Products related to Voltage:
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Faithfull Pen Voltage Detector
This Faithfull Voltage Detector is a handy instrument that uses a safe, non-contact method to detect AC voltage in outlets, lighting fixtures, circuit breakers, wires and cables and can be used to find circuit breaks in a wire. A voltage test is easy to carry out by simply holding the detector by its body and placing the white end cap near or onto a cable or fitting believed to be carrying electricity. The detector tip will light up RED if a voltage is present. The tester can be used to detect voltage from 50 to 1,000 VAC. The tester is a convenient pen size with a fixing clip and easily fits into pockets ready for use. Features:LED detects the presence of AC current.Locate breaks in power cables and wires.Non contact testing for complete safety.Convenient pen size with a pocket clip.2 x 1.5V AAA Alkaline Batteries included. Specification:Voltage Detection: 50V-1,000V ACFrequency: 50-500HzMeasurement: CAT II, 1000VCategory: CAT III, 600V Warning:Always test on a known live circuit before use.This detector is not designed to carry out contact tests on live supplies. Any other form of test should be carried out by a qualified electrician.Additional Information:• Min. Voltage (V): 50• Max. Voltage (V): 1000• Current Type: AC
Price: 7.95 € | Shipping*: 4.95 € -
Faithfull Voltage Detector Stick
The Faithfull Voltage Detector Stick is a non-contact AC voltage detector for detecting 5-1000V AC voltage. It is ideal for testing sockets and wires, and for detecting break points in a live wire.When AC voltage is detected, the indicator LED will flash red and the built-in buzzer will sound short beeps. The rotary power switch can be used to adjust the unit's detection sensitivity and an illumination function is provided for use in dark places. The detector's LED will flash red periodically to indicate there is sufficient battery power left. The casing features a pocket clip to help keep the unit close to hand.Supplied with batteries and user manual. Specification: Voltage Detecting Range: 5-1000V ACFrequency Range: 50~400HzSafety Category: CAT IV 1000VPower: 2 x 1.5V AAA batteries (supplied)Size: 154 x 32 x 28mmWeight: approx. 50g (including batteries)Additional Information:• Min. Voltage (V): 5• Max. Voltage (V): 1000• Current Type: AC
Price: 14.95 € | Shipping*: 4.95 € -
Wiha Voltage Tester Screwdriver
The Wiha Voltage Tester for determining AC voltages in the range up to 250 volts with respect to earth potential. Suitable for trade and industry professionals. Each tool is individually tested at 10,000 V AC and approved for 1,000 V AC.It can be used as a fully-fledged screwdriver, Overall Length: 140mm.Range: 110-250V.
Price: 12.95 € | Shipping*: 4.95 € -
Sealey Non Contact Voltage Detector
Non-contact voltage detector with LED/audible indication. Designed for quickly identifying wire and cable breaks as well as detecting voltage in fuses, cables, switches, outlets, lighting fixtures and many more. Features two selectable sensitive settings low gear (L) and high gear (H) detecting voltage ranges from 80V – 1000V. Requires 2 x AAA batteries (not included). Features & Benefits: • Non-contact voltage detector with LED/audible indication. • Designed for quickly identifying wire and cable breaks as well as detecting voltage in fuses, cables, switches, outlets, lighting fixtures and many more. • Features two selectable sensitive settings low gear (L) and high gear (H) detecting voltage ranges from 80V – 1000V. • Requires 2 x AAA batteries (not included). • Model No. AK1998 Specifications: Model No AK1998 Brand: Premier Dimensions: 26 x 22 x 160mm Display: Red LED Frequency: 50-60Hz Nett Weight: 0.04kg Operating Temperature: 0°C to +40°C at RH
Price: 21.95 € | Shipping*: 4.95 €
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What are the advantages and disadvantages of high-voltage and low-voltage LED track lighting systems?
High-voltage LED track lighting systems have the advantage of being more energy-efficient and cost-effective compared to low-voltage systems. They also have a longer lifespan and are easier to install. However, high-voltage systems may not offer as much flexibility in terms of dimming options and may require more maintenance. On the other hand, low-voltage LED track lighting systems offer more precise control over lighting levels and are generally safer to use. They also provide a wider range of design options and are often more aesthetically pleasing. However, low-voltage systems tend to be more expensive upfront and may require a transformer for installation, adding to the overall cost.
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Why is the low voltage lamp not lighting up?
The low voltage lamp may not be lighting up due to a few possible reasons. It could be a problem with the power source, such as a blown fuse or a tripped circuit breaker. Additionally, the lamp itself may be faulty or the wiring connections could be loose or damaged. It's also possible that the bulb needs to be replaced. Troubleshooting these potential issues can help determine the cause of the problem and get the lamp working again.
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How do the rated voltage, nominal voltage, and operating voltage differ?
The rated voltage is the maximum voltage that a device can safely handle without being damaged. The nominal voltage is the standard voltage level at which a device is designed to operate efficiently. The operating voltage is the actual voltage at which a device is currently operating. These three values can differ, with the rated voltage being the highest, followed by the nominal voltage, and the operating voltage fluctuating within a certain range depending on the conditions.
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At what U1 voltage does the red LED start to light up and stop lighting up, the voltage monitor?
The red LED will start to light up at a U1 voltage of around 1.7-2.0 volts, depending on the specific LED and its characteristics. Once the voltage exceeds this threshold, the LED will begin to emit light. However, if the voltage exceeds the maximum forward voltage rating of the LED, typically around 2.2-2.4 volts, the LED will stop lighting up and may be damaged. Therefore, it is important to carefully monitor the voltage to ensure that it remains within the safe operating range for the LED.
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External Voltage sensor -10 to 10V
External Voltage Sensor for the Philip Harris SensorDisc.The probe is connected to the SensorDisc Datalogger via the micro-USB external probe connector. The red and black banana cables are used to connect the probe into the circuit for
Price: 87.70 £ | Shipping*: 0.00 £ -
Stanley Fatmax VDE Insulated Voltage Tester
The Stanley FatMax® VDE Insulated Voltage Tester has an insulated plastic handle for complete safety. Its blade is made from chrome vanadium steel for long life. Tip: Parallel 3 x 65mm.Additional Information:• Tip Size (mm): 3• Blade Length (mm): 65
Price: 2.49 € | Shipping*: 4.95 € -
Facom Low Voltage Detector Tester Screwdriver
Facom AV.HT1C Low Voltage detector screwdriver. Complies with the following standards: NFISO2380 - EN61243 - EN60900 Features and Benefits • Safety guard width 5 mm • Light indicator • Transparent handle • Steel blade chrome-plated vanadium • Extremity blade in hardened black phosphate • AV.HT1C: Standard model
Price: 5.95 € | Shipping*: 4.95 € -
Wera 247 SB Screwdriver Voltage Tester
Single-pole phase tester to detect voltage in the 150-250 volt range; comes equipped with a practical clip. Features and Benefits • Single-pole phase tester up to 250 V • Kraftform handle with sturdy clip • Hexagonal anti-roll feature against rolling away Contents 1x 247 SB Single-pole phase tester, 0.5 x 3 x 70 mm; 1x 247 Single-pole phase tester: 0.5x3.0x70
Price: 7.95 € | Shipping*: 4.95 €
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Why does the open-circuit voltage not change at different lighting angles?
The open-circuit voltage of a solar cell does not change at different lighting angles because it is a measure of the maximum voltage that the cell can produce when there is no current flowing through it. This voltage is determined by the material properties of the solar cell and is not affected by the angle of the incoming light. However, the amount of current that the cell can produce does change with lighting angles, as the intensity of the light reaching the cell varies. This is why the overall power output of a solar cell can change with different lighting angles, even though the open-circuit voltage remains constant.
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How do medium voltage, high voltage, and extra-high voltage affect the human body?
Medium voltage, high voltage, and extra-high voltage can all have varying effects on the human body depending on the level of exposure. Medium voltage (1kV to 69kV) can cause burns and muscle contractions, high voltage (69kV to 230kV) can lead to severe burns, cardiac arrest, and even death, while extra-high voltage (above 230kV) can result in instant death due to the high levels of electrical energy passing through the body. It is crucial to exercise caution and follow safety protocols when working with or near these voltage levels to prevent any harm to individuals.
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Where can one find the missing voltage difference between battery voltage and consumer voltage?
The missing voltage difference between battery voltage and consumer voltage can be found in the electrical components that make up the circuit between the battery and the consumer. This could include resistors, capacitors, inductors, or other components that may be affecting the voltage. By analyzing the circuit and using techniques such as Kirchhoff's voltage law and Ohm's law, one can identify and calculate the missing voltage difference. Additionally, using a multimeter to measure the voltage at different points in the circuit can help pinpoint where the voltage drop is occurring.
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What is the problem with the motorcycle's lighting in relation to the voltage?
The problem with the motorcycle's lighting in relation to the voltage is that the lighting system may not be receiving the correct voltage to operate properly. If the voltage is too low, the lights may be dim or not work at all. On the other hand, if the voltage is too high, it can cause the lights to burn out prematurely. This can be a safety issue as proper lighting is essential for visibility on the road, especially at night. Therefore, it is important to ensure that the motorcycle's electrical system is functioning correctly and providing the appropriate voltage to the lighting system.
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