Panasonic ERA 680 Ω, 0603 Thin Film Surface Mount Resistor ±0.1 % 0.1 W - ERA3AEB681V

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RS-stocknr.:
180-9769
Fabrikantnummer:
ERA3AEB681V
Fabrikant:
Panasonic
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Merk

Panasonic

Resistance

680Ω

Product Type

Surface Mount Resistor

Technology

Thin Film

Package/Case

0603

Packaging

Punched Carrier Tape

Tolerance

±0.1 %

Power Rating

0.1W

Voltage

75V

Temperature Coefficient

-25 ppm/°C, +25 ppm/°C

Automotive Standard

AEC-Q200

Series

ERA

Minimum Operating Temperature

-55°C

Maximum Operating Temperature

155°C

Width

0.8mm

Standards/Approvals

RoHS

Termination Style

Solder

Length

1.6mm

Height

0.45mm

Panasonic ERA Series SMD Resistor, 680Ω Resistance, ±0.1 % Tolerance - ERA3AEB681V


This SMD resistor is a high-precision component designed for various electronic applications. With a resistance Value of 680 Ω housed in a Compact 0603 package, this surface mount resistor is engineered using Advanced thin film technology. The resistor operates efficiently within a temperature range of -55°C to +155°C and adheres to the AEC-Q200 automotive standard, ensuring reliability in demanding environments.

Features & Benefits


• Achieves a low tolerance of ±0.1 % for precise applications
• Utilises thin film technology for better performance stability
• Compact 0603 package enables space-saving designs
• Rated for power handling of 0.1 W for versatile use
• Exhibits a temperature coefficient of ±25 ppm/°C for minimal drift
• Complies with automotive standards for enhanced reliability

Applications


• Used in automotive electronic control units for enhanced efficiency
• Utilised in precision measurement instruments for accurate readings
• Integrated within consumer electronics to maintain signal integrity
• Effective in industrial automation systems for optimal performance
• Incorporated into circuit boards requiring high reliability in tight spaces

What impact does the temperature coefficient have on performance?


The temperature coefficient of ±25 ppm/°C indicates that the resistance Value will change minimally with temperature variations, ensuring consistent performance across a wide range of operating conditions.

How does the low tolerance improve circuit design?


A tolerance of ±0.1 % allows for precise current and voltage regulation within circuits, which is VITAL for applications requiring high accuracy and reliability.

In what scenarios is this component particularly beneficial for automotive use?


It is especially beneficial in automotive applications where temperature fluctuations are common, such as under the bonnet, due to its robust operating temperature range and compliance with automotive standards.

What advantages does thin film technology offer over traditional methods?


Thin film technology provides better performance, lower noise levels, and increased stability compared to traditional methods, making it suitable for high-precision applications.

Standards

IEC 60115-8, JIS C 5201-8, EIAJ RC-2133B

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