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TISP7125F3D Datasheet(PDF) 18 Page - Power Innovations Ltd

Part # TISP7125F3D
Description  TRIPLE BIDIRECTIONAL THYRISTOR OVERVOLTAGE PROTECTORS???
PDF  25 Pages
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Manufacturer  POINN [Power Innovations Ltd]
Direct Link  http://www.bourns.com
Logo POINN - Power Innovations Ltd

TISP7125F3D Datasheet(HTML) 18 Page - Power Innovations Ltd

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TISP7125F3, TISP7150F3, TISP7180F3, TISP7240F3, TISP7260F3,
TISP7290F3, TISP7320F3, TISP7350F3, TISP7380F3
TRIPLE BIDIRECTIONAL THYRISTOR OVERVOLTAGE PROTECTORS
18
MARCH 1994 - REVISED MARCH 2000
P R OD UCT
INFORM A T ION
If the impulse generator current exceeds the protectors current rating then a series resistance can be used to
reduce the current to the protectors rated value and so prevent possible failure. The required value of series
resistance for a given waveform is given by the following calculations. First, the minimum total circuit
impedance is found by dividing the impulse generators peak voltage by the protectors rated current. The
impulse generators fictive impedance (generators peak voltage divided by peak short circuit current) is then
subtracted from the minimum total circuit impedance to give the required value of series resistance. In some
cases the equipment will require verification over a temperature range. By using the derated waveform values
from the thermal information section, the appropriate series resistor value can be calculated for ambient
temperatures in the range of 0 °C to 70 °C.
protection voltage
The protection voltage, (V(BO) ), increases under lightning surge conditions due to thyristor regeneration. This
increase is dependent on the rate of current rise, di/dt, when the TISP® is clamping the voltage in its
breakdown region. The V(BO) value under surge conditions can be estimated by multiplying the 50 Hz rate
V(BO) (250 V/ms) value by the normalised increase at the surge’s di/dt. An estimate of the di/dt can be made
from the surge generator voltage rate of rise, dv/dt, and the circuit resistance.
As an example, the ITU-T recommendation K.21 1.5 kV, 10/700 surge has an average dv/dt of 150 V/µs, but,
as the rise is exponential, the initial dv/dt is three times higher, being 450 V/µs. The instantaneous generator
output resistance is 25
Ω. If the equipment has an additional series resistance of 20 Ω, the total series
resistance becomes 45
Ω. The maximum di/dt then can be estimated as 450/45 = 10 A/µs. In practice the
measured
di/dt and protection voltage increase will be lower due to inductive effects and the finite slope
resistance of the TISP® breakdown region.
capacitance
off-state capacitance
The off-state capacitance of a TISP® is sensitive to junction temperature, TJ , and the bias voltage,
comprising of the dc voltage, VD , and the ac voltage, Vd . All the capacitance values in this data sheet are
measured with an ac voltage of 1 V rms. When VD >> Vd the capacitance value is independent on the value
of Vd . Up to 10 MHz the capacitance is essentially independent of frequency. Above 10 MHz the effective
capacitance is strongly dependent on connection inductance. For example, a printed wiring (PW) trace of
10 cm could create a circuit resonance with the device capacitance in the region of 80 MHz.
STANDARD
PEAK VOLTAGE
SETTING
V
VOLTAGE
WAVE FORM
µs
PEAK CURRENT
VALUE
A
CURRENT
WAVE FORM
µs
TISP7xxxF3
25 °C RATING
A
SERIES
RESISTANCE
Ω
COORDINATION
RESISTANCE
Ω (MIN.)
GR-1089-CORE
2500
2/10
2 x 500
2/10
2 x 190
12
NA
1000
10/1000
2 x 100
10/1000
2 x 45
FCC Part 68
(March 1998)
1500
10/160
200
10/160
110
6
NA
800
10/560
100
10/560
50
8
1000
1500
1500
9/720 †
(SINGLE)
(DUAL)
25
37.5
2x 27
5/320 †
5/320 †
4/250
70
70
2x95
0
I 31-24
1500
0.5/700
37.5
0.2/310
70
0
NA
ITU-T K20/K21
1000
1500
4000
4000
10/700
(SINGLE)
(SINGLE)
(DUAL)
25
37.5
100
2x 72
5/310
5/310
5/310
4/250
70
70
70
2x95
0
0
17
0
NA
NA
6
6
† FCC Part 68 terminology for the waveforms produced by the ITU-T recommendation K21 10/700 impulse generator
NA = Not Applicable, primary protection removed or not specified.



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