TISP3600F3 Bourns, Inc., TISP3600F3 Datasheet

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TISP3600F3

Manufacturer Part Number
TISP3600F3
Description
Dual Bidirectional Thyristor Overvoltage Protectors
Manufacturer
Bourns, Inc.
Datasheet
IEEE Std 802.3 LAN and MAN Applications
Ion-Implanted Breakdown Region
Precise and Stable Voltage
Rated for International Surge Wave Shapes
These devices are designed to limit overvoltages between systems and so protect their insulation. A single device can be used in two
ways; as a 3-point protector or as a 2-point protector. In the 3-point mode, the G terminal is connected to the system protective ground
and the R and T terminals are connected to the two conductors being protected. For the TISP3600F3, each conductor will have its volt-
age limited to ±600 V from the protective ground. The maximum inter-conductor voltage will be limited to ±1200 V.
In the 2-point mode, only the outer R and T terminals are connected and the G terminal is unconnected. The TISP3700F3 limits the volt-
age between the two connection nodes to ±1400 V with voltage limiting beginning above ±1000 V. Two TISP3700F3 devices connected
in series would allow insulation testing to ±2000 V ( 1400 Vrms ).
The protector consists of two symmetrical voltage-triggered bidirectional thyristors with a common connection. Overvoltages are normal-
ly caused by a.c. power system or lightning flash disturbances which are coupled on to the system. These 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.
The TISP3x00F3 is guaranteed to voltage limit and withstand the listed international lightning surges in both polarities.
*RoHS Directive 2002/95/EC Jan 27 2003 including Annex
NOVEMBER 1997 - REVISED JANUARY 2007
Specifications are subject to change without notice.
Customers should verify actual device performance in their specific applications.
How To Order
Description
Wave Shape
Terminals
TISP3600F3
TISP3700F3
10/1000
Device
10/160
10/700
10/560
‘3600
‘3700
2/10
8/20
Device
GR-1089-CORE
GR-1089-CORE
V
IEC 61000-4-5
420
500
ITU-T K.20/21
T &G, R&G
DRM
FCC Part 68
FCC Part 68
FCC Part 68
V
Standard
SL, Single-in-line
SL, Single-in-line
Package
V
600
700
(BO)
V
V
1000
840
DRM
V
T & R
I
175
190
110
TSP
70
50
45
A
V
1200
1400
(BO)
V
Carrier
TUBE
TUBE
TISP3600F3, TISP3700F3
DUAL BIDIRECTIONAL THYRISTOR OVERVOLTAGE PROTECTORS
TISP3600F3SL-S
TISP3700F3SL-S
Order As
SL Package (Top View)
Device Symbol
Terminals T, R and G correspond to the
alternative line designators of A, B and C
G
T
R
T
1
2
3
TISP3600F3, TISP3700F3
G
SD3XAA
R
MDXXAGB

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TISP3600F3 Summary of contents

Page 1

... In the 3-point mode, the G terminal is connected to the system protective ground and the R and T terminals are connected to the two conductors being protected. For the TISP3600F3, each conductor will have its volt- age limited to ±600 V from the protective ground. The maximum inter-conductor voltage will be limited to ±1200 V. ...

Page 2

... TISP3600F3, TISP3700F3 Absolute Maximum Ratings °C (Unless Otherwise Noted) A Repetitive peak off-state voltage, (R-G or T-G value) Non-repetitive peak on-state pulse current (see Notes 1 and 2) 2/10 (Telcordia GR-1089-CORE, 2/10 voltage wave shape) 1/20 (I TU-T K.22, 1.2/50 voltage wave shape, 25 Ω resistor) 8/ 61000-4-5, combination wave generator, 1.2/50 voltage wave shape) 10/160 (F CC Part 68, 10/160 voltage wave shape) 4/250 (I TU-T K ...

Page 3

... TISP3600F3, TISP3700F3 Electrical Characteristics for the T and R Terminals, T Parameter C Off-state capacitance f = 100 kHz, V off NOTE 3: These capacitance measurements employ a three terminal capacitance bridge incorporating a guard circuit. The third terminal is connected to the guard terminal of the bridge. Electrical Characteristics for the T and G or the R and G Terminals, T ...

Page 4

... TISP3600F3, TISP3700F3 Parameter Measurement Information -v I (BO) V Quadrant III Switching Characteristic Figure 1. Voltage-Current Characteristic for R-G and T-G Terminal Pairs V DRM -v I DRM I (BO) V (BO) Quadrant III Switching Characteristic Figure 2. Voltage-Current Characteristic for R-T Terminal Pair +i I TSP I TSM DRM ...

Page 5

... TISP3600F3, TISP3700F3 Typical Characteristics OFF-STATE CURRENT vs JUNCTION TEMPERATURE 100 0·1 0·01 0·001 - Junction Temperature - °C J Figure 3. NOVEMBER 1997 - REVISED JANUARY 2007 Specifications are subject to change without notice. Customers should verify actual device performance in their specific applications. ...

Page 6

... TISP3600F3, TISP3700F3 Thermal Information NON-REPETITIVE PEAK ON-STATE CURRENT 1.5 vs CURRENT DURATION V = 1500 V rms, 50/60 Hz GEN R = 1.4*V /I GEN GEN TSM(t) EIA/JESD51-2 ENVIRONMENT EIA/JESD51-3 PCB SIMULTANEOUS OPERATION AND T TERMINALS TERMINAL CURRENT = 2xI 0· 100 t - Current Duration - s Figure 6 ...

Page 7

... TISP4xxx protector plus the diode forward recovery voltage. Steering diodes D7 and D8 and high-voltage protector Th2 limit the conductor voltage to ground. The limiting voltage is set by the choice of protector, TISP3600F3, 1200 V or TISP3700F3, 1400 V, and the number connected in series (one extra protector Th3 shown dotted). ...

Page 8

... MΩ insulation resistance minimum requirement measured at 500 V d.c. (250 µA maximum). In Figure 8, at least one protection element of a TISP3700F3 must be used to give the 500 V working voltage (V tion resistance requirement. To avoid breakover during the 2.4 kV impulse test, five TISP3700F3 protection elements (2 packages) or six TISP3600F3 elements (2. 0.3/50 common-mode impulse. A TISP3700F3 ( the impulse. ...

Page 9

... TISP3600F3, TISP3700F3 Device Symbolization Code Devices will be coded as follows: “TISP” trademark of Bourns, Ltd., a Bourns Company, and is Registered in U.S. Patent and Trademark Office. “Bourns” registered trademark of Bourns, Inc. in the U.S. and other countries. NOVEMBER 1997 - REVISED JANUARY 2007 Specifications are subject to change without notice. ...

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