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TGL41-43A Dataheets PDF



Part Number TGL41-43A
Manufacturers Microsemi Corporation
Logo Microsemi Corporation
Description 500 Watt Transient Voltage Suppressor
Datasheet TGL41-43A DatasheetTGL41-43A Datasheet (PDF)

TGL41-6.8 thru TGL41-200CA 500 Watt Transient Voltage Suppressor SCOTTSDALE DIVISION DESCRIPTION This series of 500 W Transient Voltage Suppressors (TVSs) 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, .

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TGL41-6.8 thru TGL41-200CA 500 Watt Transient Voltage Suppressor SCOTTSDALE DIVISION DESCRIPTION This series of 500 W Transient Voltage Suppressors (TVSs) 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 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. APPEARANCE WWW. Microsemi . C O M DO-213AB IMPORTANT: For the most current data, consult MICROSEMI’s website: http://www.microsemi.com 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 (Unipolar) or 5.0 ns (Bipolar). Plastic package has flame retardant epoxy meeting UL94V-0 • • • • APPLICATIONS / BENEFITS 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 MAXIMUM RATINGS @ 25oC* • • • • • • Peak Pulse Power Dissipation (P PP) - 500 W (Note 1 & 5). Peak Forward Surge Current (IFSM) - 40 A (Note 3) Peak Pulse Current (IPP) at 10/1000 µs waveform see Table 1 (Note 1) Steady-State Power Dissipation, P (AV) - 3.0W (Note 2, 4) Operating and Storage temperatures, TOP, TSTG – o o (-55 C to +150 C) Thermal Resistance junction to end cap (R? JEC) – o 15 C/W 1. 2. 3. 4. 5. MECHANICAL AND PACKAGING • • • • • Molded epoxy package meets UL94V-0 End-Cap terminals solderable per MIL-STD-750, o Method 2026 (max 260 C for 10 seconds. Polarity is indicated by cathode band. Bidirectional devices have no polarity band. Body marked with P/N without TGL41 prefix. Weight: 0.06 grams (approximate) Tape and Reel packaging per EIA-481-2 with 12 mm tape with 5000 per 13 inch reel. • TGL41-6.8 thru 200CA * Unless otherwise specified. NOTES: Non-repetitive current pulse, per Figure 3 and derated above TA = 25 C per Figure 2. 2 Mounted on 4.0 mm copper pads to each terminal. (See Figure 3) 8.3 ms single half-sine wave duty cycle = 4 pulses per minute max. Peak forward voltage at 40 A is 3.5 volts (unipolar only) o o Derate linearly above 100 C to zero at 150 C for dc steady-state power. Also see Figure 2 for transient derating. Peak pulse current waveform is 10/1000 µs, with maximum duty cycle of 0.01%. (See Figure 4) o Copyright © 2003 01-29-2003 REV A Microsemi Scottsdale Division 8700 E. Thomas Rd. PO Box 1390, Scottsdale, AZ 85252 USA, (480) 941-6300, Fax: (480) 947-1503 Page 1 TGL41-6.8 thru TGL41-200CA 500 Watt Transient Voltage Suppressor SCOTTSDALE DIVISION ELECTRICAL CHARACTERISTICS @ 25oC MICROSEMI PART NUMBER BREAKDOWN VOLTAGE V(BR) MIN. NOM. MAX. V V V 6.12 6.8 7.48 6.45 6.8 7.14 6.75 7.5 8.25 7.13 7.5 7.88 7.38 8.2 9.02 7.79 8.2 8.61 8.19 9.1 10 8.65 9.1 9.55 9.0 10 11 9.5 10 10.5 9.9 11 12.1 10.5 11 11.6 10.8 12 13.2 11.4 12 12.6 11.7 13 14.3 12.4 13 13.7 13.5 15 16.5 14.3 15 15.8 14.4 16 17.6 15.2 16 16.8 16.2 18 19.8 17.1 18 18.9 18 20 22 19 20 21 19.8 22 24.2 20.9 22 23.1 21.6 24 26.4 22.8 24 25.2 24.3 27 29.7 25.7 27 28.4 27 30 33 28.5 30 31.5 29.7 33 36.3 31.4 33 34.7 32.4 36 39.6 34.2 36 37.8 35.1 39 42.9 37.1 39 41 38.7 43 47.3 40.9 43 45.2 42.3 47 51.7 44.7 47 49.4 45.9 51 56.1 48.5 51 53.6 50.4 56 61.6 53.2 56 58.8 55.8 62 68.2 58.9 62 65.1 61.2 68 74.8 64.6 68 71.4 67.5 75 82.5 71.3 75 78.8 73.8 82 90.2 77.9 82 86.1 81.9 91 100 86.5 91 95.5 TEST CURRENT I(BR) mADC 10 10 10 10 10 10 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 RATED STAND-OFF VOLTAGE VW M V 5.5 5.8 6.05 6.4 6.63 7.02 7.37 7.78 8.1 8.55 8.92 9.4 9.72 10.2 10.5 11.1 12.1 12.8 12.9 13.6 14.5 15.3 16.2 17.1 17.8 18.8 19.4 20.5 21.8 23.1 24.3 25.6 26.8 28.2 29.1 30.8 31.6 33.3 34.8 36.8 38.1 40.2 41.3 43.6 45.4 47.8 50.2 53 55.1 58.1 60.7 64.1 66.4 70.1 73.7 77.8 MAX REVERSE LEAKAGE CURRENT ID @ VW M µA 1000 1000 500 500 200 200 50 50 10 10 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 5 MAX. CLAMPING VOLTAGE VC @ IPP V 10.8 10.5 11.7 11.3 12.5 12.1 13.8 13.4 15 14.5 16.2 15.6 17.3 16.7 19 18.2 22 21.2 23.5 22.5 26.5 25.2 29.1 27.7 31.9 30.6 34.7 33.2 39.1 37.5 43.5 41.4 47.7 45.7 52 49.9 56.4 53.9 61.9 59.3 67.8 64.8 73.5 70.1 80.5 77 89 85 98 92 108 103 118 113 131 125 MAX. PEAK PULSE CURRENT IPP A 46.3 47.6 42.7 44.2 40.0 41.3 36.2 37.3 33.


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