TISP61089BDR Bourns Inc., TISP61089BDR Datasheet - Page 16

SURGE SUPP SLIC PROG HV 8-SOP

TISP61089BDR

Manufacturer Part Number
TISP61089BDR
Description
SURGE SUPP SLIC PROG HV 8-SOP
Manufacturer
Bourns Inc.
Datasheet

Specifications of TISP61089BDR

Package / Case
8-SOIC (3.9mm Width)
Voltage - Breakover
*
Voltage - Off State
170V
Current - Peak Pulse (10 X 1000µs)
30A
Current - Hold (ih)
150mA
Number Of Elements
2
Capacitance
100pF
Applications
SLIC
Number Of Circuits
2
Voltage - Working
-100V
Voltage - Clamping
-112V
Technology
Mixed Technology
Breakover Current Ibo Max
6.5 A
Rated Repetitive Off-state Voltage Vdrm
170 V
Off-state Leakage Current @ Vdrm Idrm
0.005 mA
Holding Current (ih Max)
150 mA
Mounting Style
SMD/SMT
Power (watts)
-
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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Manufacturer
Quantity
Price
Part Number:
TISP61089BDR
Manufacturer:
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Quantity:
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Specifications are subject to change without notice.
Customers should verify actual device performance in their specific applications.
This test, Table 7, is for network equipment located on the customer premises. The purpose is to ensure that the feed wiring does not become
a hazard due to excessive current. This testing is similar to the Section 4.5.11 testing. If the equipment is directly wired, the wiring simulator
described in Section 4.5.11 is replaced by a one-foot section of 26 AWG wrapped in cheesecloth. The equipment fails if an open circuit occurs
or the cheesecloth is damaged.
Table 7 shows the test conditions for this section. Columns 7 and 8 show the prospective currents using R
TISP61089B to survive, the series overcurrent protection to operate before the TISP61089B current-time ratings are exceeded.
This test, Table 8, is for network equipment ports that do not serve outside lines. For standard plugable premise wiring, the wiring simulator
fuse shall be used for testing. Where direct wiring occurs, the simulator shall consist of a length of the wire used wrapped in cheesecloth. The
equipment fails if a hazard occurs or a wiring simulator open circuit occurs or the cheesecloth is damaged.
OCTOBER 2000 - REVISED JULY 2008
NOTE:
Test
‘1089 Section 4.5.15 - Second-Level Power Fault Testing for Equipment Located on the Customer Premise
‘1089 Section 4.5.16 - Second-Level Intra-Building Power Fault Testing for Equipment Located on the Customer Premise
‘1089 Section 4.5.13 - Second-Level Power Fault Testing for Central Office Equipment (Continued)
NOTE:
NOTES: 1. If the equipment contains a voltage-limiting device or a current-limiting device, these tests are repeated at a level just below the
#
1
Test
AC Duration
#
1
2
3
4
5
AC Duration
TISP61089B High Voltage Ringing SLIC Protector
900
s
1. If the equipment contains a voltage-limiting device or a current-limiting device, these tests are repeated at a level just below the
AC Duration
1. If the equipment interrupts the current before the 600 V rms level is reached, a second piece of equipment is tested. The second
2. Test 5 uses a special circuit with transformer coupled a.c. and capacitive feed.
900
thresholds of the limiting devices.
s
piece of equipment shall withstand 600 V rms applied for 900 s without causing a hazard.
thresholds of the limiting devices.
900
900
900
5
5
s
RMS Voltage
Open-circuit
0 to 600
RMS Voltage
Open-circuit
V
RMS Voltage
Open-circuit
120
V
100 to
120
277
600
600
600
600
V
Short-circuit
RMS Current
Table 7. Customer Premise Wiring Simulator Testing
RMS Current
Short-circuit
0 to 30
A
Table 6. Second-Level Power Fault Currents
Table 8. Second-Level Power Fault Currents
RMS Current
25
Short-circuit
A
0.37 to
0.09
2.2
25
60
A
7
Transverse & Longitudinal
Tests
No
of
1
Connections
Tests
No
60
of
Connections
1
1
1
1
Transverse &
Longitudinal
Test
Test
Connections
Transverse &
Transverse &
Transverse &
Transverse &
Longitudinal
Longitudinal
Longitudinal
Longitudinal
Differential
Test
Primary
Fitted
No
Primary
Fitted
Primary
No
Fitted
Resistance
No
No
No
No
No
Source
Ω Ω Ω Ω
5
Resistance
Source
Resistance
Capacitive
20
Source
Ω Ω Ω Ω
270
S
11
10
86
Ω Ω Ω Ω
5
R
values of 25 Ω and 40 Ω. For the
s
2x13
= 8 Ω
0 to 2x 19
R
TISP61089B I
s
TISP61089B I
R
= 25 Ω
2x0.09
s
2x5.7
2x7.7
2x2.9
R
2x11
2x24
A (peak)
= 25 Ω
TISP61089B I
s
2x5.7
= 25 Ω
A (peak)
A (peak)
0 to 2x 14
R
R
TM
s
TM
R
2x0.09
s
2x6.8
2x2.7
= 40 Ω Ω Ω Ω
2x3.8
2x7.7
2x17
s
= 40 Ω Ω Ω Ω
2x3.8
TM
= 40 Ω Ω Ω Ω

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