Features: ESD protection according to IEC 61000-4-2 (Level 4) Suitable for uni- and bidirectional lines Bidirectional ESD protection in a two pin device Routes all ESD events, both positive and negative, safely to ground Suitable for DC working voltages up to 15 V Very low capacitance: 10 pF typic...
CDS2C15GTH: Features: ESD protection according to IEC 61000-4-2 (Level 4) Suitable for uni- and bidirectional lines Bidirectional ESD protection in a two pin device Routes all ESD events, both positive and nega...
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Rating | Symb. | Value | Unit |
Maximum DC working voltage | VDC | 15 | V |
Maximum RMS working voltage | VRMS | 14 | V |
Peak pulse current @ 8/ 20 s | IPP | 2 | A |
Air discharge ESD capability (according to IEC 61000-4-2 method) |
VESD | 15 | kV |
Contact discharge ESD capability (according to IEC 61000-4-2 method) |
VESD | 8 | kV |
Operating temperature (without derating) |
Top | −40 to +85 | °C |
Storage temperature | Tstg | −40 to +125 | °C |
Due to the ongoing miniaturization, today's electronic devices CDS2C15GTH are more and more sensitive to electrostatic discharges (ESD) and overvoltages. Therefore reliable protection components become absolutely necessary to harden your valuable electronics against the impact of ESD.
CeraDiodes CDS2C15GTH are ceramic semiconductors optimized specifically for high performance in Electro Static Discharge (ESD) applications. The device has a non-linear voltage/current characteristic that is highly optimized for effectively suppressing extremely fast voltage transients. The device offers superior parametric stability over the complete operating range of 40 °C to +85 °C.
CeraDiodes CDS2C15GTH are bi-directional devices. A single CeraDiode® connected from signal/dataline to ground routes both positive and negative ESD transitions safely to the ground plane. This technique eliminates the need to route ESD charge into the power plane, possibility damaging nearby integrated circuits. The CDS2C15GTH exhibits a very low capacitance, making it the ideal solution for direct connection to high speed signal lines. The result is maximum protection with minimal signal distortion.