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V3F09A200Y1EDP

Description
RESISTOR, VOLTAGE DEPENDENT, 5.6 V, 0.1 J, SURFACE MOUNT
CategoryPassive components   
File Size318KB,8 Pages
ManufacturerAVX
Download Datasheet Parametric View All

V3F09A200Y1EDP Overview

RESISTOR, VOLTAGE DEPENDENT, 5.6 V, 0.1 J, SURFACE MOUNT

V3F09A200Y1EDP Parametric

Parameter NameAttribute value
Number of terminals2
Maximum DC voltage5.6 V
Maximum effective voltage4 V
Processing package descriptionchip, 0805
Lead-freeYes
EU RoHS regulationsYes
China RoHS regulationsYes
stateACTIVE
packaging shapeRectangular PACKAGE
Terminal shapeWRAPAROUND
terminal coatingMATTE Tin
Installation featuressurface mount
Manufacturer SeriesV
Resistor typevoltage dependent resistance
Terminal layoutDouble ENDED
Maximum energy absorption capacity0.1000 J
TransFeed
AVX Multilayer Ceramic Transient Voltage Suppressors
TVS Protection and EMI Attenuation in a Single Chip
GENERAL DESCRIPTION
AVX has combined the best electrical characteristics of its
TransGuard Transient Voltage Suppressors (TVS) and its
Feedthru Capacitors into a single chip for state-of-the-art
overvoltage circuit protection and EMI reduction over a
broad range of frequencies. This unique combination of
multilayer ceramic construction in a feedthru configuration
gives the circuit designer a single 0805 chip that responds
to transient events faster than any TVS device on the mar-
ket today, and provides significant EMI attenuation when in
the off-state.
The reduction in parallel inductance, typical of the feedthru
chip construction when compared to the construction of
standard TVS or ceramic capacitor chips, gives the
TransFeed product two very important electrical advan-
tages: (1) faster “turn-on” time. Calculated response times
of <200 pSec are not unusual with this device, and mea-
sured response times range from 200 – 250 pSec. The
TransFeed “turn-on” characteristic is less than half that of
an equivalent TransGuard part — and TransGuards clamp
transient voltages faster than any other bipolar TVS solution
such as diodes; (2) the second electrical advantage of
lower parallel inductance, coupled with optimal series
inductance, is the enhanced attenuation characteristics of
the TransFeed product. Not only is there significantly
greater attenuation at a higher self-resonance frequency,
but the roll-off characteristic becomes much flatter, result-
ing in EMI filtering over a much broader frequency spec-
trum. Typical applications include filtering/protection on
Microcontroller I/O Lines, Interface I/O Lines, Power Line
Conditioning and Power Regulation.
Schematic Diagram
IN
OUT
Electrical Model
IN
L
S
R
V
L
S
C
R
ON
L
P
OUT
R
P
TYPICAL APPLICATIONS
• Fingerprint ID Circuit
• Magnetic Field Circuit
• LCD Dashboard Driver
Where designers are concerned with both transient voltage
protection and EMI attenuation, either due to the electrical
performance of their circuits or due to required compliance
to specific EMC regulations, the TransFeed product is an
ideal choice.
HOW TO ORDER
V
Varistor
2
F
Feedthru
Capacitor
1
05
Voltage
05 = 5.6VDC
09 = 9.0VDC
14 = 14.0VDC
18 = 18.0VDC
A
150
Varistor
Clamping
Voltage
150 = 18V
200 = 22V
300 = 32V
400 = 42V
500 = 50V
Y
2
DC
Resistance
1 = 0.150 Ohms
2 = 0.200 Ohms
3 = 0.250 Ohms
E
D
Packaging
Code
Pcs./Reel
D = 1,000
R = 4,000
T = 10,000
P
Chip Size
2 = 0805
3 = 0612
No. of
Elements
Energy
Rating
X = 0.05J
A = 0.1J
C = 0.3J
Capacitance
Tolerance
Y = +100/-50%
Feedthru
Current
D = 500 mA
E = 750 mA
F = 1.0 Amp
Termination Finish
P = Ni/Sn Alloy (Plated)
M = Ni/Sn Pb (Plated)
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