参数资料
型号: TISP61089BDR
厂商: Bourns Inc.
文件页数: 14/20页
文件大小: 0K
描述: SURGE SUPP SLIC PROG HV 8-SOP
标准包装: 2,500
电压 - 击穿: 64V
电压 - 断路: 170V
电流 - 峰值脉冲(10 x 1000µs): 30A
电流 - 保持 (Ih): 150mA
元件数: 2
电容: 100pF
封装/外壳: 8-SOIC(0.154",3.90mm 宽)
包装: 带卷 (TR)
TISP61089B High Voltage Ringing SLIC Protector
‘1089 Section 4.5.9 - Intra-Building Lightning Surge Testing
This test is for network equipment ports that do not serve outside lines. Table 3 shows the 2/10 tests used for this section. Dedicated intra-
building ports may use an R S value of 8 ? . The 8 ? value is set by the intra-building second-level a.c. testing of Section 4.5.16. Columns 9, 10
and 11 show the resultant currents for R S values of 8 ? , 25 ? and 40 ? . The listed currents are lower than the TISP61089B current rating of
2x120 A and the TISP61089B will survive these tests.
Table 3. Intra-building Lightning Surge Currents
Generator
TISP61089B I TM
Surge
#
Waveshape
Open-circuit
Voltage
V
Short-circuit
Current
A
No
of
Tests
Test
Connections
Primary
Fitted
Fictive
Source
Resistance
R s = 8 ?
A
R s = 25 ?
R s = 40 ?
?
1
2
2/10
2/10
800
1500
100
100
+1, -1
+1, -1
Transverse
Longitudinal
NA
NA
8
15
50
2x65
24
2x38
17
2x27
NOTE:
1. If the equipment contains a voltage-limiting secondary protector, the test is repeated at a voltage just below the threshold of
limiting.
‘1089 Section 4.5.11 - Current-Limiting Protector Testing
Equipment that allows unacceptable current to flow during power faults (Figure 16) shall be specified to use an appropriate current-limiting
protector. The equipment performance can be determined by testing with a series fuse, which simulates the safe current levels of a telephone
cable. If this fuse opens, the equipment allows unacceptable current flow and an external current-limiting protector must be specified. For
acceptable currents, the equipment must not allow current flows for times that would operate the simulator. The wiring simulator fuse current-
time characteristic shall match the boundary of Figure 16. A Bussmann MDQ-1 6 / 10 fuse is often specified as meeting this requirement, Figure 17.
'1089 WIRING SIMULATOR CURRENT
vs
MDQ-1 6 / 10 OPERATING CURRENT
vs
80
70
60
TIME
TI6LAG
80
70
60
AVERAGE MELT TIME
TI6LAH
50
40
30
25
20
50
40
30
25
20
15
10
8
7
6
5
4
3
2.5
2
ACCEPTABLE
REGION
UNACCEPTABLE
REGION
15
10
8
7
6
5
4
3
2.5
2
MDQ-1 6 / 10
UNACCEPTABLE
REGION
0·01
0·1
1 10
100
1000
0·01
0·1
1 10 100
1000
t - Current Duration - s
Figure 16. Wiring Simulator Current-Time
OCTOBER 2000 - REVISED JULY 2008
Specifications are subject to change without notice.
Customers should verify actual device performance in their specific applications.
t - Current Duration - s
Figure 17. MDQ-1 6 / 10 Current-Time
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