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 Multilayer Chip Varistor PRODUCTS
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Multi-Layer Chip Varistors (MLV)
DESCRIPTION Yageo Multilayer Chip Varistors (MLV) are designed to protect sensitive electronics devices against high voltage transient surges in the low voltage region. They offer excellent transient energy absorption due to improved energy volume distribution and power dissipation. The wide operating voltage and energy range make them suitable for numerous applications on Vcc protection, I/O protection, Keyboard protection, LCD protection and Sensor protection...etc. FEATURES 1. Excellent clamping voltage 2. www..com Excellent energy dissipation capability 3. Quick response time (<1n sec.) 4. Adjustable capacitance values 5. High reliability 6. High transient current capability 7. Symmetrical Voltage-Current characteristics
APPLICATIONS Major application areas for Yageo's Phycomp-branded Multilayer Chip Varistors (MLV) series include: * Consumer electronic equipment * Telecommunications * Notebook
DIMENSIONS
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Fig1. outline
size
L1 1.0 0.05 1.6 0.10
W MIN.
T MAX. 0.55 0.87
L2 and L3 MIN. 0.15 0.20 MAX. 0.30 0.60
L4 0.40 0.40
0402 0603
0.5 0.05 0.8 0.07
0.45 0.73
Thickness classification and packaging quantities: Thickness Classification (mm) 0.50.05 0.80.07 8mm Tape width/ Amount per reel 180mm; 7" Paper 10000 4000
Ordering information VR S 0402 S R 55R 500 N
Code 1 Series Name VR= Varistor
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Code 8 Special Code N=Normal
Code 2 Chip Type S= Single chip
Code 7 Capacitance Value
(2 Significant Digits+No. of Zeros) The 3rd Digit is exponent Letter R is Decimal Point 0=x1 1 1=x10
Code 3 Size 0402 0603 Code 5 Packing Style R= Paper tape reel 7 inch Code 6 Working Voltage 55R=5.5V 090=9V 110=16V 140=14V 180=18V 220=22V 260=26V 300=30V 380=38V 450=45V
Code 4 Varistor voltage Tolerance K= 10%, M=20%, L=+/-15%, S=Special range
DEVICE RATING AND SPECIFICATIONS Table 1 0402
Size Phycomp Part number (Inch)
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Maximum Varistor Continuous voltage/ Voltage/ Breakdown Working Voltage Voltage DC @1mA D.C (V) (V) max. 6.4~9.6 6.4~9.6 10.2~13.8 10.2~13.8 10.2~13.8 12.75~17.25 15.3~20.7 19.8~24.2 21.6~26.4 24.3~29.7 29.7~36.3 35.1~42.9 10~14 10~14 10~14 10~14 10~14 10~14 10~14 18~24 18~24 24~32 24~32 24~32 24~32 24~32 24~32 38~46 5.5 5.5 9 9 9 11 14 16 18 22 26 30 5.5 5.5 5.5 5.5 5.5 5.5 5.5 14 14 18 18 18 18 18 18 18
Clamping Voltage
Peak current
Resistance
Capacitance @ 1 V(rms)
R.T.(15~35) 8/20s 8/20s Voltage Resistance (pF) (M) (V) (A) (A) (V) 1KHz 1MHz max. max. min. 14 15 22 22 22 27 33 40 44 49 60 71 22 22 22 22 22 22 22 38 38 51 51 51 51 51 51 76 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 30 30 20 20 20 20 20 18 14 14 10 8 2 4 6 8 9 11 65 7 15 2 2 3 5 20 20 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 3 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 1 650 330 50 100 200 180 160 120 90 82 55 40 22 33 50 68 82 100 600 50 100 82 12 15 27 120 180 3 390 200 30 60 120 110 96 72 54 50 33 24 13 20 30 41 49 60 360 30 60 49 7 9 16 72 108 1.8
VRS0402MR55R651N VRS0402MR55R331N VRS0402KR090500N VRS0402KR090101N VRS0402LR090201N VRS0402LR110181N VRS0402LR140161N VRS0402KR160121N VRS0402KR180900N VRS0402KR220820N VRS0402KR260550N VRS0402KR300400N VRS0402SR55R220N VRS0402SR55R330N VRS0402SR55R500N VRS0402SR55R680N VRS0402SR55R820N VRS0402SR55R101N VRS0402SR55R601N VRS0402SR140500N VRS0402SR140101N VRS0402SR180820N VRS0402SR180120N VRS0402SR180150N VRS0402SR180270N VRS0402SR180121N VRS0402SR180181N VRS0402SR180030N
0402 0402 0402 0402 0402 0402 0402 0402 0402 0402 0402 0402 0402 0402 0402 0402 0402 0402 0402 0402 0402 0402 0402 0402 0402 0402 0402 0402
0603
Size Phycomp Part number (Inch) VRS0603MR55R801N VRS0603MR55R681N www..com VRS0603MR55R301N VRS0603LR090681N VRS0603LR110481N VRS0603LR140361N VRS0603KR180301N VRS0603KR220241N VRS0603KR260201N VRS0603KR300121N VRS0603KR380101N VRS0603KR450800N VRS0603SR180121N VRS0603SR180100N 0603 0603 0603 0603 Maximum Varistor Continuous voltage/ Voltage/ Breakdown Working Voltage Voltage DC @1mA D.C (V) (V) max. 6.4~9.6 6.4~9.6 6.4~9.6 10.2~13.8 5.5 5.5 5.5 9 11 14 18 22 26 30 38 45 18 18 Clamping Voltage Peak current Resistance Capacitance @ 1 V(rms)
R.T.(15~35) 8/20s 8/20s Voltage Resistance (pF) (M) (V) (A) (A) (V) 1KHz 1MHz max. max. min. 15 15 15 22 27 33 44 49 60 70 85 100 50 225 1 1 1 1 1 1 1 1 1 1 1 1 1 1 30 30 30 30 30 30 30 30 30 30 20 20 20 5 3 3 3 3 3 3 3 3 3 3 3 3 3 3 1 1 1 1 1 1 1 1 1 1 1 1 1 1 800 680 300 680 480 360 300 240 200 120 100 80 120 10 480 410 180 410 290 216 180 144 120 72 60 48 72 6
0603 12.75~17.25 0603 0603 0603 0603 0603 0603 0603 0603 0603 15.3~20.7 21.6~26.4 24.3~29.7 29.7~36.3 35.1~42.9 42.3~51.7 50.4~61.6 24~32 90~160
STANDARD TESTING CONDITION Temperature : 15~35 Humidity: 25%RH~85%RH Atmospheric pressure: 86~106 kPa
VRS0402SR55R500N Clamping Voltage Spec. 22 Typical 20.8V
Fig2. Clamping Volatge
*
ESD Test -. Standard IEC 61000-4-2 -. ESD discharge circuit according to IEC 61000-4-2
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Fig3. ESD discharge circuit
-. ESD discharge current according to IEC 61000-4-2 as fig 4
-. Specification of Electrostatic discharge (ESD) Test: According to Standard EN 61000-4-2 , Up to 15KV(Air discharge).
*
APPLICATION EXAMPLES
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Fig 5.Appl. Example
*
Test Condition and Test Method
CECC 42000 4.6 4.7 IEC 1051-1 Capacitance Measuring frequency: 1KHz Measuring voltage: 1.0 Volt Measuring temperature: 25C 4.9 4.10 Bending To be soldered on the glassepoxy (thickness 1.6mm), the load shall be put on the board bends 1mm. 4.10 4.11 Solderability Solder bath temp. : 2355 C 2.Immersion time : 20.5s 4.10.2 4.12 Resistance to soldering heat 4.12 4.13 1.Solder bath temp. : 2605 C 2.Immersion time : 100.5 s Dissolution of the each terminations shall not exceed 10% V1mA/V1mA<10% No mechnical damage shall be caused. Test item Test condition / Test method Specification
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Rapid change of -40 to +85, 5 cycles with 30 V1mA/V1mA<10% Temperature minutes duration 40,90~95% RH with Max. Operating Voltage for 500+/-12 hrs V1mA/V1mA<10%
4.17
4.18
Damp heat
4.19
4.20
Endurance
85 with Max. Operating Voltage for 500+/-12 hrs
V1mA/V1mA<10%
4.20
4.20
Endurance at upper category temperature Adhesion
852 for 1000+/-12hrs.
V1mA/V1mA<10%
Solder chip on PCB and applied No visible damage. 2N(0.2Kg) for 10 seconds
Cold temperature storage
-402 for 1000 +/-12hrs.
V1mA/V1mA<10%
After each test has been done, the tested chips shall be left in room ambient for 1~2 hours then measure the breakdown voltage.
*
Competitor Cross Reference
Yageo part number Innochips ICVN0505X150 ICVN0509X200 V9MLA0402 V5.5MLA0402L V14MLA0402 ICVN0514X300 AVL18K02200 V18MLA0402 AVR-M1005C270M-AAB ICVN0518X400 AVLC5S02050 AVLC5S02100 AVLC14S02050 AVLC14S02100 CT0402L14G VC040218X400 Littelfuse TDK Amotech AVL5M02200 AVL8M02200 AVL11L02200 AVL14K0200 VC040214X300 EPCOS AVX VC040205X150 VC040209X200
VRS0402MR55R331N VRS0402LR090201N VRS0402LR110181N VRS0402LR140161N VRS0402KR160121N VRS0402KR180900N VRS0402KR220820N www..com VRS0402KR260550N
AVR-M1005C080M-AAB V5.5MLA0402 AVR-M1005C080M-ADB AVR-M1005C120M-AAB
VRS0402SR55R500N ICVL0505600V150 VRS0402SR55R101N ICVL0505101V150 VRS0402SR140500N VRS0402SR140101N VRS0402SR180120N ICVL0518100Y500 VRS0402SR180150N ICVL0518150Y500 VRS0402SR180270N ICVL0518400Y500 VRS0402SR300030N VRS0603MR55R801N VRS0603LR090681N VRS0603LR110481N VRS0603LR140361N VRS0603KR180301N VRS0603KR220241N VRS0603KR260201N VRS0603KR300121N VRS0603KR380101N ICVN1030A650 ICVN1026A580 V26MLA0603 V30MLA0603 ICVN1018A400 V18MLA0603 AVR-M1608C270K-6AB AVR-M1608C270K-2AB ICVN1014A300 ICVL0518030 ICVN1005A150 ICVN1009A200 V9MLA0603 V14MLA0603 AVR-M1608C180M-6AB V5.5MLA0603 AVR-M1608C080M-AAB AVR-M1608C120M-6AB AVR-M1608C120M-2AB
AVLC18S02015
AVLC18S02003 AVL5M03300 AVL8M03300 AVL11L03300 AVL14K03300 AVL18K03300 CT0603M4G VC060305A150 CT0603M6G VC060309A200 CT0603L8G CT0603K11G VC060314A300 CT0603K14G VC060318A400 CT0603K17G CT0603K20G VC060326A580
* Soldering condition Typical examples of soldering processes that provide reliable joints without any damage are given in fig. 6, 7 & 8
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