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BS1100N-2A1 Datasheet(PDF) 2 Page - Shenzhen Bencent Electronics Co., Ltd.

Part # BS1100N-2A1
Description  Eliminates overvoltage caused by fast rising transients
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Manufacturer  BENCENT [Shenzhen Bencent Electronics Co., Ltd.]
Direct Link  http://en.bencent.com.cn/en/home/index.asp
Logo BENCENT - Shenzhen Bencent Electronics Co., Ltd.

BS1100N-2A1 Datasheet(HTML) 2 Page - Shenzhen Bencent Electronics Co., Ltd.

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BS1100N-2A1
Specifications are subject to change without notice.
Customers should verify actual device performance in their specific applications
www.bencent.com.cn
Order Code:
BS1100N-2A1
Version: A0 2014-05-12
Thyristor Surge Suppresser
Current Waveform
5/320
μs*
10/1000
μs
Voltage Waveform
10/700
μs*
10/1000
μs
Ipp
50A
35A
Symbol
Parameter
Value
Unit
TJ
Operating Junction
Temperature Range
-40 to +150
TS
Storage Temperature
Range
-60 to +150
Parameters
Definition
VDRM
Peak Off-state Voltage
IDRM
Off-state Current
VS
Switching Voltage
IS
Switching Current
IH
Holding Current
VT
On-state Voltage
IT
On-state Current
VF
Forward on-state voltage
IF
Forward current
CO
Off-state Capacitance
BS
1100
N
- 2
A
1
(1)
(2)
(3)
(4)
(5)
(6)
(1)Bencent Semiconductor Surge Arrester
(2)Off state Voltage,e.g:1100=110
×100=110V.
(3) Package : SMB-T
(4)
2 Lines Protection
(5)
Rating Surge Voltage: 2KV (10/700
μS)
(6) Polarity: Uni-directional
Part Numbering System
Mark
Thermal Considerations
B11N2A1: Part Number
1309 :Septempter,2013
Surge Ratings
Lead Material
Copper Alloy
Body Material
UL recognized epoxy meeting
flammability classification 94V-0
Terminal Finish
100% Matte-Tin Plated
Physical Characteristics
B11N2A1
1309
-Peak pulse current rating (IPP) is repetitive and guaranteed for the life of the product;
-Bencent only makes the test for 5/320
μs@50A* (10/700μs@2KV), but for other IPP value derived from experience is just
for reference only. Bencent will not take any obligation for these parameters, so before applying our parts, please make sure
to verify the parameters listed in the above table.
V-I
Curve
IS
VS
-I
IDRM
IH
IT
VDRM
VT
-V
+ I
+V
IS
VS
-I
IDRM
IH
IT
VDRM
VT
-V
+ I
+V
IS
VS
-I
IDRM
IH
IT
VDRM
VT
-V
+ I
+V
IS
VS
-I
IDRM
IH
IT
VDRM
VT
-V
+ I
+V
IS
VS
-I
IDRM
IH
IT
VDRM
VT
-V
+ I
+V
IS
VS
-I
IDRM
IH
IT
VDRM
VT
-V
+ I
+V
VF
IF


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