RER50F3R83RCSL Allicdata Electronics
Allicdata Part #:

RER50F3R83RCSL-ND

Manufacturer Part#:

RER50F3R83RCSL

Price: $ 25.16
Product Category:

Resistors

Manufacturer: Vishay Dale
Short Description: RES CHAS MNT 3.83 OHM 1% 20W
More Detail: 3.83 Ohms ±1% 20W Wirewound Chassis Mount Resistor
DataSheet: RER50F3R83RCSL datasheetRER50F3R83RCSL Datasheet/PDF
Quantity: 1000
5 +: $ 22.86900
10 +: $ 20.25540
25 +: $ 18.62190
50 +: $ 17.64180
100 +: $ 16.98840
250 +: $ 16.33500
Stock 1000Can Ship Immediately
$ 25.16
Specifications
Operating Temperature: -55°C ~ 250°C
Failure Rate: R (0.01%)
Package / Case: Axial, Box
Lead Style: Solder Lugs
Height - Seated (Max): 0.561" (14.25mm)
Size / Dimension: 1.062" L x 1.080" W (26.97mm x 27.43mm)
Mounting Feature: Flanges
Coating, Housing Type: Aluminum
Features: Military, Moisture Resistant, Non-Inductive
Series: Military, MIL-PRF-39009, RER50
Temperature Coefficient: ±50ppm/°C
Composition: Wirewound
Power (Watts): 20W
Tolerance: ±1%
Resistance: 3.83 Ohms
Part Status: Active
Packaging: Bulk 
Description

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The RER50F3R83RCSL chassis mount resistors are one of the most recognized and dependable components that are used in the electronics industry. This type of resistor is designed to offer superior protection and durability for a wide variety of applications. The construction and operation of the resistors are designed to ensure highest performance in any demanding situation where extreme temperature, vibration, and other environmental stressors are present.

The RER50F3R83RCSL chassis mount resistors are available in three solutions, either a surface mount type, through-hole type, and vertical type. The surface mount type is a single chip resistor with ultra-small size and low-profile design that can be easily attached to the chassis of a device. It can also be used in the same way as other normal resistors, including providing protection against high temperature and extreme vibration. The through-hole type is an axially mounted resistor and is designed to be installed into a chassis through a hole. It provides excellent thermal and vibration resistance as well as having a low profile design. Finally, the vertical type is a high-powered axially mounted resistor that is supported by two metal stanchions, allowing the resistor to be secured into the chassis for improved stability.

The RER50F3R83RCSL chassis mount resistors offer numerous benefits to a range of applications. The design of this type of resistor can withstand high temperature and vibration levels, allowing for reliable power handling in even the harshest environments. The resistance of the resistor is also adjustable, meaning that the current flow through the resistor can be altered to meet the specific requirements of the application. Additionally, the resistors can be designed to provide protection against dangerous overcurrent or overvoltage scenarios, and the chips can be dispersed into multiple configurations to further improve protection.

The construction and working principle of the RER50F3R83RCSL chassis mount resistors rely on a number of key properties. The metal oxide semiconductor (MOS) where the resistor is built on utilizes a thick layer of metal-oxide derived from zinc oxide that helps ensure protection and durability. The resistor is PCB-compatible and features small, high-precision components along with a high-sensitivity, low operating temperature range. The resistor also features a high surge capability, offering reliable protection against transient overvoltages. Finally, the resistor features an SMT solder-resistant construction to ensure protection against excessive heat.

In conclusion, the RER50F3R83RCSL chassis mount resistors offer superior protection and durability for a wide variety of electronic applications. The construction of the resistor utilizes a metal oxide semiconductor and high-precision components to provide a reliable platform for power handling. The resistor is designed to withstand high temperatures and vibration levels, and it is adjustable to meet the specific requirements of the application. Additionally, the resistors can be designed to provide protection against dangerous overcurrent or overvoltage scenarios, and the chips can be dispersed into multiple configurations to further improve protection.

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

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