CC CV Adjustable DC Power Supply for Higher Voltage DC Motor Testing KUAIQU R-SPS6010S 60V 10A 600W

$319.99
$319.99
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InputVoltage: AC220V(±10%)
Model: R-SPS6010S-R
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CC CV Adjustable DC Power Supply for Higher Voltage DC Motor Testing KUAIQU R-SPS6010S 60V 10A 600W

CC CV Adjustable DC Power Supply for Higher Voltage DC Motor Testing KUAIQU R-SPS6010S 60V 10A 600W

$319.99

CC CV Adjustable DC Power Supply for Higher Voltage DC Motor Testing KUAIQU R-SPS6010S 60V 10A 600W

$319.99
InputVoltage: AC220V(±10%)
Model: R-SPS6010S-R

Download English Manual (PDF)

Click the link above to get the full user guide for this product.

CC CV Adjustable DC Power Supply for

Higher Voltage DC Motor Testing KUAIQU

R-SPS6010S 60V 10A 600W

The KUAIQU R-SPS6010S is a 60V 10A 600W CC CV Adjustable DC Power Supply designed for Higher Voltage DC Motor Testing and related motor development work. Its 0–60V adjustable output provides a wider DC voltage range for testing compatible DC motors and motor-related circuits that require higher voltage supply conditions.

During motor testing, engineers can adjust voltage and current according to the required test condition while monitoring voltage, current, and power through the four-digit display. Precision Encoder adjustment, M1-M3 memory presets, Output ON/OFF control, OCP, OVP, and Panel Lock support controlled and repeatable DC motor test setups.

Key Features

60V 10A 600W CC CV Adjustable DC Power Supply

The R-SPS6010S provides a 0–60V adjustable output, up to 10A current, and 600W maximum power. The wider voltage range makes it suitable for compatible DC motor testing applications that require higher DC supply voltages within the rated output range.

Adjustable Voltage for Higher Voltage DC Motor Testing

Different DC motors may require different supply voltage conditions during evaluation. The adjustable 0–60V output allows engineers to establish the required DC voltage for compatible higher voltage motor tests instead of relying on a fixed supply level.

Adjustable Current for Motor Test Conditions

The adjustable current setting allows users to configure the available output current according to the motor and test setup requirements. This provides greater control when establishing different operating conditions during DC motor evaluation.

Precision Encoder for Controlled Adjustment

The Precision Encoder provides convenient adjustment of voltage and current settings. This is useful when motor test conditions need to be changed gradually or when engineers need to establish repeatable output parameters.

Four-Digit Voltage, Current, and Power Display

The four-digit display provides real-time voltage, current, and power readings. During DC motor testing, these readings allow users to observe the electrical input conditions while the motor is operating under the selected test setup.

OCP Protection for DC Motor Testing

Over Current Protection provides an additional protection function when the connected motor or test circuit draws excessive current. This helps keep the power supply and motor test setup under controlled conditions.

OVP Protection for Controlled Motor Testing

Over Voltage Protection helps protect the power supply and connected test setup when an over-voltage condition occurs. This provides additional control when different voltage levels are applied during higher voltage DC motor testing.

Output ON/OFF Control

The Output ON/OFF function allows users to start or stop the DC output while retaining the configured voltage and current settings. This can simplify repeated motor connection, testing, and test condition changes.

M1-M3 Memory Presets for Repeated Motor Tests

Three memory groups, M1-M3, allow frequently used voltage and current settings to be stored and recalled. This is useful when different motor test conditions need to be repeated during development or laboratory evaluation.

Panel Lock for Consistent Motor Test Conditions

The Panel Lock Button helps prevent unintended changes to voltage and current settings during testing. Once a desired motor test condition has been established, the panel can be locked to help maintain the selected parameters.

Front and Rear Output Connections

The R-SPS6010S provides front and rear output connections for different laboratory and engineering configurations. The front output is intended for applications below 5A, while the rear output can be used at the full rated output.

USB and Optional RS232/RS485 Communication Interfaces

The R-SPS6010S includes a standard USB port, with RS232/RS485 available as optional communication interfaces. These interfaces provide connectivity options for compatible motor testing environments and external equipment.

Applications

Higher Voltage DC Motor Testing

Provide adjustable DC power for compatible DC motors that require higher supply voltage conditions within the 0–60V output range of the R-SPS6010S.

DC Motor Operating Condition Testing

Adjust the DC output voltage and current to establish different motor test conditions while monitoring the actual electrical input through the voltage, current, and power display.

DC Motor Development Testing

Use the R-SPS6010S as an adjustable DC power source during DC motor development, allowing engineers to establish different supply conditions for compatible motor prototypes and test circuits.

Higher Voltage Motor Prototype Evaluation

Provide adjustable DC input power for evaluating compatible higher voltage DC motor prototypes under selected voltage and current conditions.

DC Motor Voltage Testing

Use the 0–60V adjustable output to evaluate motor operation under different voltage conditions within the motor's specified operating range.

DC Motor Current Condition Testing

The up to 10A current capability provides a DC source for motor tests requiring higher current within the rated output capability of the R-SPS6010S.

Motor Startup Testing

Use the Output ON/OFF control and adjustable DC output to establish controlled power conditions when evaluating the startup behavior of compatible DC motors.

Motor Operating Power Testing

Monitor voltage, current, and power through the four-digit display while the motor operates under a selected test condition, providing direct visibility into the electrical input to the test setup.

Repeated DC Motor Testing

Use M1-M3 memory presets to store frequently used voltage and current settings and recall them when repeating the same or similar motor test conditions.

Laboratory Higher Voltage Motor Testing

The 60V 10A 600W output, Precision Encoder, four-digit monitoring display, OCP, OVP, memory presets, Output ON/OFF control, and Panel Lock provide a practical DC power source for laboratory higher voltage DC motor testing.

Quality Check and Terms of Service:

  • Package includes: DC Power Supply *1, Output Power Cord *1, Input Power Cord *1, User Manual *1, Warranty Card *1.

  • Has passed CE & FCC Certification.

  • All DC power supplies and accessories are inspected before shipment to ensure good quality.

  • Customer support: Contact us with any questions, and we'll respond within 24 hours.

Technical Specifications

Parameter Specification
Model R-SPS6010S
Product Type CC CV Adjustable DC Power Supply
Output Voltage 0-60V
Output Current 0-10A
Rated Power 600W
Voltage Setting Resolution 10mV
Current Setting Resolution 10mA
Voltage Readback Resolution 10mV
Current Readback Resolution 10mA
Voltage Setting Accuracy ≤0.05% + 10mV
Current Setting Accuracy ≤0.01% + 10mA
Voltage Readback Accuracy ≤0.05% + 10mV
Current Readback Accuracy ≤0.01% + 10mA
Voltage Load Regulation ≤0.1% + 10mV
Current Load Regulation ≤0.1% + 2.5mA
Voltage Line Regulation ≤0.01% + 2.5mV
Current Line Regulation ≤0.1% + 2.5mA
Voltage Ripple ≤400mVp-p / ≤60mVrms
Current Ripple ≤20mArms
Rise Time, No Load ≤150ms
Rise Time, Full Load ≤200ms
Fall Time, No Load ≤15s
Fall Time, Full Load ≤50ms
Dynamic Response ≤20ms
Efficiency ≥85%
Memory Presets M1-M3, 3 Groups
Protection OCP, OVP
Display Four-Digit Voltage, Current, and Power Display
Output Control Output ON/OFF
Communication Interface Standard USB, Optional RS232/RS485
Output Connections Front and Rear
Front Output Rating Below 5A
Rear Output Full Rated Output
Operating Temperature 0°C–40°C
Dimensions Approx. 26.5 × 19 × 8.5 cm
Net Weight Approx. 2.5 kg

Why Choose KUAIQU R-SPS6010S?

The KUAIQU R-SPS6010S is designed for higher voltage DC motor testing where a wider adjustable DC voltage range is required. Its 0–60V output provides room to establish different supply conditions for compatible DC motors, while the 10A current capability and 600W rated power support motor test setups within the power supply's rated output range.

The Precision Encoder makes voltage and current adjustment convenient when changing motor test conditions. The four-digit display provides direct voltage, current, and power readings, allowing engineers to observe the electrical input during motor operation and compare different test conditions.

For repeated motor evaluation, M1-M3 memory presets provide three groups of stored settings for frequently used voltage and current conditions. OCP and OVP add protection functions to the test setup, while Output ON/OFF control and Panel Lock help maintain more controlled and repeatable operating conditions.

With its 60V 10A 600W capacity, CC CV Adjustable DC Power Supply configuration, Precision Encoder, memory presets, four-digit monitoring display, OCP, OVP, and adjustable output, the R-SPS6010S provides a flexible DC power source for Higher Voltage DC Motor Testing, motor development, prototype evaluation, voltage testing, current condition testing, and repeated laboratory motor testing.

Warranty

30-Day return and refund guarantee (Refer to our Refund Policy), 2-year warranty (only available for orders purchased directly from kuaiquinstrument.com), lifetime technique support by KUAIQU.

Please feel free to reach us with any concerns:

Email: kuaiquinstrument@163.com

We strive to reply to you within 24 hours.

Shenzhen Kuaiqu Electronic Co., Ltd. was founded in 2014 and is located in Shenzhen City, Guangdong Province. It is a scientific and technological enterprise integrating,production and sales. Specializing in the production of DC stabilized power supply, variable frequency power supply, switching power supply, program-controlled power supply and other 100 kinds of measuring teaching instruments and industrial special equipment.

We are committed to delivering premium products and exceptional customer service, striving to be your most reliable and intelligent assistant.

At KUAIQU, we are committed to providing our customers with the best value for their purchases. To ensure you always get the best price, we offer a 30-day price guarantee on all products purchased directly from kuaiquinstrument.com. This policy aims to give you confidence and peace of mind when shopping with us.

What is the 30-Day Price Guarantee?

Our 30-day price guarantee means that if you purchase a product from kuaiquinstrument.com and the price of that product drops within 30 days of your purchase date, you are eligible for a refund of the price difference of the products. (Prices are based on USD. No refunds will be given for price changes in other currencies due to exchange rate fluctuations.)

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How to Apply for a Price Difference Refund

If you notice that the price of a product you purchased from kuaiquinstrument.com has dropped within 30 days, follow these steps to apply for a refund of the price difference:

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At KUAIQU, we strive to provide our customers with high-quality products and exceptional customer service. Our 30-day price guarantee is just one of the ways we ensure you get the best value for your investment. Shop confidently with KUAIQU, knowing that you are always getting the best deal available.

Thank you for choosing KUAIQU. If you have any questions or need further assistance, please do not hesitate to contact our customer support team at kuaiquinstrument@163.com.

FAQs

Still confused about our DC regulated power supplies after checking the FAQs? Please contact our customer service, we are ready to solve all your problems.

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Our customer service can walk you through all settings. You can also watch full operation tutorials on our YouTube channel, including OVP, OCP, memory storage function and other operation guides. Our official blog also has lots of technical articles for reference.

Partial KUAIQU power supplies support program control with USB, RS232, RS485 interfaces, based on Modbus protocol. Remote control can be realized via our self-developed PC software. If you need this function and confirm interface configuration of a model, email us: kuaiquinstrument@163.com..

The banana plug adopts cross-slot design. Pry the metal slot slightly open with a screwdriver to make the plug clamp terminals tighter and safer..

All KUAIQU DC power supplies support basic battery charging. For dedicated long-term charging, our patented battery-charging model with independent BATTERY key and full charging protection is highly recommended.

A certain amount of ripple is normal for all switching DC power supplies. Ripple is a small residual AC component superimposed on the DC output and is an inherent characteristic of switching power supply technology. The typical ripple voltage of our power supplies ranges from approximately 100 mV to 300 mV, which is suitable for most general-purpose testing, maintenance, and electronic applications.

A: Minor fluctuations in the last displayed digit are normal and are typically caused by temperature drift within the electronic components. As ambient and internal temperatures change, small variations in the readings may occur. This falls within normal industry tolerances and does not affect the power supply's suitability for everyday electronics work, home repairs, DIY projects, or general testing. For applications requiring extremely high precision and ultra-stable output, a linear DC regulated power supply may be more appropriate.

This is normal and does not indicate a malfunction. The internal capacitors continue to hold a small amount of stored energy after the power is switched off. As the capacitors discharge, the display will gradually turn off, typically within 5–8 seconds.

In CV mode, the power supply maintains a fixed output voltage while the current varies according to the load. In CC mode, the power supply limits the output current to a preset value, automatically reducing voltage if necessary. CC mode is especially useful for battery charging, LED testing, and protecting electronic components.

This is normal behavior. The power supply contains internal filter capacitors that store electrical energy. When the output voltage is reduced, these capacitors require a few seconds to discharge, causing the displayed voltage to decrease more gradually than when increasing the voltage. Q: Why does t

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FAQs

If you have any other questions or technical doubts about our DC power supplies, please feel free to contact us anytime. Our professional support team will reply to you as soon as possible.

Output ripple refers to small residual AC fluctuations present in the DC output. Lower ripple levels provide cleaner power, which is important when testing sensitive electronics, RF circuits, audio equipment, and precision instruments.

Yes, all DC regulated power supplies manufactured by KUAIQU support battery charging. However, if you mainly intend to charge batteries, I would highly recommend our patented DC power supply specially designed for battery charging. It comes with an exclusive dedicated BATTERY function key, and built-in specialized charging protection functions to safeguard your batteries during the whole charging process..

This is normal behavior. The power supply contains internal filter capacitors that store electrical energy. When the output voltage is reduced, these capacitors require a few seconds to discharge, causing the displayed voltage to decrease more gradually than when increasing the voltage..

This is normal and does not indicate a malfunction. The internal capacitors continue to hold a small amount of stored energy after the power is switched off. As the capacitors discharge, the display will gradually turn off, typically within 5–8 seconds..

This is a common operation issue for adjustable DC power supplies. Please follow the steps below to solve the voltage adjustment failure: Turn the current adjustment knob clockwise moderately to set the unit to constant voltage (C.V) mode; After confirming the power supply enters CV mode, turn the voltage adjustment knob clockwise, then you can freely adjust the output voltage value..

It is recommended to pre-adjust the voltage to around 5V before operation. This step prevents spark generation when connecting short-circuited loads, which effectively avoids safety accidents and other hidden electrical hazards..

A: Our banana plug adopts cross-slot design. If the plug becomes loose, use a screwdriver to slightly pry open the metal slot, which can make the plug clamp tighter and connect more safely..

Some models of our KUAIQU DC regulated power supplies support programmable control. They are equipped with USB, RS232 or RS485 communication interfaces and adopt the Modbus protocol. You can realize remote control easily by using our self-developed PC software. If you need programmable control but are unsure whether a specific model comes with your required communication interface, please feel free to contact us via email: kuaiquinstrument@163.com.

If you have any confusion about using OVP, OCP and other built-in functions, our professional customer support staff will provide targeted guidance for you. We also upload complete step-by-step tutorial videos on our official YouTube channel. Apart from OVP and OCP over-protection setup, the videos demonstrate memory storage function and all common operation skills. You can visit our channel via https://www.youtube.com/ In addition, our official blog contains a large number of popular science and technical articles about DC power supplies, you can search and browse related content to solve your problems.

In CV mode, the power supply maintains a fixed output voltage while the current varies according to the load. In CC mode, the power supply limits the output current to a preset value, automatically reducing voltage if necessary. CC mode is especially useful for battery charging, LED testing, and protecting electronic components.