Features: · Economical series for 500 Watt Surface Mount transient voltage suppressor.· Available in Both Unidirectional and Bidirectional Construction. Bidirectional has a C or CA suffix.· 6.8 to 200 Volts Available.· 500 Watts Peak Power Dissipation.· Fast Response Time: Subnanosecond Response (...
TGL41-10: Features: · Economical series for 500 Watt Surface Mount transient voltage suppressor.· Available in Both Unidirectional and Bidirectional Construction. Bidirectional has a C or CA suffix.· 6.8 to 2...
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· Economical series for 500 Watt Surface Mount transient voltage suppressor.
· Available in Both Unidirectional and Bidirectional Construction. Bidirectional has a C or CA suffix.
· 6.8 to 200 Volts Available.
· 500 Watts Peak Power Dissipation.
· Fast Response Time: Subnanosecond Response (Unipolar) or 5.0 ns (Bipolar).
· Plastic package has flame retardant epoxy meeting UL94V-0
· For Surface Mount Applications
· Protection from switching transients, induced RF, secondary lightning, as well as ESD, and EFT per IEC 61000-4-2 and IEC 6100-4-4
· Very low inductive parasitics with minimal Ldi/dt voltage overshoots for fast-rise-time transients
· Robust package for pick-and-place handling
` Peak Pulse Power Dissipation (PPP) - 500 W (Note1 & 5).
` Peak Forward Surge Current (IFSM) - 40 A (Note 3)
` Peak Pulse Current (IPP) at 10/1000 ms waveform -see Table 1 (Note 1)
` Steady-State Power Dissipation, P(AV) - 3.0W (Note 2, 4)
` Operating and Storage temperatures, TOP, TSTG (-55oC to +150oC)
` Thermal Resistance junction to end cap (R? JEC) 15oC/W
This series of 500 W Transient Voltage Suppressors (TVSs) TGL41-10 provides the highest level of Peak Pulse Power (PPP) in the industry for the DO-213AB size MELF package. These PPP levels offer protection from switching transients, induced RF, secondary lightning, as well as ESD or EFT where these devices are also compliant to IEC61000-4-2 and IEC61000-4-4. In addition to unidirectional TVS configurations, this TGL41-10 series also offers bidirectional options with C or CA suffix. Its configuration in a MELF package prevents lead damage to terminals and also reduces inductive parasitics for minimal transient voltage overshoots.