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Resistor THT 1W 47kΩ - 200pcs

A set of 200 resistors with the 1 W power. Elements are in the through hole THT case.
Index: PAS-08285
Index: PAS-08285
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Measuring shunt 50A/75mV

Measuring by-pass to measure a maximum current of 50 A. The measuring voltage at 50 A is 75 mV. The operating temperature of the resistor is between -20°C and 60°C....
5.0 (1)
Index: AKS-17216
Index: AKS-17216
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Regular price €4.90 Price €4.90

Measuring shunt 100A/60mV

The resistor used to measure a maximum current of 100 A . The shunt accuracy class is 0.5. The measuring voltage at 100 A is 60 mV . The operating temperature range is from...
5.0 (2)
Index: AKS-17217
Index: AKS-17217
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Regular price €11.50 Price €11.50

Measuring shunt 100A/75mV

Resistor capable of measuring a maximum current of 100 A. The shunt accuracy class is 0.5. The measuring voltage at 100 A is 75 mV . The operating temperature range of the...
5.0 (1)
Index: GTK-17188
Index: GTK-17188
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Resistor THT 1W 4,7kΩ - 200pcs

A set of 200 resistors with the 1 W power. Elements are in the through hole THT case.
Index: PAS-08284
Index: PAS-08284
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Resistor THT 1W 0,47Ω - 200pcs

A set of 200 resistors with the 1 W power. Elements are in the through hole THT case.
5.0 (2)
Index: PAS-08277
Index: PAS-08277
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Kanthal A1 resistance wire 0,64mm 4,9Ω/m - 30,5m

Kanthal A1 resistance wire with diameter 0.64 mm and resistance of 4.9 Ω /m. The wire is wound on a spool and is 30.5 m long. Melting temperature of the alloy from which...
5.0 (9)
Index: AKS-16668
Index: AKS-16668
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THT RWA Resistor 10W 0,33 Ohm - 10pcs

A precise resistor with high stability of the RWA type with a capacity of 10 W and a resistance of 0.33 Ω. The price includes 10 pieces.
5.0 (2)
Index: PAS-04567
Index: PAS-04567
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Resistor THT 1W 0,1Ω - 200pcs

A set of 200 resistors with the 1 W power. Elements are in the through hole THT case.
5.0 (1)
Index: PAS-08276
Index: PAS-08276
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Kanthal A1 resistance wire 0.25mm 23,3Ω/m - 9,1m

Characterized by high temperature resistance, Kanthal A1 resistance wire with a resistance of 23.3 Ω / m. The wire is wound on a spool with a diameter of 0.25 mm and length...
5.0 (2)
Index: AKS-16662
Index: AKS-16662
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Kanthal A1 resistance wire 0.20mm 44,7Ω/m - 9,1m

Kanthal type resistance wire made of an alloy of iron, chromium and copper. It has a length of 9, 1 m and a diameter of 0,20 mm. Its resistance is 44.7 Ω / m. The wire is...
5.0 (2)
Index: AKS-16661
Index: AKS-16661
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Resistor THT 1W 330Ω - 200pcs

A set of 200 resistors with the 1 W power. Elements are in the through hole THT case.
5.0 (1)
Index: PAS-08282
Index: PAS-08282
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Kanthal A1 resistance wire 0,51mm 6Ω/m - 9,1m

Made of an alloy of iron, chromium and aluminium, Kanthal A1 type resistance wire 9.1 m long. It has a diameter of 0.51 mm and its resistance value is 6 Ω / m. AWG of the...
5.0 (2)
Index: AKS-16667
Index: AKS-16667
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Kanthal A1 resistance wire 0,64mm 4,9Ω/m - 9,1m

Kanthal A1 is a type of resistance wire made of an alloy of iron, chromium and aluminium. The wire is 9.1 m long and has a diameter of 0.64 mm. Its resistance value is 4.9 Ω...
5.0 (2)
Index: AKS-16669
Index: AKS-16669
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Kanthal A1 resistance wire 0,51mm 6Ω/m - 30,5m

Kanthal A1 resistance wire made of an alloy of iron, chromium and aluminium. It is characterized by resistance to high temperatures. The wire has a diameter of 0.51 mm and...
4.9 (9)
Index: AKS-16666
Index: AKS-16666
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Kanthal A1 resistance wire 0.16mm 56Ω/m - 9,1m

Kanthal resistance wire with a resistance of 56 Ω / m. It is 9.1 m long and has a diameter of 0.16 mm. AWG value of the wire is 34.
4.8 (6)
Index: AKS-16660
Index: AKS-16660
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Resistor THT 1/4 W 1,2Ω - 30pcs

A set of 30 resistors with the 1/4 W power. Elements are in the through hole THT case.
5.0 (2)
Index: PAS-07238
Index: PAS-07238
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THT CF carbon resistor 1/4W 510kΩ - 30pcs.

A set of 30 1/4 W resistors. Elements in a THT-transmitted housing.
5.0 (2)
Index: PAS-06095
Index: PAS-06095
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Kanthal A1 resistance wire 0,40mm 12Ω/m - 9,1m

Resistance wire type Kanthal A1 with a resistance of 12 Ω / m. It has a diameter of 0.40 mm and a length of 9.1 m . The wire has been wound on a spool for convenience of use....
5.0 (2)
Index: AKS-16665
Index: AKS-16665
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Kanthal A1 resistance wire 0,40mm 12Ω/m - 30,5m

High quality resistance wire made of aluminium, chromium and iron alloy. It is characterized by resistance to high temperatures. It has a diameter of 0,40 mm and a length...
5.0 (12)
Index: AKS-16664
Index: AKS-16664
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Resistor THT 1W 1Ω - 200pcs

A set of 200 resistors with the 1 W power. Elements are in the through hole THT case.
Index: PAS-08278
Index: PAS-08278
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Kanthal A1 resistance wire 0,32mm 18Ω/m - 9,1m

Kanthal A1 resistance wire with a diameter of 0.32 mm and a resistance value of 18 Ω / m. The wire is 9.1 m long. It is wound on a spool for convenience of use.
5.0 (5)
Index: AKS-16663
Index: AKS-16663
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Resistor THT 1W 22Ω - 200pcs

A set of 200 resistors with the 1 W power. Elements are in the through hole THT case.
Index: PAS-08279
Index: PAS-08279
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Resistor THT 1W 47Ω - 200pcs

A set of 200 resistors with the 1 W power. Elements are in the through hole THT case.
Index: PAS-08280
Index: PAS-08280
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Resistors - basic elements of electronic systems

Resistors are the basic components of modern electronics and the most frequently used passive elements in electronic circuits. Resistors come in various forms and are composed of various chemical compounds. Resistors are available, among others, in the form of packages integrating several elements in one housing and implemented in integrated circuits.

Resistors - Different types of resistors

Resistors are manufactured from many resistance materials depending on the requirements of a specific application. They are most often made of materials such as carbon or metal deposited on a ceramic backing, but for higher power elements resistance wires are used. There are also specialized resistors, e.g. foil ones, characterized by high precision and stability of parameters over time and as a function of environmental conditions. The resistors are available in both through-hole (THT) and surface-mount (SMD) versions in a wide range of housing sizes.

Resistor - Basic parameters of resistors

The electrical function of a resistor is determined by its resistance: commercially available resistors are manufactured over nine orders of magnitude, and specialized components are manufactured over twelve. The resistance value relates the current flowing through the resistor to the voltage drop across that element. According to Ohm's law, the ratio of voltage drop to current is determined by the resistance of a given element. In addition to the resistance, each resistor has a nominal tolerance specifying the maximum deviation from the nominal resistance value of the actual element. The third very important parameter described by a physical resistor is the maximum power dissipated. It tells you how many watts of heat (a value that is the product of the current flowing through the resistor and the voltage drop across it) this element can dissipate. Exceeding this value may lead to failure.

Heating resistors

High-power resistors dissipating many watts of electrical energy as heat can be used not only as part of motor control in power distribution systems or as test loads. They are also often used as heating elements. This type of resistors are characterized by stable parameters that change slightly with temperature, time or operating voltage. These elements have a shape adapted to their task, which allows them to be easily installed in the device in a place that needs to be heated. They are equipped with dedicated mounting holes or self-adhesive tape that allows you to stick them on the device. They are used to heat delicate elements that require a stable temperature, as well as, for example, to heat the work tables of 3D printers.

Resistors, resistors - FAQ

A resistor is an electrical element that limits or regulates the flow of electric current in an electrical circuit. Resistors can also be used to apply a specific voltage to active devices such as transistors .

Selecting a resistor for an LED requires knowing the appropriate parameters and entering the values. The resistance value should be determined so that the current intensity is optimal for the powered LED. Kirchhoff's second law and Ohm's law are used for this purpose. The full guide and methods can be found on the Botland Blog in the article on selecting a resistor for a diode .

Resistors are divided into SMD , i.e. resistors used for surface mounting, and THT (Through-Hole Technology assembly). Another popular electronic element is a variable resistor, i.e. a potentiometer , which allows you to change the resistance using a knob. You know it, for example, from the radio casing. You can find resistor kits in Botland.

Due to their structure, we distinguish between carbon or metal resistors, in which a layer of carbon or metal is applied to a ceramic tube, film resistors with a metal alloy foil on a body made of insulating material, and wirewound resistors with a wire wound on an insulator core.

The parameter of a resistor is resistance, i.e. resistance. It is expressed in Ohms (ohms). The symbol of the unit is the Greek letter omega - for many people the mysterious sign Ω. It can be found in other sciences, but in physics it is associated primarily with resistance in the SI system.

Power is the amount of energy that flows in a given time. This produces heat energy (thermal energy), the excess of which can destroy our equipment. The power resistor will handle a much higher load than a normal metal film resistor. They are available in various variants: SMD, screw, plug-in, THD, as housing and more.

It is a measure of the resistance to current flow in an electric circuit. All materials resist the flow of electricity to some extent. They belong to two categories - they are conductors, i.e. materials that provide low resistance and in which electrons can move easily (e.g. silver, copper, gold, aluminum) and insulators, i.e. materials that provide high resistance and limit the flow of electrons (e.g. rubber , paper, glass, wood, plastic).