty) reaches the saturation point of temperature rise in about two or three hours of operation and temperature stabilizes.
  • Reversible motor (30 minutes rating) reaches their limit of temperature rise in about 30 minutes of operation. If operation continues as it is, the temperature will increase further.
(2) Measuring Temperature Rise
DKM uses the following methods for temperature measurement and for the determination of a motor’s allowable temperature rise.
  • Thermometer Method: The temperature rise at which the temperature rise becomes saturated during motor operation is measured by using a thermometer or thermocouple installed in the center of the motor case. The temperature rise is the difference between the ambient temperature and measured temperature during motor operation.
  • Resistance Method: This is the way of measuring the winding temperature according to the change in resistance value. The motor’s winding resistance and ambient temperature is measured by using a resistance meter and thermostat.
(3) Overheating Protection Devices
In case of that a running motor locks due to overload or the input current increases due to any reason or ambient temperature increases suddenly, the motor’s temperature rises abruptly. If this state continues, the insulation performance may deteriorate and, in extreme cases, it may cause a fire. To avoid this case, DKM employs the following overheating protection devices.
  • Thermal Protector (TP)
    DKM installs the thermal protector for overheating protection of the motor. The TP employs a bimetal contact with pure silver used in the contacts. Pure silver has the lowest electrical resistance of all materials and has thermal conductivity second only to copper. (Operating Temperature: Open 120℃±5℃ / Close 90℃±5℃)
  • Impedance Protection
    Impedance-protected motor has higher impedance in the motor windings so although the motor locks, the increase in input current is minimized and temperature will not rise.
(4) Insulation Class
DKM Motor’s insulation class is B class. Insulation class is according to heat-resistance class. According to JIS C4003(IEC60085), it is defined as below. It is also available to use other materials for some particular insulation class according to operating conditions or user's request. (Customized specification)
Insulation class Max. permissible Temp.
Y 90℃
A 105℃
E 120℃
B 130℃
F 155℃
H 180℃
(5) Fan
It is available to attach two kinds of fan to the DKM's motor; ‘General Fan (F type)’ and ‘Powerful Fan(F2 type)’.
General fan is attached to motor shaft rotating in same speed as that of motor shaft.
(1800rpm in 60Hz, 1500rpm in 50Hz)
Powerful fan makes powerful cooling performance rotating in high speed regardless of motor shaft speed.
(3200rpm in 60Hz. Temperature reducing over 10℃ is available comparing general fan)
DKM employs general fan to the motors with continuous speed and employs powerful fan by customers’ special order to the continuous speed’s motor.
But in case of speed control motor in which speed control is needed, powerful fan is employed basically because there is little cooling effect in low speed if general fan is used.
6. Sizing of Motor
For the calculation way of load torque, refer to below for the reference. According to this, needed motor sizing is decided. Be advised that basic calculation way is referred below. So in real sizing consider the acceleration time in start, needed power, safety index in design and manufacturing and the influence by voltage fluctuation and select motor considering.
7. Technical References of AC Motor
(1) Induction Motor Technical Reference
1) The Relation between Speed and Torque
In a condition of constant power voltage, the relation between speed and torque is like right figure.

Under the condition of no-load, the number of rotation is roughly same as the number of synchronous rotation.
But if the load increases, the number of rotation decreases and approaches to the speed(rpm) indicated by the point P where the torque Tp horizontally meets the load curve.

When the load further increases and reaches the point M, the motor stops at the point R because the motor no longer generates further torque. Therefore, the leg R-M is referred to as an unstable zone and the leg O-M is a stable zone for operation.
2) Features of Voltage and Capacitor
Generally the torque of induction motor changes proportionate to twice the voltage and it also changes according the capacity of the capacitor.

If the capacity of the capacitor increases, the starting torque and rated torque will increase. But if the capacity increases by over 2 times, the rated torque decreases and starting torque do not increase.
When the induction motor is short on torque, it is possible to increase the torque by increasing the voltage or the capacity of the capacitor to continue the operation. But please be informed that in this case the loss input of the motor increases and the temperature rises rapidly.
However, if the motor must be run with insufficient torque, take measures to let the motor release heat as much as possible by installing separate fan as an example and operate the motor while keeping the temperature of the motor's housing below 90℃.
(2) Reversible Motor Technical Reference
1) Brake Mechanism of the Reversible Motor
A reversible motor employed a simple and built-in brake mechanism for the following purposes:
ⓐ To improve the frequent and instant reversing function by applying a friction load.
ⓑ To reduce overrun

The coil spring applies constant pressure so that the ceramic (brake block) slides toward the brake plate. This mechanism provides some degree of holding brake force, but there is limit in the force due to the mechanism’s structure. The brake force is approximately 10% of the motor’s output.
2) Speed-Torque Characteristics
The reversible motor is a single-phase induction motor of capacitor run type which has the same characteristics as an induction motor.
The reversible motor has a higher starting torque than an induction motor in order to improve the instant reversing characteristics.
3) Operation Time and Temperature Rise
The rating time of reversible motor is 30 minutes. But when the motor is operated intermittently for a short period of time, the operation time may vary depending on the operating conditions. The intermittent operation for a short period of time will cause a considerable flow of electric current in starting or reversing causing greater heat generation. But the motor's temperature rise can be controlled by keeping the motor at rest without using for a longer time by enhancing its natural cooling capability. Generally if the temperature of motor case remains below 90℃ constantly, the continuous operation is possible under unchanged condition considering insulation class of coil winding. But the life time of bearing grease will be much longer, the lower temperature.

(3) Electromagnetic Brake Motor Technical Reference
1) Power Off Activated Type Electromagnetic Brake
AC electromagnetic brake is employed in electromagnetic brake motors. When the power is turned off, the brake is activated and the motor stops instantaneously and holds the load. The electromagnetic brake has holding power in power-off, so it is optimal for emergency brakes and vertical load applications.
2) Operation
  • There is 2-3 times of overrun rotation at the time the power is turned off as individual motor. (Induction motor: 30~40 times overrun, Reversible motor: 5~6 times overrun)
  • The frequent and instantaneous directional changes are possible. By a simple control, it is possible to make 6 stops per minute with more than 3 seconds of stoppage. Roughly the operating cycle is 50cylces per minute or less. (Note: This value is based merely on brake response. And this value is maximum, so it may not be possible to repeat braking operation at this frequency. Please make the treatment so that the surface of the motor case remains below 90℃.)
  • The motor and the brake use the same power source. (For example, if motor voltage is 110V, that of brake is 110V.)
3) Structure
An electromagnetic brake motor is equipped with a power-off activated type electromagnetic brake. As shown in the figure, when voltage is applied to the magnet coil, the armature is attracted to the electromagnet against the force of the spring, thereby releasing the brake and allowing the motor shaft to rotate freely. When no voltage is aaplied, the spring works to press the armature onto the brake hub and hold the motor's shaft in place, thereby actuating the brake.
(4) Clutch & Brake Motor Technical Reference
1) Clutch & Brake Mechanism
An internal clutch & brake mechanism for use with a gearhead is employed in clutch & brake motor. By the combination of a constantly rotating induction motor and a clutch and brake unit, the function of frequent start/stop, positioning, indexing, jogging and incremental feeding are available.
DKM's clutch & brake motor is designed for the quicker response time and higher torque to move the load. To meet high-frequency, starting and stopping applications, DKM uses induction motor for its continuous duty rating. So clutch & brake motor is not suitable for frequent bi-directional starting and stopping motion but suitable for unidirectional movement.
2) Structure and Mechanism
  • Run
    When the 24VDC is applied to the clutch coil, the armature of the clutch coil is drawn to the clutch plate, transmitting motor rotation to the output shaft. The motor continues to rotate.
  • Stopping and Load Holding
    By removing the 24VDC from the clutch coil and, after a certain time lag, applying the 24VDC to the brake coil, the output shaft will come to a stop. During braking the output shaft is released from the motor shaft, so the shaft may be stopped without being influenced by motor inertia. The motor will continue to rotate.

(5) Torque Motor Technical Reference
The torque of torque motor is approximately in proportion to the square of the voltage. When the voltage supplied to the motor is changed, speed- torque curves with a sloping characteristics (torque is highest at zero speed and decreases steadily as speed increases) will be corresponding voltage.

If the voltage is changed to 115VAC, 80VAC and 60VAC while the load torque is T0, the motor rotates at the speeds N1, N2 and N3 respectively. That is to say, the speed can be changed easily by varying the voltage.

In choosing a torque motor, first determine the required torque and speed and then select a motor using the speed-torque characteristics curves to determine whether the motors should be operated under continuous duty or limited duty. In using motor under locked rotor conditions, only the torque factor is considered.
(6) Speed Control Motor Technical Reference
1) Speed Control Methods of Speed Control Systems
① By a potentiometer, the speed setting voltage is supplied.
② The speed of the motor is sensed and the speed signal voltage is supplied.
③ The difference between the speed setting voltage and speed signal voltage is supplied.
④ A voltage determined by the output from the capacitor is supplied to the motor so that it will reach the set speed.
2) Speed-Torque Characteristics and Safe Operation Line
The speed-torque characteristics line of all AC speed control motors is shown in the right figure. Each set speed changes slightly according to the change in load torque.

Input power to the speed control motor depends on the load and speed. The greater the load, and the lower the speed, the greater an increase in motor temperature. In the speed-torque characteristics graph, the line is referred to as the safe operation line, while the area below the line is called the continuous operation area.

The safe operation line, measured according to motor temperature, indicates its operational limit for continuous usage with the temperature. Whether the motor can be operated at a specific torque and speed is determined by measuring the temperature of the motor case. In general, if the temperature of the motor case is below 90℃, continuous operation is possible considering the insulation class of motor coil winding. But the motor life could be extended with lower motor temperature. So it is recommended that keep the motor temperature low.

DKM has two kinds of cooling fan; General Fan (F Type) and Powerful Fan (F2 Type). General fan is attached in motor shaft and its speed depends on the motor shaft speed. So in slow speed of motor, there is very weak cooling effect. In the application where motor speed should be changed from low speed (below 1000rpm) to high speed like speed control motor, powerful fan is needed so that cooling effect keep constantly regardless of the motor speed. In case of speed control motor DKM is employg powerful fan (F2 Type) into them basically. In special application or by user's request general fan can be employed in speed control motor.
(7) DC Motor Technical Reference
1) Features of DC Motor
  • DC motor has a big starting torque and excellent mobility and when comparing with the same sized AC motor, the output is big and the efficiency is high.
  • It is easy to control the speed and change the normal/reverse rotation.
  • Comparing to AC motor, it is available to manufacture low voltage motor which can be applied to portable machine which uses various spec., especially battery power (12V, 24V).
  • Due to the wear of brush, there is a limit in the service life.
  • Due to brush and commutator, noise generates when starting.
  • DSD Speed Controller enables to adjust the speed easily. (Available to connect to DC 90V motor)
2) Current, Torque and Speed(r/min)
When the voltage of power supply is fixed, D.C. magnet motor shows the characteristic in the relationship between torque, speed and current as below.
The relationship is almost linear and the speed decreases, and current increases conversely when increasing the torque to the output shaft motor.
It is same until the output shaft of motor is done a stall, when ignored heat generation in the motor. (It is possible to control the torque by controlling the current.)

3) Rating Time
According to increase of current (and torque), heat generation in the motor increases. Generally, when the temperature of component parts in the motor is below than allowable temperature after it was saturated, it is possible to keep continuous operation.
When it was not saturated in the allowable temperature, the time to exceed the temperature is rating time of motor and it is short-time rating specification. According to size and the specification, each motor model has different current(torque) value to be possible continuous operation.

4) Performance of DC Motor in case of Voltage Change at Power Supply
D.C. magnet motor can change speed by changing power supply voltage. The relationship between torque(t), Speed(N) and current(I) of motor when the voltage is half(1/2) is shown as below.
As the above figure, in the relationship between current and speed when power supply voltage was changed to half(1/2), ideal no-load speed "Nt" becomes "Nt/2" and it falls parallel to the performance of rated voltage.
The relationship between current and torque is same as the rated voltage, but the stall current "ts" falls accordingly as the stall current "Is" becomes "Is/2".

① No-load speed when voltage is half(1/2)
② I-N characteristic at rated voltage
③ I-N characteristic when the voltage is half(1/2)
④ Stall torque when the voltage is half(1/2)
▶ Nt : Ideal no-load speed when current is zero.
(the point extended the diagram of speed to zoo current.)
5) Input, Output and Efficiency of DC Motor
The input, output and efficiency can be calculated with the next formula.