H4BXT-10105-R8 Allicdata Electronics
Allicdata Part #:

H4BXT-10105-R8-ND

Manufacturer Part#:

H4BXT-10105-R8

Price: $ 0.43
Product Category:

Cable Assemblies

Manufacturer: Hirose Electric Co Ltd
Short Description: JUMPER-H9992TR/1852RD/X 5"
More Detail: Red 28 AWG Jumper Lead Socket to Cable (Round) Tin...
DataSheet: H4BXT-10105-R8 datasheetH4BXT-10105-R8 Datasheet/PDF
Quantity: 1000
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
Moisture Sensitivity Level (MSL): 1 (Unlimited)
10 +: $ 0.38934
100 +: $ 0.29849
250 +: $ 0.27256
500 +: $ 0.25959
1000 +: $ 0.21416
Stock 1000Can Ship Immediately
$ 0.43
Specifications
Series: DF13
Part Status: Active
Lead Free Status / RoHS Status: --
Contact End: Socket to Cable (Round)
Moisture Sensitivity Level (MSL): --
Length: 5.00" (127.00mm)
Wire Gauge: 28 AWG
Contact Finish: Tin
Color: Red
Contact Finish Thickness: --
Number of Rows: 1
Number of Conductors: 1
Description

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Jumper Wires

Jumper wires are a type of electrical component used to connect different electronic components together in an electrical or electronic circuit. Generally, they consist of single or multiple insulated conductors, or a combination of both, that are used to electrically connect two points. Jumper wires can also be used to bypass or bridge a connection between two electronic components or devices. H4BXT-10105-R8 jumper wires are a type of insulated conductor or wire that are commonly used in electronics, robotics and general microcontroller applications.

Working Principle

The design of these H4BXT-10105-R8 jumper wires makes them suitable for reliable electric connections in many applications. The conductor in the wire is typically made from copper or aluminum, which allows for an efficient transfer of electricity. The insulation on the conductor is usually made from PVC or Teflon, which provides protection to the conductor and prevents any electric current from escaping. Additionally, the insulation also reduces the chances of any electrical faults in the circuit.

When the two metal contacts of the jumper wire come into contact, the electrical current is conducted from one contact to the other. The electrical current is then distributed to the other components of the circuit. The amount of current that is passed through the wire depends on the resistance of the insulation and the thickness of the conductor.

Pre-Crimped Leads

Pre-crimped leads are electrical components that have been specifically designed for use in the construction of electrical circuits. These components come pre-crimped so that they can be easily and quickly installed into a circuit. This makes them extremely convenient and time-saving for both amateur and professional electronic technicians. H4BXT-10105-R8 pre-crimped leads are composed of two or more metal contacts with insulated plastic tubing connecting them. The metal contacts can be made from copper, aluminum or other materials, depending on the application.

Working Principle

The pre-crimped leads are placed into the appropriate holes of a printed circuit board (PCB). The metal contacts on the leads are then soldered to the appropriate connections on the board. Once soldered in place, the plastic insulation provides protection against any electric shocks caused by the exposed contacts. Additionally, the pre-crimped leads are designed to resist any thermal expansion or contraction that can occur when the circuit is turned on or off.

When current is applied to the leads, it is conducted from one contact to the other, providing the electrical connection between the two components. The amount of electricity that is conducted through the leads depends on the thickness of the metal contacts, the resistance of the insulation and the electrical requirements of the circuit.

H4BXT-10105-R8 jumper wires and pre-crimped leads are two basic yet important components for creating reliable and efficient electrical connections for use in a range of applications. Since these components come pre-crimped, they save time and effort during installation, while providing protection against shocks and thermal fluctuations. This makes them ideal for use in a range of electronic projects and circuits.

The specific data is subject to PDF, and the above content is for reference

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