TISP4P015L1N [BOURNS]

LOW CAPACITANCE BIDIRECTIONAL THYRISTOR OVERVOLTAGE PROTECTOR;
TISP4P015L1N
型号: TISP4P015L1N
厂家: BOURNS ELECTRONIC SOLUTIONS    BOURNS ELECTRONIC SOLUTIONS
描述:

LOW CAPACITANCE BIDIRECTIONAL THYRISTOR OVERVOLTAGE PROTECTOR

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TISP4P015L1N THRU TISP4P035L1N  
LOW CAPACITANCE  
BIDIRECTIONAL THYRISTOR OVERVOLTAGE PROTECTOR  
TISP4P0xxL1N Overvoltage Protector Series  
SOT23-5 Package (Top View)  
Designed for ADSL, ADSL2, VDSL, VDSL2 protection  
Ion-Implanted Breakdown Region  
- Precise and Stable Voltage  
(Tip)  
NU  
1
2
3
5
4
(Tip)  
Low Voltage Overshoot Under Surge  
Low Off-State Capacitance  
(Ring)  
(Ring)  
VDRM  
V(BO)  
V
Device Name  
V
TISP4P015L1N  
TISP4P020L1N  
TISP4P025L1N  
TISP4P035L1N  
8
15  
20  
25  
35  
Terminal typical application names  
shown in parenthesis.  
NU - Non-usable; no external electrical  
connection should be made to this terminal.  
12  
16  
24  
MD-SOT23-5-001-a  
Rated for International Surge Wave Shapes  
Device Symbol  
IPPSM  
Wave Shape  
Standard  
A
(Tip)  
8/20  
IEC 61000-4-5  
30  
18  
10/1000  
GR-1089-CORE  
Description  
This range of devices is designed to protect xDSL line-driver  
interfaces from overvoltages up to rated limits. Overvoltages are  
normally caused by a.c. power-system or lightning-flash distur-  
bances which are induced or conducted onto the telephone line.  
These symmetrical protectors are two-terminal thyristor-crowbar  
devices. They can be used to protect between conductors, or a  
pair of devices can be deployed to protect from line to ground.  
(Ring)  
SD-TISP4-002-a  
When placed between the xDSL line driver IC and the transformer, this protector will clamp and switch into a low-impedance state,  
safely diverting the energy transferred by the xDSL coupling transformer. The low capacitance design makes this device suitable for  
designs from ADSL all the way up to 30 MHz VDSL2.  
Telecom ports need protection against Common Mode (Longitudinal) and Differential (Metallic) surges, to comply with international  
standards such as ITU-T K.20, K.21 or K.45, Telcordia GR-1089-CORE and YD/T. Common Mode surges are resisted by the galvanic  
isolation of the coupling transformer which is commonly rated to 2 kV or greater. Differential surges can be transmitted by the  
transformer, and can stress the Line Driver Interface IC. As the xDSL interface circuit is designed to operate from 3 kHz to to 30 MHz,  
nearby high frequency events - such as cable flashover or primary protection activation - can generate damaging conditions for the  
interface requiring this type of protection.  
Please contact your Bourns representative if the protection voltage you require is not listed.  
How to Order  
Device  
Package  
Carrier  
Order As  
Marking Code  
Reel Quantity  
TISP4P0xxL1N  
SOT23-5  
Embossed Tape Reeled  
TISP4P0xxL1NR-S  
Pxx  
10000  
Insert xx corresponding to device name.  
OCTOBER 2009  
*RoHS Directive 2002/95/EC Jan 27 2003 including Annex.  
Specifications are subject to change without notice.  
Customers should verify actual device performance in their specific applications.  
TISP4P0xxL1N Overvoltage Protector Series  
Absolute Maximum Ratings, T = 25 °C (Unless Otherwise Noted)  
A
Rating  
Symbol  
Value  
Unit  
‘4P015L1N  
‘4P020L1N  
‘4P025L1N  
‘4P035L1N  
±±  
±12  
±1ꢀ  
±24  
VDRM  
Repetitive peak off-state voltage  
V
Non-repetitive peak impulse current (see Notes 1, 2 and 3)  
IPPSM  
A
±/20 µs (IEC ꢀ1000-4-5, 1.2/50 µs voltage, ±/20 current combination wave generator)  
10/1000 µs (GR-10±9-CORE, 10/1000 µs voltage wave shape)  
±30  
±1±  
Junction temperature  
TJ  
-40 to +150  
-ꢀ5 to +150  
°C  
°C  
Storage temperature range  
Tstg  
NOTES: 1. Initially the device must be in thermal equilibrium with T = 25 °C.  
J
2. The surge may be repeated after the device returns to its initial conditions.  
3. Rated currents only apply if pins 1 & 5 (Tip) are connected together and pins 3 & 4 (Ring) are connected together.  
Electrical Characteristics, T = 25 °C (Unless Otherwise Noted)  
A
Parameter  
Test Conditions  
Min Typ Max Unit  
IDRM  
Repetitive peak off-state current  
VD = VDRM  
±1  
µA  
‘4P015L1N  
‘4P020L1N  
‘4P025L1N  
‘4P035L1N  
±15  
±20  
±25  
±35  
V
V(BO)  
Breakover voltage  
dv/dt = ±250 V/ms, RSOURCE = 300 Ω  
±30  
±10  
±30  
±30  
‘4P015L1N  
‘4P020L1N  
‘4P025L1N  
‘4P035L1N  
IH  
Holding current  
Off-state capacitance  
Delta-capacitance  
IT = ±5 A, di/dt = ±30 mA/ms  
mA  
‘4P015L1N  
‘4P020L1N  
‘4P025L1N  
‘4P035L1N  
‘4P015L1N  
‘4P020L1N  
‘4P025L1N  
‘4P035L1N  
ꢀ.5  
5.5  
3.5  
2
2.5  
3
2
CO  
ΔC  
f = 1 MHz, Vd = 1 V rms, VD = 2 V  
f = 1 MHz, Vd = 1 V rms, VD = 1 V to VDRM  
pF  
pF  
OCTOBER 2009  
Specifications are subject to change without notice.  
Customers should verify actual device performance in their specific applications.  
TISP4P0xxL1N Overvoltage Protector Series  
Parameter Measurement Information  
+i  
IPPSM  
Quadrant I  
Switching  
Characteristic  
ITSM  
ITRM  
IT  
V(BO)  
VT  
I(BO)  
IH  
V(BR)  
I(BR)  
V(BR)M  
IDRM  
VDRM  
VD  
ID  
+v  
-v  
ID  
VD  
VDRM  
I(BR)  
V(BR)  
IDRM  
V(BR)M  
IH  
I(BO)  
VT  
V(BO)  
IT  
ITRM  
ITSM  
Quadrant III  
Switching  
Characteristic  
IPPSM  
PM-TISP4xxx-001-a  
-i  
Figure 1. Voltage-Current Characteristic for Tip and Ring Terminals  
All Measurements are Referenced to the Ring Terminal  
OCTOBER 2009  
Specifications are subject to change without notice.  
Customers should verify actual device performance in their specific applications.  
TISP4P0xxL1N Overvoltage Protector Series  
Typical Characteristics  
CAPACITANCE  
vs  
OFF-STATE VOLTAGE  
10  
TC-4PN-001  
f = 1 MHz  
Vd = 1 VRMS  
9
8
7
6
5
4
3
2
1
0
TJ = 25 °C  
TISP4P015L1N  
TISP4P020L1N  
TISP4P025L1N  
TISP4P035L1N  
0
2
4
6
8
10 12 14 16 18 20 22 24  
VD - Off-State Voltage - V  
OCTOBER 2009  
Specifications are subject to change without notice.  
Customers should verify actual device performance in their specific applications.  
TISP4P0xxL1N Overvoltage Protector Series  
VDSL Application Examples  
MF-RX018-250  
TIP  
+ tº  
Tx  
Rx  
TISP4400M3  
Ring  
xDSL transceiver  
TISP4P035L1N  
Figure 3.  
MF-RX018-250  
TIP  
+ tº  
Tx  
Rx  
TISP4400M3  
Ring  
xDSL transceiver  
TISP4P020L1N  
Figure 4.  
TIP  
Tx  
Rx  
2035-35-SM  
Ring  
xDSL transceiver  
CD143A-SR70  
TISP4P035L1N  
Figure 5.  
Recommended PCB Layout  
PCB Track  
T
NU  
R
1
2
3
T
5
4
PCB Track  
R
MD-SOT223-5-xxx  
Figure 6.  
OCTOBER 2009  
Specifications are subject to change without notice.  
Customers should verify actual device performance in their specific applications.  
Bourns Sales Offices  
Region  
Phone  
Fax  
The Americas:  
Europe:  
+1-951-781-5500  
+41-41-7685555  
+886-2-25624117  
+1-951-781-5700  
+41-41-7685510  
+886-2-25624116  
Asia-Pacific:  
Technical Assistance  
Region  
Phone  
Fax  
The Americas:  
Europe:  
+1-951-781-5500  
+41-41-7685555  
+886-2-25624117  
+1-951-781-5700  
+41-41-7685510  
+886-2-25624116  
Asia-Pacific:  
www.bourns.com  
Bourns® products are available through an extensive global network of representatives, agents and distributors.  
To obtain technical applications assistance, a quotation, or to place an order, contact a Bourns representative in your area.  
“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.  

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