TISP3240F3SL Bourns Inc., TISP3240F3SL Datasheet - Page 10

SURGE SUPP 180V BIDIR 3-SL

TISP3240F3SL

Manufacturer Part Number
TISP3240F3SL
Description
SURGE SUPP 180V BIDIR 3-SL
Manufacturer
Bourns Inc.
Datasheets

Specifications of TISP3240F3SL

Package / Case
Radial - 3 Lead
Voltage - Breakover
240V
Voltage - Off State
180V
Voltage - On State
3V
Current - Peak Pulse (8 X 20µs)
120A
Current - Peak Pulse (10 X 1000µs)
35A
Current - Hold (ih)
150mA
Number Of Elements
2
Capacitance
45pF
Breakover Current Ibo Max
7.1 A
Rated Repetitive Off-state Voltage Vdrm
180 V
Off-state Leakage Current @ Vdrm Idrm
0.01 mA
Forward Voltage Drop
3 V
Mounting Style
Through Hole
Dc
0508
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
The electrical characteristics of a TISP
on the junction temperature at the instant of measurement. The values given in this data sheet were measured on commercial testers, which
generally minimize the temperature rise caused by testing. Application values may be calculated from the parameters’ temperature coefficient,
the power dissipated and the thermal response curve, Z θ (see M. J. Maytum, “Transient Suppressor Dynamic Parameters.” TI Technical
Journal, vol. 6, No. 4, pp.63-70, July-August 1989).
Wave Shape Notation
Most lightning tests, used for equipment verification, specify a unidirectional sawtooth waveform which has an exponential rise and an
exponential decay. Wave shapes are classified in terms of peak amplitude (voltage or current), rise time and a decay time to 50% of the
maximum amplitude. The notation used for the wave shape is amplitude, rise time/decay time. A 50 A, 5/310 µs wave shape would have a
peak current value of 50 A, a rise time of 5 µs and a decay time of 310 µs. The TISP
commonly used surges.
Generators
There are three categories of surge generator type, single wave shape, combination wave shape and circuit defined. Single wave shape
generators have essentially the same wave shape for the open circuit voltage and short circuit current (e.g. 10/1000 µs open circuit voltage
and short circuit current). Combination generators have two wave shapes, one for the open circuit voltage and the other for the short circuit
current (e.g. 1.2/50 µs open circuit voltage and 8/20 µs short circuit current). Circuit specified generators usually equate to a combination
generator, although typically only the open circuit voltage waveshape is referenced (e.g. a 10/700 µs open circuit voltage generator typically
produces a 5/310 µs short circuit current). If the combination or circuit defined generators operate into a finite resistance, the wave shape
produced is intermediate between the open circuit and short circuit values.
Current Rating
When the TISP
terms of open circuit voltage, it is the current wave shape that must be used to assess the required TISP
ITU-T K.21 1.5 kV, 10/700 µs open circuit voltage surge is changed to a 38 A, 5/310 µs current waveshape when driving into a short circuit.
Thus, the TISP
surge graph and not 700 µs. Some common short circuit equivalents are tabulated below:
Any series resistance in the protected equipment will reduce the peak circuit current to less than the generators’ short circuit value. A 1 kV
open circuit voltage, 100 A short circuit current generator has an effective output impedance of 10 Ω (1000/100). If the equipment has a series
resistance of 25 Ω, then the surge current requirement of the TISP
MARCH 1994 - REVISED OCTOBER 2000
Specifications are subject to change without notice.
Electrical Characteristics
Lightning Surge
TISP3xxxF3 (HV) Overvoltage Protector Series
®
®
surge current capability, when directly connected to the generator, will be found for the ITU-T K.21 waveform at 310 µs on the
device switches into the on-state it has a very low impedance. As a result, although the surge wave shape may be defined in
IEC 61000-4-5, combination wave generator
Telcordia GR-1089-CORE
Telcordia GR-1089-CORE
FCC Part 68, Type A
FCC Part 68, Type B
FCC Part 68, Type A
®
device are strongly dependent on junction temperature, T J . Hence, a characteristic value will depend
ITU-T K.21
ITU-T K.20
Standard
APPLICATIONS INFORMATION
®
device becomes 29 A (1000/35) and not 100 A.
Open Circuit Voltage Short Circuit Current
1.5 kV, <10/>160 µs
800 V, <10/>560 µs
1.0 kV, 10/1000 µs
1.5 kV, 10/700 µs
1.0 kV, 1.2/50 µs
1.5 kV, 9/720 µs
1 kV, 10/700 µs
2.5 kV, 2/10 µs
®
surge current graph comprehends the wave shapes of
200 A,<10/>160 µs
100 A,<10/>160 µs
100 A, 10/1000 µs
37.5 A, 5/310 µs
37.5 A, 5/320 µs
25 A, 5/310 µs
500 A, 8/20 µs
500 A, 2/10 µs
®
surge capability. As an example, the
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