YC248-FR-075K62L Allicdata Electronics
Allicdata Part #:

YC248-FR-075K62L-ND

Manufacturer Part#:

YC248-FR-075K62L

Price: $ 0.04
Product Category:

Resistors

Manufacturer: Yageo
Short Description: RES ARRAY 8 RES 5.62K OHM 1606
More Detail: 5.62k Ohm ±1% 62.5mW Power Per Element Isolated 8 ...
DataSheet: YC248-FR-075K62L datasheetYC248-FR-075K62L Datasheet/PDF
Quantity: 1000
5000 +: $ 0.02982
Stock 1000Can Ship Immediately
$ 0.04
Specifications
Number of Pins: 16
Height - Seated (Max): 0.022" (0.55mm)
Size / Dimension: 0.157" L x 0.063" W (4.00mm x 1.60mm)
Supplier Device Package: --
Package / Case: 1606, Convex, Long Side Terminals
Mounting Type: Surface Mount
Applications: DDRAM, SDRAM
Operating Temperature: -55°C ~ 155°C
Temperature Coefficient: ±200ppm/°C
Power Per Element: 62.5mW
Series: YC248
Resistor-Ratio-Drift: --
Resistor Matching Ratio: --
Number of Resistors: 8
Tolerance: ±1%
Resistance (Ohms): 5.62k
Circuit Type: Isolated
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Resistor Networks, Arrays comprise many individual resistors, either wired in parallel or series, to achieve a common purpose. YC248-FR-075K62L was designed for certain applications and behaves in accordance with certain principles.

YC248-FR-075K62L is one type of thin film chip resistor network. It is made of 8pins, belonging to the 0805 size class. This thin film resistor features very small chip sizes, typically 3.2 mm x 1.5 mm x 0.3 mm. The charcteristic solderability of YC248-FR-075K62L is also good, operators can use temperature soldering process of 285℃ to reduce soldering time, and then they can make sure reliable solder joints.

The resistance values of this type of resistor range from 0.07Ω to 100KΩ, and the total resistance tolerance is ±1%. The max power dissipation of YC248-FR-075K62L is 0.12W. The temperature coefficient of resistance (TCR) is typically ±200 ppm/K and the voltage coefficient of resistance (VCR) is ≤±2% at 10V. The exclusive short-time overload rating for YC248-FR-075K62L is 300mW for a 5 seconds duration, and thus it can provide a reliable operation environment for the circuit system.

YC248-FR-075K62L is widely used in the vast variety of applications, ranging from telecom, industrial, automotive and consumer markets. It is used in sample and hold circuits, active filters, timing circuits, processing circuits, integrators and CCFL circuits, surge current protection, and pulse power supply lines. It also can be applied in automotive detection and control systems. The common usages of this resistor network are in devices used in communication, computer and high-speed circuitry.

The working principle of YC248-FR-075K62L can be understood by using the Ohm\'s Law equation, which states that the current is directly proportional to voltage, and inversely proportional to the voltage, that is, I=V/R. It means that when a voltage is applied across the resistor network, a given amount of current will flow, determined by the resistance value.

The other working principle of the YC248-FR-075K62L is inherently related to the way they dissipate power. When a certain voltage is applied to a resistor, the resistor creates heat directly proportional to the amount of power it dissipates. The amount of power dissipated can also be calculated through the formula P=V2/R, and the actual heat created by the resistor can then be determined. Good heat sinking properties of YC248-FR-075K62L enable it to dissipate heat rapidly without any heat buildup on the resistor.

When the resistors in the YC248-FR-075K62L are connected in parallel, the total resistance of the array can be calculated using the parallel equation, which is R=1/(1/R1+1/R2+1/R3....). So, when connecting the resistors in this array, the total resistance can be calculated accurately.

Overall, YC248-FR-075K62L is an ideal type of resistor network for certain applications, with its good solderability, small size and relatively high power capability. With the small size, high reliability and wide range of resistance values, it provides a cost-effective solution for many applications which need to dissipate heat quickly and accurately.

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

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