1N8150
1N8150 is Low-Capacitance Transient Voltage Suppressors manufactured by Microsemi.
- Part of the 1N8149 comparator family.
- Part of the 1N8149 comparator family.
DESCRIPTION
This series of voidless-hermetically-sealed unidirectional low-capacitance Transient Voltage Suppressor (TVS) designs are ideal for protecting higher frequency applications in high-reliability applications where a failure cannot be tolerated. They include a unique rectifier diode in series and opposite direction from the TVS to achieve a very low capacitance of 4 p F. This product series provides a working peak “standoff” voltage selection from 6.8 to 170 volts with 150 watt ratings. They are very robust in hardglass construction and also use an internal metallurgical bond identified as Category 1 for high reliability applications. These devices are also available in axial leaded packages for thru-hole mounting.
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FEATURES
- High surge current and peak pulse power unidirectional protection for sensitive circuits.
- Very low capacitance for high frequency or high baud rate applications.
- Bidirectional capability with two devices in anti-parallel (see Figure 5).
- Triple-layer passivation.
- Internal “Category 1” metallurgical bonds.
- Voidless hermetically sealed glass package.
- Ro HS pliant versions are available.
APPLICATIONS / BENEFITS
- High reliability transient protection.
- Extremely robust construction.
- Working peak “standoff” voltage (VWM) from 6.8 to 170 volts.
- Available as 150 W peak pulse power (PPP) at 10/1000 µs.
- Lowest available capacitance for 150 W rated TVS.
- ESD and EFT protection per IEC61000-4-2 and IEC61000-4-4 respectively.
- Secondary lightning protection per select levels in IEC61000-4-5.
- Flexible axial-leaded mounting terminals.
- Nonsensitive to ESD per MIL-STD-750 method 1020.
- Inherently radiation hard as described in Microsemi Micro Note 050.
“A” Package
Also available in:
“A” MELF package
(surface mount) 1N8149US
- 1N8182US
MAXIMUM RATINGS
Parameters/Test Conditions
Junction and Storage Temperature Capacitance at zero volts Thermal...