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TISP4072F3LM, TISP4082F3LM, TISP4125F3LM, TISP4150F3LM, TISP4180F3LM TISP4240F3LM, TISP4260F3LM, TISP4290F3LM, TISP4320F3LM, TISP4380F3LM BIDIRECTIONAL THYRISTOR OVERVOLTAGE PROTECTORS Copyright (c) 1999, Power Innovations Limited, UK DECEMBER 1998 - REVISED APRIL 1999 TELECOMMUNICATION SYSTEM SECONDARY PROTECTION q Ion-Implanted Breakdown Region Precise and Stable Voltage Low Voltage Overshoot under Surge DEVICE `4072 `4082 `4125 `4150 `4180 `4240 `4260 `4290 `4320 `4380 VDRM V 58 66 100 120 145 180 200 220 240 270 V(BO) V 72 82 125 150 180 240 260 290 320 380 LM PACKAGE (TOP VIEW) T(A) NC R(B) 1 2 3 MD4XAT NC - No internal connection on pin 2 LMF PACKAGE (LM PACKAGE WITH FORMED LEADS) (TOP VIEW) T(A) NC R(B) 1 2 3 MD4XAKB NC - No internal connection on pin 2 q Rated for International Surge Wave Shapes WAVE SHAPE 10/160 s 0.5/700 s 10/700 s 10/560 s 10/1000 s STANDARD FCC Part 68 I3124 ITU-T K20/21 FCC Part 68 REA PE-60 ITSP A 60 38 50 45 35 R PACKAGE TYPE Straight Lead DO-92 Bulk Pack Straight Lead DO-92 Tape and Reeled SD4XAA device symbol T q Ordering Information DEVICE TYPE TISP4xxxF3LM TISP4xxxF3LMR Terminals T and R correspond to the alternative line designators of A and B TISP4xxxF3LMFR Formed Lead DO-92 Tape and Reeled description These devices are designed to limit overvoltages on the telephone line. Overvoltages are normally caused by a.c. power system or lightning flash disturbances which are induced or conducted on to the telephone line. A single device provides 2-point protection and is typically used for the protection of 2-wire telecommunication equipment (e.g. between the Ring to Tip wires for telephones and modems). Combinations of devices can be used for multi-point protection (e.g. 3-point protection between Ring, Tip and Ground). The protector consists of a symmetrical voltage-triggered bidirectional thyristor. Overvoltages are initially clipped by breakdown clamping until the voltage rises to the breakover level, which causes the device to crowbar into a low-voltage on state. This low-voltage on state causes the current resulting from the overvoltage to be safely diverted through the device. The high crowbar holding current prevents d.c. latchup as the diverted current subsides. This TISP4xxxF3LM range consists of ten voltage variants to meet various maximum system voltage levels (58 V to 270 V). They are guaranteed to voltage limit and withstand the listed international lightning surges in both polarities. These protection devices are supplied in a DO-92 (LM) cylindrical plastic package. The PRODUCT INFORMATION 1 Information is current as of publication date. Products conform to specifications in accordance with the terms of Power Innovations standard warranty. Production processing does not necessarily include testing of all parameters. TISP4072F3LM, TISP4082F3LM, TISP4125F3LM, TISP4150F3LM, TISP4180F3LM TISP4240F3LM, TISP4260F3LM, TISP4290F3LM, TISP4320F3LM, TISP4380F3LM BIDIRECTIONAL THYRISTOR OVERVOLTAGE PROTECTORS DECEMBER 1998 - REVISED APRIL 1999 description (continued) TISP4xxxF3LM is a straight lead DO-92 supplied in bulk pack and on tape and reeled. The TISP4xxxF3LMF is a formed lead DO-92 supplied only on tape and reeled. absolute maximum ratings RATING `4072 `4082 `4125 `4150 Repetitive peak off-state voltage (0 C < TJ < 70 C) `4180 `4240 `4260 `4290 `4320 `4380 Non-repetitive peak on-state pulse current (see Notes 1, 2 and 3) 2/10 s (FCC Part 68, 2/10 s voltage wave shape) excluding `4072 - `4082 8/20 s (ANSI C62.41, 1.2/50 s voltage wave shape) excluding `4072 - `4082 10/160 s (FCC Part 68, 10/160 s voltage wave shape) 5/200 s (VDE 0433, 2 kV, 10/700 s voltage wave shape) 0.2/310 s (I3124, 1.5 kV, 0.5/700 s voltage wave shape) 5/310 s (ITU-T K20/21, 1.5 kV, 10/700 s voltage wave shape) 5/310 s (FTZ R12, 2 kV, 10/700 s voltage wave shape) 10/560 s (FCC Part 68, 10/560 s voltage wave shape) 10/1000 s (REA PE-60, 10/1000 s voltage wave shape) 2/10 s (FCC Part 68, 2/10 s voltage wave shape) `4072 - `4082 only 8/20 s (ANSI C62.41, 1.2/50 s voltage wave shape) `4072 - `4082 only Non-repetitive peak on-state current (see Notes 2 and 3) 50/60 Hz, 1s Linear current ramp, Maximum ramp value < 38 A Initial rate of rise of on-state current, Junction temperature Storage temperature range NOTES: 1. Initially the TISP must be in thermal equilibrium with 0 C < TJ < 70 C. 2. The surge may be repeated after the TISP returns to its initial conditions. 3. Above 70 C, derate linearly to zero at 150 C lead temperature. ITSM diT/dt TJ Tstg ITSP 175 120 60 50 38 38 50 45 35 80 70 4 250 -40 to +150 -55 to +150 A A/s C C A VDRM SYMBOL VALUE 58 66 100 120 145 180 200 220 240 270 V UNIT PRODUCT 2 INFORMATION TISP4072F3LM, TISP4082F3LM, TISP4125F3LM, TISP4150F3LM, TISP4180F3LM TISP4240F3LM, TISP4260F3LM, TISP4290F3LM, TISP4320F3LM, TISP4380F3LM BIDIRECTIONAL THYRISTOR OVERVOLTAGE PROTECTORS DECEMBER 1998 - REVISED APRIL 1999 electrical characteristics for the T and R terminals, TJ = 25 C (unless otherwise noted) PARAMETER IDRM Repetitive peak offstate current TEST CONDITIONS VD = VDRM, 0 C < TJ < 70 C `4072 `4082 `4125 `4150 V(BO) Breakover voltage dv/dt = 250 V/ms, RSOURCE = 300 `4180 `4240 `4260 `4290 `4320 `4380 `4072 `4082 `4125 `4150 V(BO) Impulse breakover voltage dv/dt = 1000 V/s, di/dt < 20 A/s RSOURCE = 50 , `4180 `4240 `4260 `4290 `4320 `4380 I(BO) VT IH dv/dt ID Breakover current On-state voltage Holding current Critical rate of rise of off-state voltage Off-state current dv/dt = 250 V/ms, RSOURCE = 300 0.15 0.15 5 10 Vd = 1 Vrms, VD = 0, `4072 - `4082 `4125 - `4180 Coff Off-state capacitance `4240 - `4380 f = 100 kHz, Vd = 1 Vrms, VD = -50 V `4072 - `4082 `4125 - `4180 `4240 - `4380 63 43 44 25 15 11 108 74 74 40 25 20 pF IT = 5 A, tW = 100 s IT = 5 A, di/dt = +/-30 mA/ms Linear voltage ramp, Maximum ramp value < 0.85VDRM VD = 50 V f = 100 kHz, MIN TYP MAX 10 72 82 125 150 180 240 260 290 320 380 86 96 143 168 198 267 287 317 347 407 0.6 3 A V A kV/s A V V UNIT A thermal characteristics PARAMETER RJA Junction to free air thermal resistance TEST CONDITIONS EIA/JESD51-3 PCB mounted in an EIA/ JESD51-2 enclosure MIN TYP MAX 120 UNIT C/W PRODUCT INFORMATION 3 TISP4072F3LM, TISP4082F3LM, TISP4125F3LM, TISP4150F3LM, TISP4180F3LM TISP4240F3LM, TISP4260F3LM, TISP4290F3LM, TISP4320F3LM, TISP4380F3LM BIDIRECTIONAL THYRISTOR OVERVOLTAGE PROTECTORS DECEMBER 1998 - REVISED APRIL 1999 PARAMETER MEASUREMENT INFORMATION +i ITSP Quadrant I Switching Characteristic ITSM IT VT IH IDRM -v VDRM IDRM IH VD ID ID VD VDRM +v V(BO) I(BO) I(BO) V(BO) VT IT ITSM Quadrant III Switching Characteristic ITSP -i PMXXAAB Figure 1. VOLTAGE-CURRENT CHARACTERISTIC FOR R AND T TERMINALS ALL MEASUREMENTS ARE REFERENCED TO THE T TERMINAL PRODUCT 4 INFORMATION TISP4072F3LM, TISP4082F3LM, TISP4125F3LM, TISP4150F3LM, TISP4180F3LM TISP4240F3LM, TISP4260F3LM, TISP4290F3LM, TISP4320F3LM, TISP4380F3LM BIDIRECTIONAL THYRISTOR OVERVOLTAGE PROTECTORS DECEMBER 1998 - REVISED APRIL 1999 TYPICAL CHARACTERISTICS OFF-STATE CURRENT vs JUNCTION TEMPERATURE TC4XAA VDRM DERATING FACTOR vs MINIMUM AMBIENT TEMPERATURE 1.00 100 TC4XAB 10 ID - Off-State Current - A 0.99 Derating Factor 1 0.98 '4072 AND '4082 '4125 THRU '4180 VD = 50 V VD = -50 V 0*1 0.97 0*01 0.96 '4240 THRU '4380 -35 -30 -25 -20 -15 -10 -5 TAMIN - Minimum Ambient Temperature - C 0 0*001 -25 0 25 50 75 100 125 TJ - Junction Temperature - C 150 0.95 -40 Figure 2. NORMALISED V(BO) ON-STATE CURRENT vs vs ON-STATE VOLTAGE AMBIENT TEMPERATURE 100 Figure 3. NORMALISED HOLDING CURRENT vs JUNCTION TEMPERATURE 2.0 TC4XAD TC3MAL TC4XAC V(BO) NormalisedCurrent - A I - On-State to 25C Value Normalised Holding Current 1.1 '4125 THRU '4180 '4072 AND '4082 1.5 1.0 0.9 0.8 0.7 0.6 0.5 10 '4240 THRU 1.0 '4380 '4240 THRU '4380 T 25C '4072 150C AND '4082 1 -25 -40C 0.91 0.4 2 3 4 5 7 0 25 50 75 100 6 125 8 9 10 150 TA -VT - On-State Voltage - -V Ambient Temperature C -25 0 25 50 75 100 125 150 TJ - Junction Temperature - C Figure 4. Figure 5. PRODUCT INFORMATION 5 TISP4072F3LM, TISP4082F3LM, TISP4125F3LM, TISP4150F3LM, TISP4180F3LM TISP4240F3LM, TISP4260F3LM, TISP4290F3LM, TISP4320F3LM, TISP4380F3LM BIDIRECTIONAL THYRISTOR OVERVOLTAGE PROTECTORS DECEMBER 1998 - REVISED APRIL 1999 TYPICAL CHARACTERISTICS NORMALISED BREAKOVER VOLTAGE vs RATE OF RISE OF PRINCIPAL CURRENT 1.3 POSITIVE POLARITY TC4XAE NORMALISED BREAKOVER VOLTAGE vs RATE OF RISE OF PRINCIPAL CURRENT 1.3 NEGATIVE POLARITY TC4XAF '4072 AND '4082 Normalised Breakover Voltage Normalised Breakover Voltage '4072 AND '4082 '4125 THRU '4180 '4240 THRU '4380 1.2 '4240 THRU '4380 1.1 1.2 1.1 '4125 THRU '4180 1.0 0*001 0*01 0*1 1 10 100 1.0 0*001 0*01 0*1 1 10 100 di/dt - Rate of Rise of Principal Current - A/s di/dt - Rate of Rise of Principal Current - A/s Figure 6. OFF-STATE CAPACITANCE vs TERMINAL VOLTAGE TC4XAG 100 90 80 70 Off-State Capacitance - pF 60 50 40 30 POSITIVE POLARITY 100 90 80 70 Off-State Capacitance - pF 60 50 40 30 Figure 7. OFF-STATE CAPACITANCE vs TERMINAL VOLTAGE TC4XAH NEGATIVE POLARITY '4072 AND '4082 '4072 AND '4082 20 '4125 THRU '4180 20 '4240 THRU '4380 50 10 0*1 '4125 THRU '4180 '4240 THRU '4380 50 10 0*1 1 10 Terminal Voltage - V 1 10 Terminal Voltage - V Figure 8. Figure 9. PRODUCT 6 INFORMATION TISP4072F3LM, TISP4082F3LM, TISP4125F3LM, TISP4150F3LM, TISP4180F3LM TISP4240F3LM, TISP4260F3LM, TISP4290F3LM, TISP4320F3LM, TISP4380F3LM BIDIRECTIONAL THYRISTOR OVERVOLTAGE PROTECTORS DECEMBER 1998 - REVISED APRIL 1999 THERMAL INFORMATION NON-REPETITIVE PEAK ON-STATE CURRENT vs CURRENT DURATION TI4LAAA ITSM(t) - Non-Repetitive Peak On-State Current - A 10 9 8 7 6 5 4 3 VGEN = 600 Vrms, 50/60 Hz RGEN(t) = 1.4*VGEN / ITSM(t) 2 1 0*1 1 10 100 t - Current Duration - s 1000 Figure 10. MECHANICAL DATA device symbolization code Devices will be coded as below. DEVICE TISP4072F3 TISP4082F3 TISP4125F3 TISP4150F3 TISP4180F3 TISP4240F3 TISP4260F3 TISP4290F3 TISP4320F3 TISP4380F3 SYMOBLIZATION CODE 4072F3 4082F3 4125F3 4150F3 4180F3 4240F3 4260F3 4290F3 4320F3 4380F3 carrier information Devices are shipped in one of the carriers below. A reel contains 2 000 devices. PACKAGE TYPE Straight Lead DO-92 Straight Lead DO-92 Formed Lead DO-92 CARRIER Bulk Pack ORDER # TISP4xxxF3LM Tape and Reeled TISP4xxxF3LMR Tape and Reeled TISP4xxxF3LMFR PRODUCT INFORMATION 7 TISP4072F3LM, TISP4082F3LM, TISP4125F3LM, TISP4150F3LM, TISP4180F3LM TISP4240F3LM, TISP4260F3LM, TISP4290F3LM, TISP4320F3LM, TISP4380F3LM BIDIRECTIONAL THYRISTOR OVERVOLTAGE PROTECTORS DECEMBER 1998 - REVISED APRIL 1999 MECHANICAL DATA LM002 (DO-92) 2-pin cylindrical plastic package This single-in-line package consists of a circuit mounted on a lead frame and encapsulated within a plastic compound. The compound will withstand soldering temperature with no deformation, and circuit performance characteristics will remain stable when operated in high humidity conditions. Leads require no additional cleaning or processing when used in soldered assembly. . LM002 Package (DO-92) 5,21 4,44 3,43 MIN. 2,67 2,03 4,19 3,17 2,67 2,03 5,34 4,32 2,20 MAX. 2 A 2 12,7 MIN. 0,56 0,40 1 3 3 VIEW A 1 1,40 1,14 2,67 2,41 0,41 0,35 ALL LINEAR DIMENSIONS IN MILLIMETERS MD4XARA PRODUCT 8 INFORMATION TISP4072F3LM, TISP4082F3LM, TISP4125F3LM, TISP4150F3LM, TISP4180F3LM TISP4240F3LM, TISP4260F3LM, TISP4290F3LM, TISP4320F3LM, TISP4380F3LM BIDIRECTIONAL THYRISTOR OVERVOLTAGE PROTECTORS DECEMBER 1998 - REVISED APRIL 1999 MECHANICAL DATA LM002 (DO-92) - Formed Leads Version 2-pin cylindrical plastic package This single-in-line package consists of a circuit mounted on a lead frame and encapsulated within a plastic compound. The compound will withstand soldering temperature with no deformation, and circuit performance characteristics will remain stable when operated in high humidity conditions. Leads require no additional cleaning or processing when used in soldered assembly. LMF002 (DO-92) - Formed Leads Version of LM002 5,21 4,44 3,43 MIN. 2,67 2,03 4,19 3,17 2,67 2,03 5,34 4,32 2,20 MAX. 2 4,00 MAX. A 2 0,56 0,40 1 3 3 VIEW A 2,90 2,40 0,41 0,35 1 2,90 2,40 ALL LINEAR DIMENSIONS IN MILLIMETERS MD4XASA PRODUCT INFORMATION 9 TISP4072F3LM, TISP4082F3LM, TISP4125F3LM, TISP4150F3LM, TISP4180F3LM TISP4240F3LM, TISP4260F3LM, TISP4290F3LM, TISP4320F3LM, TISP4380F3LM BIDIRECTIONAL THYRISTOR OVERVOLTAGE PROTECTORS DECEMBER 1998 - REVISED APRIL 1999 MECHANICAL DATA tape dimensions LM002 Package (Straight Lead DO-92) Tape 13,70 11,70 Body Indent Visible LM002 Tape Dimensions Conform to the Requirements of EIA-468-B 32,00 23,00 27,68 17,66 11,00 8,50 2,50 MIN. 0,50 0,00 9,75 8,50 19,00 5,50 19,00 17,50 3,14 2,14 Adhesive Tape on Reverse Side - Shown Dashed 5,48 4,68 13,00 12,40 VIEW A 3,70 4,30 Tape Section Shown in View A Flat of DO-92 Body Towards Reel Axis Direction of Feed ALL LINEAR DIMENSIONS IN MILLIMETERS MD4XAPC PRODUCT 10 INFORMATION TISP4072F3LM, TISP4082F3LM, TISP4125F3LM, TISP4150F3LM, TISP4180F3LM TISP4240F3LM, TISP4260F3LM, TISP4290F3LM, TISP4320F3LM, TISP4380F3LM BIDIRECTIONAL THYRISTOR OVERVOLTAGE PROTECTORS DECEMBER 1998 - REVISED APRIL 1999 MECHANICAL DATA tape dimensions LMF002 Package (Formed Lead DO-92) Tape 13,70 11,70 Body Indent Visible LMF002 Tape Dimensions Conform to the Requirements of EIA-468-B 32,00 23,00 27,68 17,66 2,50 MIN. 16,53 15,50 11,00 8,50 9,75 8,50 0,50 0,00 19,00 5,50 19,00 17,50 Adhesive Tape on Reverse Side - Shown Dashed 5,28 4,88 4,21 3,41 13,00 12,40 VIEW A 3,70 4,30 Tape Section Shown in View A Flat of DO-92 Body Towards Reel Axis Direction of Feed ALL LINEAR DIMENSIONS IN MILLIMETERS MD4XAQC PRODUCT INFORMATION 11 TISP4072F3LM, TISP4082F3LM, TISP4125F3LM, TISP4150F3LM, TISP4180F3LM TISP4240F3LM, TISP4260F3LM, TISP4290F3LM, TISP4320F3LM, TISP4380F3LM BIDIRECTIONAL THYRISTOR OVERVOLTAGE PROTECTORS DECEMBER 1998 - REVISED APRIL 1999 IMPORTANT NOTICE Power Innovations Limited (PI) reserves the right to make changes to its products or to discontinue any semiconductor product or service without notice, and advises its customers to verify, before placing orders, that the information being relied on is current. PI warrants performance of its semiconductor products to the specifications applicable at the time of sale in accordance with PI's standard warranty. Testing and other quality control techniques are utilized to the extent PI deems necessary to support this warranty. Specific testing of all parameters of each device is not necessarily performed, except those mandated by government requirements. PI assumes no liability for applications assistance, customer product design, software performance, or infringement of patents or services described herein. Nor is any license, either express or implied, granted under any patent right, copyright, design right, or other intellectual property right of PI covering or relating to any combination, machine, or process in which such semiconductor products or services might be or are used. PI SEMICONDUCTOR PRODUCTS ARE NOT DESIGNED, INTENDED, AUTHORISED, OR WARRANTED TO BE SUITABLE FOR USE IN LIFE-SUPPORT APPLICATIONS, DEVICES OR SYSTEMS. Copyright (c) 1999, Power Innovations Limited PRODUCT 12 INFORMATION |
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