TISP7072F3,TISP7082F3
LOW-VOLTAGE TRIPLE ELEMENT BIDIRECTIONAL
THYRISTOR OVERVOLTAGE PROTECTORS
TISP70xxF3 (LV) Overvoltage Protector Series
Additional Information
Patented Ion-Implanted Breakdown Region Precise DC and Dynamic Voltages
Device
‘7072F3
‘7082F3
VDRM
V(BO)
V
58
66
V
72
82
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more information:
PRODUCT TECHNICAL INVENTORY SAMPLES
SELECTOR LIBRARY
Planar Passivated Junctions
Low Off-State Current ...........................................................> 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.
Longitudinal Balance
Figure 19 shows a three terminal TISP® device with its equivalent “delta” capacitance. Each capacitance, CTG, CRG and CTR, is the true
terminal pair capacitance measured with a three terminal or guarded capacitance bridge. If wire R is biased at a larger potential than wire T,
then CTG >CRG. Capacitance CTG is equivalent to a capacitance of CRG in parallel with the capacitive difference of (CTG - CRG). The line
capacitive unbalance is due to (CTG - CRG) and the capacitance shunting the line is CTR +CRG /2.
Figure 19.
All capacitance measurements in this data sheet are three terminal guarded to allow the designer to accurately assess capacitive unbalance
effects. Simple two terminal capacitance meters (unguarded third terminal) give false readings as the shunt capacitance via the third terminal
is included.
Asia-Pacific: Tel: +886-2 2562-4117 • Email: asiacus@bourns.com
EMEA: Tel: +36 88 885 877 • Email: eurocus@bourns.com
The Americas: Tel: +1-951 781-5500 • Email: americus@bourns.com
www.bourns.com
MARCH 1994 – REVISED JULY 2019
Specifications are subject to change without notice.
Users should verify actual device performance in their specific applications.
The products described herein and this document are subject to specific legal disclaimers as set forth on the last page of this document, and at www.bourns.com/docs/legal/disclaimer.pdf.
TISP70xxF3 (LV) Overvoltage Protector Series
APPLICATIONS INFORMATION
Typical Circuits
TIP
WIRE
F1a
R1a
Th3
GDTa
PROTECTED
EQUIPMENT
Th1
GDTb
Th2
F1b
R1b
RING
WIRE
AI7XBP
TISP7xxxF3
Figure 20. Protection Module
R1a
Th3
SIGNAL
Th1
Th2
R1b
AI7XBM
TISP7150F3
D.C.
Figure 21. ISDN Protection
OVERCURRENT
PROTECTION
TIP
WIRE
RING/TEST
PROTECTION
TEST
RELAY
RING
RELAY
S3a
R1a
COORDINATION
RESISTANCE
SLIC
RELAY
Th3
S1a
SLIC
PROTECTION
Th4
S2a
Th1
SLIC
Th2
RING
WIRE
Th5
R1b
S3b
TISP7xxxF3
S1b
S2b
TISP6xxxx,
1/2 TISP6NTP2
C1
220 nF
TEST
EQUIPMENT
RING
GENERATOR
VBAT
AI7XBN
Figure 22. Line Card Ring/Test Protection
“TISP” is a trademark of Bourns, Ltd., a Bourns Company, and is Registered in the U.S. Patent and Trademark Office.
“Bourns” is a registered trademark of Bourns, Inc. in the U.S. and other countries.
MARCH 1994 – REVISED JULY 2019
Specifications are subject to change without notice.
Users should verify actual device performance in their specific applications.
The products described herein and this document are subject to specific legal disclaimers as set forth on the last page of this document, and at www.bourns.com/docs/legal/disclaimer.pdf.
Legal Disclaimer Notice
This legal disclaimer applies to purchasers and users of Bourns® products manufactured by or on behalf of Bourns, Inc. and
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Unless otherwise expressly indicated in writing, Bourns® products and data sheets relating thereto are subject to change
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