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TISP3095T3BJ

Description
Silicon Surge Protector, 95V V(BO) Max, 30A, PLASTIC, SMB, MODIFIED DO-214AA, 3 PIN
CategoryAnalog mixed-signal IC    Trigger device   
File Size1MB,9 Pages
ManufacturerBourns
Websitehttp://www.bourns.com
Download Datasheet Parametric View All

TISP3095T3BJ Overview

Silicon Surge Protector, 95V V(BO) Max, 30A, PLASTIC, SMB, MODIFIED DO-214AA, 3 PIN

TISP3095T3BJ Parametric

Parameter NameAttribute value
Is it Rohs certified?incompatible
MakerBourns
Parts packaging codeDO-214AA
package instructionSMALL OUTLINE, R-PDSO-C3
Contacts2
Reach Compliance Codecompliant
ECCN codeEAR99
Other featuresUL RECOGNIZED
Maximum breakover voltage95 V
ConfigurationSERIES CONNECTED, CENTER TAP, 2 ELEMENTS
Maximum off-state DC voltage75 V
JESD-30 codeR-PDSO-C3
On-state non-repetitive peak current30 A
Number of components2
Number of terminals3
Package body materialPLASTIC/EPOXY
Package shapeRECTANGULAR
Package formSMALL OUTLINE
Peak Reflow Temperature (Celsius)NOT SPECIFIED
Certification statusNot Qualified
surface mountYES
Terminal formC BEND
Terminal locationDUAL
Maximum time at peak reflow temperatureNOT SPECIFIED
Trigger device typeSILICON SURGE PROTECTOR
*R
oH
S
CO
M
PL
IA
NT
TISP3070T3BJ THRU TISP3395T3BJ
DUAL BIDIRECTIONAL THYRISTOR OVERVOLTAGE PROTECTORS
The TISP3xxxT3BJ series
is obsolete and not
recommended for new designs.
TISP3xxxT3BJ Overvoltage Protector Series
Dual High Current Protectors in a Space Efficient
Package
- 2 x 100 A 10/560 Current Rating
- Modified 3-pin SMB (DO-214AA) Package
50 % Space Saving over Two SMBs
- Y Configurations with Two SMB Packages
2 x 80 A, 10/1000 . . . .TISP3xxxT3BJ + TISP4xxxJ1BJ
2 x 100 A, 10/700 . . . .TISP3xxxT3BJ + TISP4xxxH3BJ
Ion-Implanted Breakdown Region
- Precise and Stable Voltage
- Low Voltage Overshoot under Surge
Device
TISP3070T3
TISP3080T3
TISP3095T3
TISP3115T3
TISP3125T3
TISP3145T3
TISP3165T3
TISP3180T3
TISP3200T3
TISP3219T3
TISP3250T3
TISP3290T3
TISP3350T3
TISP3395T3
V
DRM
V
58
65
75
90
V
(BO)
V
70
80
95
SMB Package (Top View)
1
2
3
MDXXCJA
Device Symbol
1
(T or R)
3
(T or R)
100
120
135
145
155
180
190
220
275
320
.......................................UL Recognized Component
E
T
E
L
O
S
B
O
115
2
(G)
SD3TA A
125
145
165
180
200
219
250
290
350
395
Rated for International Surge Wave Shapes
Wave Shape
2/10
8/20
Standard
I
PPSM
A
250
250
150
120
100
80
GR-1089-CORE
IEC 61000-4-5
10/160
TIA/EIA-IS-968 (FCC Part 68)
ITU-T K.20/.21/.45
10/700
10/560
TIA/EIA-IS-968 (FCC Part 68)
GR-1089-CORE
10/1000
Description
These dual bidirectional thyristor devices protect central office, access and customer premise equipment against overvoltages on the
telecom line. The TISP3xxxT3BJ is available in a wide range of voltages and has an 80 A 10/1000 current rating. These protectors have
been specified mindful of the following standards and recommendations: GR-1089-CORE, TIA/EIA-IS-968, UL 60950, EN 60950, IEC
60950, ITU-T K.20, K.21 and K.45. The TISP3350T3BJ meets the FCC Part 68 “B” ringer voltage requirement (V
DRM
= ±275 V). Housed
in a 3-pin modified SMB (DO-214AA) package, the TISP3xxxT3BJ range is space efficient solution for protection designs of 80 A or less
which use multiple SMBs.
These devices allow signal voltages, without clipping, up to the maximum off-state voltage value, V
DRM
, see Figure 1. Voltages above
V
DRM
are limited and will not exceed the breakover voltage, V
(BO)
, level. If sufficient current flows due to the overvoltage, the device
switches into a low-voltage on-state condition, which diverts the current from the overvoltage through the device. When the diverted
current falls below the holding current, I
H
, level the device switches off and restores normal system operation.
How To Order
Device
TISP3xxxT3BJ
Package
BJ (3-pin modified SMB/DO-214AA J-Bend)
Carrier
R (Embossed Tape Reeled)
Order As
TISP3xxxT3BJR-S
Insert xxx value corresponding to protection voltages of 070, 080, 095, 115, etc.
*RoHS Directive 2002/95/EC Jan 27 2003 including Annex
SEPTEMBER 2001 - REVISED MAY 2011
Specifications are subject to change without notice.
Customers should verify actual device performance in their specific applications.
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