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TISP7082F3 Datasheet(PDF) 2 Page - Bourns Electronic Solutions |
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TISP7082F3 Datasheet(HTML) 2 Page - Bourns Electronic Solutions |
2 / 15 page MARCH 1994 - REVISED SEPTEMBER 2008 Specifications are subject to change without notice. Customers should verify actual device performance in their specific applications. Description (continued) TISP70xxF3 (LV) Overvoltage Protector Series Absolute Maximum Ratings, TA = 25 °C (Unless Otherwise Noted) The high crowbar holding current helps prevent d.c. latchup as the diverted current subsides. These protectors are guaranteed to voltage limit and withstand the listed lightning surges in both polarities. These low voltage devices are guaranteed to suppress and withstand the listed international lightning surges on any terminal pair. Nine similar devices with working voltages from 100 V to 275 V are detailed in the TISP7125F3 thru TISP7380F3 data sheet. Rating Symbol Value Unit Repetitive peak off-state voltage, 0 °C < TA < 70 °C ‘7072F3 ‘7082F3 VDRM 58 66 V Non-repetitive peak on-state pulse current (see Notes 1 and 2) IPPSM A 1/2 (Gas tube differential transient, 1/2 voltage wave shape) 240 2/10 (Telcordia GR-1089-CORE, 2/10 voltage wave shape) 85 1/20 (ITU-T K.22, 1.2/50 voltage wave shape, 25 Ω resistor) 45 8/20 (IEC 61000-4-5, combination wave generator, 1.2/50 voltage wave shape) 80 10/160 (FCC Part 68, 10/160 voltage wave shape) 65 4/250 (ITU-T K.20/21, 10/700 voltage wave shape, simultaneous) 60 0.2/310 (CNET I 31-24, 0.5/700 voltage wave shape) 50 5/310 (ITU-T K.20/21, 10/700 voltage wave shape, single) 50 5/320 (FCC Part 68, 9/720 voltage wave shape, single) 50 10/560 (FCC Part 68, 10/560 voltage wave shape) 45 10/1000 (Telcordia GR-1089-CORE, 10/1000 voltage wave shape) 40 Non-repetitive peak on-state current, 0 °C < TA < 70 °C (see Notes 1 and 3) 50 Hz, 1 s ITSM 4.3 A Initial rate of rise of on-state current, Linear current ramp, Maximum ramp value < 38 A diT/dt 250 A/µs Junction temperature TJ -65 to +150 °C Storage temperature range Tstg -65 to +150 °C NOTES: 1. Initially, t he TISP® device must be in thermal equilibrium at the specified TA. The surge may be repeated after the TISP ® device i returns to its nitial conditions. The rated current values may be applied singly either to the R to G or to the T to G or to the T Additionally, both R to G and T to G may have their rated current values applied simultaneously (in this case current will be twice the above rated current values). 2. See Thermal Information for derated IPPSM values 0 °C < TA < 70 °C and Applications Information for details on wave shapes. 3. Above 70 °C, derate ITSM linearly to zero at 150 °C lead temperature. to R terminals. . the total G terminal |
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