NUP2105LT1G
Manufacturer Part Number: NUP2105LT1G | Manufacturer / Brand: ON |
Part of Description: ESD Protection Diodes / TVS Diodes 27V CAN BUS Protection | Lead Free Status / RoHS Status: |
Ship From: HK/Shen Zhen | Shipment Way: DHL/Fedex/TNT/UPS |
Datasheets: |
Product parameters
Manufacturer | ON |
RoHS | Details |
Mounting Style | SMD/SMT |
Package / Case | SOT-23-3 |
Ipp – Peak Pulse Current | 8 A |
Product Type | ESD Suppressors |
Number of Channels | 2 Channel |
Minimum Operating Temperature | – 40 C |
Maximum Operating Temperature | + 85 C |
Packaging | Reel |
Factory Pack Quantity | 3000 |
Subcategory | TVS Diodes / ESD Suppression Diodes |
Series | NUP2105L |
Unit Weight | 0.000310 oz |
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The NUP2105LT1G is a low capacitance TVS (Transient Voltage Suppression) diode designed to protect sensitive electronic circuits from voltage transients induced by lightning, electrostatic discharge (ESD), and other electrical disturbances. This diode is manufactured by ON Semiconductor.
Key features of the NUP2105LT1G include:
- Low capacitance: Helps to minimize signal degradation in high-speed data lines.
- Low clamping voltage: Provides effective protection against voltage spikes.
- Fast response time: Quickly clamps transient voltages to safe levels.
- ESD protection: Safeguards sensitive electronic components from electrostatic discharge events.
The NUP2105LT1G is commonly used in applications such as USB ports, Ethernet interfaces, HDMI ports, and other communication and data transmission lines where protection against voltage surges and ESD events is critical to prevent damage and ensure reliable operation of electronic devices.
Example of NUP2105LT1G Description:
“The NUP2105LT1G is a low capacitance TVS diode from ON Semiconductor, designed to protect sensitive electronic circuits from voltage transients caused by lightning, ESD, and other electrical disturbances. With low clamping voltage and fast response time, it is ideal for applications requiring robust transient voltage protection in high-speed data lines and communication interfaces