Description
TLMG1100-GS08 by Vishay
Overview
The TLMG1100-GS08 is a surface-mount, high-precision thin film resistor offered by Vishay. This resistor is part of Vishay’s portfolio of high-reliability, thin film resistors designed to meet the stringent requirements of various applications, including industrial, medical, and military.
Key Features
- Resistance Value: 1 kΩ
- Resistance Tolerance: ±0.1%
- Temperature Coefficient: ±5 ppm/°C
- Power Rating: 0.5 W (at +70°C)
- Voltage Rating: 200 V
- Operating Temperature Range: -55°C to +125°C
- Package Type: SMD (Surface Mount Device)
- Size (L x W): 0805 (2.0 mm x 1.25 mm)
Specifications
Parameter | Value | Unit |
---|---|---|
Resistance | 1 | kΩ |
Tolerance | ±0.1 | % |
TCR (Temperature Coefficient of Resistance) | ±5 | ppm/°C |
Power Rating | 0.5 | W |
Voltage Rating | 200 | V |
Operating Temperature Range | -55 to +125 | °C |
Case Size | 0805 | – |
Applications
The TLMG1100-GS08 by Vishay is designed for high-reliability applications where precision and stability are crucial. Some of the applications include:
- Industrial equipment
- Medical devices
- Military and aerospace equipment
- High-precision instrumentation
- Communication devices
Reliability and Construction
Vishay’s TLMG1100-GS08 thin film resistors are constructed with a proprietary thin film process, providing a uniformly stable film, which results in resistors with high stability and low noise. The resistive layer is sputtered onto a high-quality ceramic substrate, ensuring excellent durability and reliability under various environmental conditions.
Ordering Information
For ordering the TLMG1100-GS08, please refer to the Vishay documentation and ensure to specify the correct part number, packaging requirements, and any other relevant details to ensure accurate fulfillment of your order.
Disclaimer
The information provided is based on the manufacturer’s specifications and is subject to change. For the most current and detailed specifications, it is recommended to consult the datasheet or contact Vishay directly.