VG181216P400 [KYOCERA AVX]
Glass Encapsulated TransGuard; 玻璃封装TransGuard型号: | VG181216P400 |
厂家: | KYOCERA AVX |
描述: | Glass Encapsulated TransGuard |
文件: | 总2页 (文件大小:75K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
®
Glass Encapsulated TransGuard
GENERAL DESCRIPTION
The Glass Encapsulated TransGuard® multilayer varistors are
zinc oxide (ZnO) based ceramic semiconductor devices with
non-linear, bi-directional V-I characteristics.
They have the advantage of offering bi-directional
overvoltage protection as well as EMI/RFI attenuation in a
single SMT package.
These large case size parts extend TransGuard range into
high energy applications. In addition the glass encapsulation
provides enhanced resistance against harsh environment or
process such as acidic environment, salts or chlorite flux.
GENERAL
APPLICATIONS
FEATURES
• Bi-Directional protection
• EMI/RFI attenuation in off-state
• Multi-strike capability
• Sub 1nS response to ESD strike
• High energy / High current
• Glass Encapsulated
CHARACTERISTICS
• Proffesional / Industrial / Commercial Applications
• IC Protection, DC motor protection
• Relays, Controllers, Sensors
• Smart Grids
• Alarms and more
• Various Applications where Glass Encapsulation is
Needed for Harsh Environment / Acid-Resistance
Operating Temperature:
-55ºC to 125ºC
HOW TO ORDER
V
G
1812
16
P
400
R
P
Varistor
Glass
Encapsulate
Chip
Chip Size
1210
Working
Voltage
Engergy
Rating
Clamping
Voltage
Package
D = 7" reel
R = 7" reel
T = 13" reel
Termination
P = Ni/Sn plated
1ꢀ12
16 = 16Vdc
22 = 22Vdc
3ꢀ = 3ꢀVdc
65 = 65Vdc
S = 2.0J
400 = 42V
2220
P = 2.7-3.0J 440 = 44V
U = 4.0-5.0J 770 = 77V
Y = 7.2-12J
131 = 135V
PHYSICAL DIMENSIONS: mm (inches)
Size (EIA)
Length (L)
Width (W)
Max Thickness (T)
Land Length (t)
3.20 0.20
(0.126 0.00ꢀ)
4.50 0.30
(0.177 0.012)
5.70 0.40
2.49 0.20
(0.09ꢀ 0.00ꢀ)
3.20 0.30
(0.126 0.012)
5.00 0.40
1.70
(0.067)
2.00
(0.079)
2.50
0.14 max.
(0.045 max.)
1.00 max.
(0.040 max.)
1.00 max.
1210
1812
2220
(0.224 0.016)
(0.197 0.016)
(0.09ꢀ)
(0.040 max.)
1
®
Glass Encapsulated TransGuard
ELECTRIAL CHARACTERISTICS
AVX PN
VW (DC) VW (AC)
VB
VC
42
42
44
77
77
77
135
IVC
5
10
2.5
2.5
5
IL
ET
2.9
7.2
1.7
2
4.2
12
2.7
IP
Cap
Freq
K
K
K
K
K
K
K
VG1ꢀ1216P400
VG222016Y400
VG121022R440
VG12103ꢀS770
VG1ꢀ123ꢀU770
VG22203ꢀY770
VG121065P131
16
16
22
3ꢀ
3ꢀ
3ꢀ
65
11
11
17
30
30
30
50
24.5 10ꢂ
24.5 10ꢂ
27 10ꢂ
47.0 10ꢂ
47.0 10ꢂ
47.0 10ꢂ
ꢀ2.0 10ꢂ
10
10
10
15
15
15
15
1000
1500
400
400
ꢀ00
5000
13000
1600
1000
1300
4200
600
10
2.5
2000
350
VW(DC)
VW(AC)
VB
DC Working Voltage [V]
AC Working Voltage [V]
Typical Breakdown Votage [V @ 1mADC, 25°C]
Clamping Voltage [V @ IIVC
ET
IP
Cap
Transient Energy Rating [J, 10x1000ꢁS]
Peak Current Rating [A, ꢀx20ꢁS]
Typical capacitance [pF] @ frequency specified
and 0.5VRMS, 25°C, M = 1MHz, K = 1kHz
VC
]
IVC
IL
Test Current for VC [A, ꢀx20μs]
Maximum leakage current at the working
voltage, 25°C [ꢁA]
2
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