HHV2WSFT-73-9M53 Allicdata Electronics
Allicdata Part #:

HHV2WSFT-73-9M53-ND

Manufacturer Part#:

HHV2WSFT-73-9M53

Price: $ 0.08
Product Category:

Resistors

Manufacturer: Yageo
Short Description: RES MF 2W 1% AXIAL
More Detail: 9.53 MOhms ±1% 2W Through Hole Resistor Axial Flam...
DataSheet: HHV2WSFT-73-9M53 datasheetHHV2WSFT-73-9M53 Datasheet/PDF
Quantity: 1000
5000 +: $ 0.06805
Stock 1000Can Ship Immediately
$ 0.08
Specifications
Series: HHV
Packaging: Tape & Box (TB) 
Part Status: Active
Resistance: 9.53 MOhms
Tolerance: ±1%
Power (Watts): 2W
Composition: Metal Film
Features: Flame Retardant Coating, High Voltage, Safety
Temperature Coefficient: ±200ppm/°C
Operating Temperature: -55°C ~ 155°C
Package / Case: Axial
Supplier Device Package: Axial
Size / Dimension: 0.197" Dia x 0.610" L (5.00mm x 15.50mm)
Height - Seated (Max): --
Number of Terminations: 2
Description

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Through Hole Resistors - HHV2WSFT-73-9M53 application field and working principle

Through-hole resistors, also known as axial resistors, are smaller, less expensive and easier to install than other resistor types. They are commonly used in circuit designs that require co-planarity, such as surface mount components, or in circuit designs that require a combination of two or more components in a single assembly. The HHV2WSFT-73-9M53 through-hole resistor is a components used in many electronics applications, including power supplies, telecommunications, computers, automotive electronics, and other electronics systems. This through-hole resistor has a power rating of 7 watts and a resistance value of 9 megohms. It features a heat-resistant epoxy body with a wide temperature range of -20°C to +250°C. The resistance value is specified by a three-digit code and a decimal point. The first three digits denote the resistance in ? (ohms). The decimal number is the multiplier and it is represented by a numerical value. The HHV2WSFT-73-9M53 through-hole resistor is a non-inductive, non-linear resistor. Non-inductance means the resistance value remains constant in spite of changes in the applied voltage or frequency. Non-linearity means the relationship between voltage and current is not always straight, allowing for more accurate voltage and current measurements. The resistor\'s body also offers protection against electrical damage and eliminates electrical noise. This through-hole resistor also features two terminals for secure connections. Its compact size and lightweight construction make it an ideal choice for applications where space is limited. It is highly reliable and can operate at high temperatures without suffering damage. It is also resistant to humidity and corrosion and is very durable. The HHV2WSFT-73-9M53 through-hole resistor is widely used in electrical circuits for current limiting, voltage regulation, and pulse applications. It is also used in power supplies to reduce EMI and electrical noise and improve power efficiency. The resistor is also commonly used in AC circuits to reduce the wattage rating of devices, and in DC circuits for protection against over-voltage and overload. The working principle of the HHV2WSFT-73-9M53 through-hole resistor is based on Ohm\'s law. It states that the current through a conductor between two points is directly proportional to the potential difference (voltage) across the two points. The resistor\'s resistance acts as a resistor, limiting the flow of current. The current through the resistor is determined by the voltage across the resistor and the resistor\'s resistance value. In conclusion, the HHV2WSFT-73-9M53 through-hole resistor is a versatile and reliable component that is used in many different types of circuit designs. Its compact size and lightweight construction make it an ideal choice for applications where space is limited. The resistor is resistant to humidity and corrosion and is very durable. Its non-inductance and non-linearity make it suitable for many applications, such as voltage regulation, current limiting, and pulse applications. Finally, its working principle is based on Ohm\'s law, which states that the current through a conductor between two points is directly proportional to the potential difference (voltage) across the two points.

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