TrEOS Automotive ESD Protection

Nexperia's TrEOS automotive ESD protection devices ensure high signal integrity for modern automotive interfaces

Image of Nexperia's TrEOS Automotive ESD ProtectionNexperia‘s TrEOS automotive ESD protection offers the ideal combination of low capacitance, low clamping voltage, and high ESD robustness for customers’ designs. These devices help safeguard 10 Gbps data line systems in automotive applications against ESD and surge events while being AEC-Q101 qualified. TrEOS devices combine extremely low capacitance ensuring high signal integrity, extremely low clamping, and high robustness for modern automotive interfaces. Specific automotive applications include infotainment, multimedia, and ADAS systems featuring USB2.0, HDMI, LVDS, SerDes, and SD card interfaces. With TrEOS technology, capacitance is kept down to 0.2 pF, clamping voltage is just 1.5 V, and devices can withstand surge and ESD pulses up to 7 A 8/20 µs.

Features
  • Available in specifications between 3.3 V and 5 V VRWM
  • Extremely fast switching time under 1 ns
  • Snap-back technology allows for low clamping voltage
  • Suitable for up to ~10 Gbps per line pair
  • Reliable protection for sensitive transceiver SoCs
  • Ultra-low dynamic resistance/capacitance combination
  • Exceeding IEC61000-4-2 level 4, offering IEC61000-4-5 grade robustness
Applications
  • Infotainment applications: USB 2.0, SuperSpeed USB 3.2 at 10 Gps, HDMI, HDBaseT
  • Automotive A/V monitors, displays, and cameras
  • SerDes: GMSL, FPD-Link, LVDS, and APIX

TrEOS Automotive ESD Protection

ImageManufacturer Part NumberDescriptionAvailable QuantityPriceView Details
TVS DIODE 3.3VWM TO236ABPESD2USB3UV-TRTVS DIODE 3.3VWM TO236AB11445 - Immediate$2.30View Details
TVS DIODE 3.3VWM TO236ABPESD2USB3UX-TRTVS DIODE 3.3VWM TO236AB5576 - Immediate$2.30View Details
TVS DIODE 5VWM TO236ABPESD2USB5UV-TRTVS DIODE 5VWM TO236AB22728 - Immediate$2.30View Details
TVS DIODE 5VWM TO236ABPESD2USB5UX-TRTVS DIODE 5VWM TO236AB33396 - Immediate$2.30View Details
Published: 2020-11-11