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PDF BL758L Data sheet ( Hoja de datos )

Número de pieza BL758L
Descripción INTEGRATED SYMMETRICAL AND ASYMMETRICAL BIDIRECTIONAL OVERVOLTAGE PROTECTORS
Fabricantes Bourns Electronic Solutions 
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TISPL758LF3D - INTEGRATED SYMMETRICAL AND
ASYMMETRICAL BIDIRECTIONAL OVERVOLTAGE PROTECTORS FOR
LUCENT TECHNOLOGIES L7581/2/3 LINE CARD ACCESS SWITCHES
OVERVOLTAGE PROTECTION FOR LUCENT TECHNOLOGIES LCAS
q Symmetrical and Asymmetrical
Characteristics for Optimum Protection of
Lucent L7581/2/3 LCAS
TERMINAL
VDRM
V(BO)
PAIR
VV
T-G (SYMMETRICAL)
±105
±130
R-G (ASYMMETRICAL)
+105, -180 +130, -220
CUSTOMISED VERSIONS AVAILABLE
D PACKAGE
(TOP VIEW)
T1
NC 2
NC 3
R4
8G
7G
6G
5 G MDXXAE
NC - No internal connection
q Rated for International Surge Wave Shapes
WAVE SHAPE
2/10 µs
8/20 µs
10/160 µs
10/700 µs
10/560 µs
10/1000 µs
STANDARD
GR-1089-CORE
ANSI C62.41
FCC Part 68
ITU-T K20/21
FCC Part 68
GR-1089-CORE
ITSP
A
175
120
60
50
45
35
device symbol
T
R
q Ion-Implanted Breakdown Region
Precise And Stable Voltage
Low Voltage Overshoot Under Surge
SD3XAA
G
Terminals T, R and G correspond to the
alternative line designators of A, B and C
q Planar Passivated Junctions
Low Off-State Current < ±10 µA
q Small Outline Surface Mount Package
- Available Ordering Options
CARRIER
Tube
Taped and reeled
ORDER #
TISPL758LF3D
TISPL758LF3DR
description
The TISPL758LF3 is an integrated combination
of a symmetrical bidirectional overvoltage
protector and an asymmetrical bidirectional
overvoltage protector. It is designed to limit the
peak voltages on the line terminals of the Lucent
Technologies L7581/2/3 LCAS (Line Card
Access Switches). An LCAS may also be
referred to as a Solid State Relay, SSR, i.e. a
replacement of the conventional electro-
mechanical relay.
The TISPL758LF3D voltages are chosen to give
adequate LCAS protection for all switch
conditions. The most potentially stressful
condition is low level power cross when the
LCAS switches are closed. Under this condition,
the TISPL758LF3D limits the voltage and
corresponding LCAS dissipation until the LCAS
thermal trip operates and opens the switches.
Under open-circuit ringing conditions, the line
ring (R) conductor will have high peak voltages.
For battery backed ringing, the ring conductor
will have a larger peak negative voltage than
positive i.e. the peak voltages are asymmetric.
An overvoltage protector with a similar voltage
asymmetry will give the most effective protection.
On a connected line, the tip (T) conductor will
have much smaller voltage levels than the open-
circuit ring conductor values. Here a symmetrical
voltage protector gives adequate protection.
Overvoltages are normally caused by a.c. power
system or lightning flash disturbances which are
induced or conducted on to the telephone line.
These overvoltages are initially clipped by
protector breakdown clamping until the voltage
rises to the breakover level, which causes the
Support from the Microelectronics Group of Lucent Technologies Inc. is gratefully acknowledged in the definition of
the TISPL758LF3D voltage levels and for performing TISPL758LF3D evaluations.
PRODUCT INFORMATION
JANUARY 1998 - REVISED AUGUST 2002
Specifications are subject to change without notice.
1
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BL758L pdf
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TISPL758LF3D - INTEGRATED SYMMETRICAL AND
ASYMMETRICAL BIDIRECTIONAL OVERVOLTAGE PROTECTORS FOR
LUCENT TECHNOLOGIES L7581/2/3 LINE CARD ACCESS SWITCHES
TYPICAL CHARACTERISTICS
OFF-STATE CURRENT
vs
JUNCTION TEMPERATURE
100
TC3MAG
VD = ±50 V
NORMALISED BREAKDOWN VOLTAGES
vs
JUNCTION TEMPERATURE
1.2 TC3MAJA
10
1.1
1
0·1
0·01
V(BO)
1.0
VDRM
0·001
-25
0 25 50 75 100 125
TJ - Junction Temperature - °C
Figure 3.
150
NORMALISED BREAKOVER VOLTAGE
vs
RATE OF RISE OF PRINCIPLE CURRENT
1.3 TC3MAC
0.9
-25
0 25 50 75 100 125
TJ - Junction Temperature - °C
Figure 4.
150
NORMALISED HOLDING CURRENT
vs
2.0 JUNCTION TEMPERATURE TC3MAHA
1.2
1.1
1.0
0·001
0·01
0·1
1
10 100
di/dt - Rate of Rise of Principle Current - A/µs
Figure 5.
1.5
1.0
0.9
0.8
0.7
0.6
0.5
-25
0 25 50 75 100 125
TJ - Junction Temperature - °C
Figure 6.
150
APPLICATIONS INFORMATION
PRODUCT INFORMATION
JANUARY 1998 - REVISED AUGUST 2002
Specifications are subject to change without notice.
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