MLV Varistor Table of Contents

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1 Table of Contents Table of Contents.. - Introduction MLV Varistor Information for Designer. 4- Multilayer Varistor Introduction Part Number Identification 7-7 ML - A Series High Surge Protection ML - C Series Classification.. 9- CH Series ESD Solution Protection Varistor 3-3 Array Varistor 4-4 MOV Disc Varistor Protection.. - New Development Item Package Information Typical Application 8-8 Test Information Reliability Experiment - Recommendation for Soldering Cross Reference

2 Introduction Company Profile SFI, is trading mark and logo of SFI SFI, is trading mark and logo of SFI Electronics Technology Inc., which are Electronics Technology Inc., which are established under spiritual concept of established under spiritual concept of Innovation, Services, Quality, and Innovation, Services, Quality, and sincerity. sincerity. SFI SFI is is responsible responsible for for production production mainly mainly on on mono-chip, mono-chip, multilayer multilayer chip chip TVS, TVS, advanced advanced varistors varistors etc. etc. We We are are professional professional manufacturer manufacturer of of full full series series products products in in Taiwan. Taiwan. We We have have largest largest production production capability capability and and production production line line of of overvoltage overvoltage protection protection components components to to supply supply customer customer circuit circuit protection protection in in world world market. market. Advanced Techniques Applied In order to meet market trend and fast In order to meet market trend and fast market change, we build our R&D team to market change, we build our R&D team to control reliability and stability of control reliability and stability of products. We have been utilizing products. We have been utilizing advanced material and manufacturing advanced material and manufacturing techniques on producing electronic techniques on producing electronic elements and parts. In Taiwan, we are first elements and parts. In Taiwan, we are first company to launch Zinc Oxide (ZnO) company to launch Zinc Oxide (ZnO) based Ceramic Semiconductor devices with based Ceramic Semiconductor devices with full range and with highly advanced full range and with highly advanced multilayer formation technologies to apply multilayer formation technologies to apply high density circuit assemblies. We obtained high density circuit assemblies. We obtained many kinds of patents and awards for many kinds of patents and awards for excellent product designs, and had been excellent product designs, and had been selected by government to attend interselected by government to attend international trade fair on behalf of Taiwan. national trade fair on behalf of Taiwan. Our SFI varistors and TVSs reliably protect Our SFI varistors and TVSs reliably protect electronics systems from overvoltages by electronics systems from overvoltages by limiting surge voltages and by absorbing limiting surge voltages and by absorbing energy. They are used to safeguard energy. They are used to safeguard components, to ensure electromagnetic components, to ensure electromagnetic compatibility and suppress transients compatibility and suppress transients caused by electrostatic discharge. In or caused by electrostatic discharge. In or words y have added advantage of words y have added advantage of greater surge current and energy handling greater surge current and energy handling capabilities as well as EMI/RFI attenuation. capabilities as well as EMI/RFI attenuation. SFI varistors and TVSs have established SFI varistors and TVSs have established mselves as secure and low-cost means mselves as a secure and low-cost means of protection in general-purpose use. of protection in general-purpose use. 2

3 Transient Suppressor Major Additions and Improvements Major Additions and Improvements Multilayer Surface Mount Transient Multilayer Surface Mount Transient Suppressors (TVS) are manufactured from Suppressors (TVS) are manufactured from semiconducting ceramics by highly semiconducting ceramics by highly advanced multilayer formation technologies, advanced multilayer formation technologies, which can offer rugged protection, excellent which can offer rugged protection, excellent transient energy absorption and internal heat transient energy absorption and internal heat dissipation. The devices are leadless chip dissipation. The devices are leadless chip form, eliminating lead inductance and guaform, eliminating lead inductance and guaranteeing faster speed of response time of ranteeing a faster speed of response time of less than 0.ns, which makes m fast less than 0.ns, which makes m fast enough to ensure reliable protection against enough to ensure reliable protection against ESD pulse and or specific transient events. ESD pulse and or specific transient events. These transient suppression devices are These transient suppression devices are significantly smaller footprints and lower significantly smaller footprints and lower profiles than traditional zener diodes or radial profiles than traditional zener diodes or radial MOVs, MOVs, Material. Body material: ZnO 2. Termination: electrode termination is Ag/Ni/Sn 3. Our products meet RoHS compliant multilayer formation technologies multilayer formation technologies Section of chip Section of chip Array 08CH SFI22 SFI82 SFI SFI6 SFI080 SFI0603 SFI0402 3

4 Information for Designer Dependent Characteristic Transient Suppressors varistors are voltage-dependent electrical resistors with symmetrical V/I characteristic and breakdown region, ir resistance value decreases with increasing voltage, thus short-circuiting furr rises in over voltage. V Breakdown Region Current A The Prevention of Over voltage In or words, as long as voltage increases above threshold of TVS, suppressor will draws a rapidly increasing current, and n over voltage is considerably attenuated away from protected circuit, that is why inherent protection of equipments should be supplemented by including specific components that will raise withstand capabilities to required level. Varistors provide protection against all kinds of over voltage and prevent electronic equipment from being damaged by transient events. Circuit to be Circuit Protected to be Protected Normal State Normal State Over voltages occur Over voltages occur Circuit Circuit to be to be Protected Protected Overvoltage State 4

5 Information for Designer When selecting TVS for designing within circuit, some characteristic parameter should be considered carefully to meet circuit condition. The following guideline are recommended.. The surge handling ability of selected TVS should meet need of dissipating expected transient surge current of protected circuit. 2. The clamping voltage of selected TVS should be less than maximum allowed operating voltage of protected circuit. 3. In high speed data transmission situation. capacitance of selected TVS should be considered. 4. The special requests of TVS s capacitance such as ESD prevention are available, please contact with us.. While choosing TVS, working voltage of TVS should be greater than or equal to normal operating voltage of circuit. INPUT OUTPUT System to be Protected Over voltage System Max. allowed operating voltage Clamping Level System Rated INPUT OUTPUT 6. Protection Principle : When voltage increase above threshold of varistor, suppressor draws a rapidly increasing current. The over voltage is considerably attenuated. Transient Vc Clamping Transient voltage Transient Current Protected

6 The Introduction of Mutilayer Surface NEW Feature Full range from 0402 to 32 series Working from 2. to 0 V RMS; 3.3 to Vdc High surge current ability Bidirectional clamping, high energy Fast response time Suitable for ESD Protection Low capacitance design (<pf) for fast data transmission Array type design Very low leakage current Good solderability. MLC Series : Multilayer surface mount for wide range applications 2. MLA Series : Multilayer surface mount design for high energy and surge application 3. ESD Series : Low capacitance design for high data transmission 4. Array Series: Multilayer array series surface mount design. CH Series : Mono layer surface mount design for high voltage suppressor, working voltage could be up to Vdc 6. MOV Series : Disc type design Type L mm W Mm D mm E mm W max / max /-0. L E max /-0. D max / max / max / max /-0. 6

7 ML Series Part Number Identification. ML Series SFI 6 ML 240 C LF Lead Free A Operating voltage from 8.0V RMS.0V DC to 3.0V RMS 4.0V DC, High surge absorption, low clamping voltage. C Operating voltage from 2.V RMS 3.3V DC to 9.0V RMS 27.0V DC, Wide range application. Varistor Where V 24 V V 240 V Application Code ML Multilayer SMD Varistor Size 0402; 0603; 080; 6; ; 82; ESD Series Part Number Identification SFI E 2 N P LF Company Logo Size Unit mm Model Length(L).0 ±0..60 ± ±0. Width(W) 0.0 ± ±0..2 ±0. Thickness(T) 0.6 Max 0.9 Max.0 Max Termination(a) 0.2 ± ± ±0. MAX Working Mark 00 V 2V V Lead Free Package Mark Type P Taping C normal Cap. Tolerance Mark Range N ±% P +80%-% Exception under PF Cap. Value Where 2 = = 22(pF) Where 2R = = 2.(pF) Series ESD Protect Solution 7

8 8 MLV Varistor High Surge Protection Varistor A-series SFI Model Number Working Breakdown Peak Current Clamping Energy Absorption Typical Capacitance Unit Condition AC V RMS DC V ma (V) 8/ s (A) (A) (V) 0/000 (J) KHz (pf) SFI6ML80A SFI6ML240A SFI6ML270A* SFI6ML3A SFI6ML390A SFI6ML470A SFI6ML60A SFI6ML680A SFIML80A* SFIML240A SFIML270A SFIML3A SFIML390A SFIML470A SFIML60A* SFI82ML80A* SFI82ML240A SFI82ML270A* SFI82ML3A* SFI82ML390A* SFI82ML470A SFI82ML60A SFI22ML80A* SFI22ML240A SFI22ML270A SFI22ML3A SFI22ML390A* SFI22ML470A (.3~.7) 24(2.6~27) 27(24.3~29.8) 33(29.7~36.3) 39(3.~42.9) 47(42.3~.7) 6(0.4~6.6) 68(6.2~74.8) 8.3~ ~ ~ (29.7~36.3) 39(3.~42.9) 47(42.3~.7) 6(0.4~6.6) 8.3~ ~27 27(24.3~29.8) 33(29.7~36.3) 39(3.~42.9) 47(42.3~.7) 6(0.4~6.6) 8(.3~.7) 24(2.6~27) 27(24.3~29.8) 33(29.7~36.3) 39(3.~42.9) 47(42.3~.7) * is belong to more cold items and production schedule is more long time, please contact sales for furr request and information.

9 9 MLV Varistor Surface Mount Multi Layer C Series SFI Model Number Working Breakdown Peak Current Clamping Energy Absorption Typical Capacitance Unit Condition AC V RMS DC V ma (V) 8/ s (A) (A) (V) 0/000 s (J) KHz (pf) SFI0402ML080C SFI0402MLC SFI0402ML0C SFI0402ML80C SFI0402ML2C* SFI0402ML240C SFI0402ML270C SFI0402ML3C SFI0402ML390C* (8~) 2(0.2~3.8) (2.7~7.2) 8(.3~.7) 22(9.8~24.2) 24(2.6~26.4) 27(24.3~29.7) 33(29.7~36.3) 39(3.~42.9) SFI0603ML080C SFI0603MLC SFI0603ML0C SFI0603ML80C SFI0603ML240C SFI0603ML270C* SFI0603ML3C SFI0603ML390C SFI0603ML470C SFI0603ML60C* (8~) 2(0.2~3.8) (2.7~7.2) 8(.3~.7) 24(2.6~26.4) 27(24.3~29.7) 33(29.7~36.3) 39(3.~42.9) 47(42.3~.7) 6(0.4~6.6) SFI080ML080C SFI080MLC SFI080ML0C SFI080ML80C SFI080ML240C SFI080ML270C SFI080ML3C SFI080ML390C SFI080ML470C SFI080ML60C (8~) 2(0.2~3.8) (2.7~7.2) 8(.3~.7) 24(2.6~26.4) 27(24.3~29.7) 33(29.7~36.3) 39(3.~42.9) 47(42.3~.7) 6(0.4~6.6)

10 0 MLV Varistor Surface Mount Multi Layer C Series SFI Model Number Working Breakdown Peak Current Clamping Energy Absorption Typical Capacitance Unit Condition AC V RMS DC V ma (V) 8/ s (A) (A) (V) 0/000 s (J) KHz (pf) SFI6ML080C SFI6MLC* SFI6ML0C* SFI6ML80C* SFI6ML240C SFI6ML270C SFI6ML3C* SFI6ML390C SFI6ML470C SFI6ML60C* SFI6ML680C SFI6ML8C SFI6ML0C (8~) 2(0.2~3.8) (2.7~7.2) 8(.3~.7) 24(2.6~26.4) 27(24.3~29.7) 33(29.7~36.3) 39(3.~42.9) 47(42.3~.7) 6(0.4~6.6) 68(6.2~74.8) 82(73.8~90.2) 00(90~0) SFIMLC* SFIML0C* SFIML80C SFIML240C SFIML270C* SFIML3C SFIML390C SFIML470C* SFIML60C SFIML680C SFIML8C* SFIML0C SFIML2C (0.2~3.8) (2.7~7.2) 8(.3~.7) 24(2.6~26.4) 27(24.3~29.7) 33(29.7~36.3) 39(3.~42.9) 47(42.3~.7) 6(0.4~6.6) 68(6.2~74.8) 82(73.8~90.2) 00(90~0) (08~32)

11 Surface Mount Multi Layer C Series SFI Model Number Working Breakdown Peak Current Clamping Energy Absorption Typical Capacitance Unit Condition AC V RMS DC V ma (V) 8/ s (A) (A) (V) 0/000 s (J) KHz (pf) SFI82ML80C* 4 8(.3~.7) SFI82ML240C (2.6~26.4) SFI82ML270C* (24.3~29.7) SFI82ML3C* 26 33(29.7~36.3) SFI82ML390C 2 39(3.~42.9) SFI82ML470C* 47(42.3~.7) SFI82ML60C* 3 4 6(0.4~6.6) SFI82ML680C* (6.2~74.8) SFI82ML8C* (73.8~90.2) SFI22ML80C* SFI22ML240C* SFI22ML270C SFI22ML3C* SFI22ML390C* SFI22ML470C* SFI22ML60C* SFI22ML680C SFI22ML8C* (.3~.7) 24(2.6~26.4) 27(24.3~29.7) 33(29.7~36.3) 39(3.~42.9) 47(42.3~.7) 6(0.4~6.6) 68(6.2~74.8) 82(73.8~90.2) * is belong to cold items and production schedule is more long time, please contact sales for furr request and information.

12 MLV MLV Varistor The The Introductions of of High High Varistor MODEL NUMBER SFI Model Number MAXIMUM RATING(TA=2 ) MAX. ALLOWABLE VOLTAGE SURGE CURRENT ENERGY ABSORPTION (0/000 s) MAX. CLAMPING VOLTAGE CHARACTERISTICS(TA=2 ) VARISTOR VOLTAGE TYPICAL CAPACITANCE Thickness T AC(V RMS ) DC(V) 8/ s(a) (J) (A) (V) (V) pf(khz) (mm) 08CH2L 08CH270L* 08CH3L* (8.7~2.3) 27(22.9~3.0) 33(28.0~37.9) CH390K (3.~42.9) 8. 08CH470K* (42.3~.7) CH60K (0.4~6.6) CH680K (6.2~74.8) CH8K* (74~90). 08CH0K* (90~0) CH2K (08~32) 0. 08CHK* (3~6) 0. 08CH8K* (62~98) 0. 08CHK (80~2) 00 *. 08CH22K* (98~242) 94 *. 08CH24K* (26~264) 86 *. 08CH27K* ( ) 76 *. 08CHK* (270~3) 64 *. 08CH33K* (297~363) 2 *. 08CH36K (324~396) 4 * CH39K (3~429) 42 * CH43K (7~473) 39 * CH47K (423-7) 3 * 2.0 Type Length Width Electrode 08CH (mm) / (inch / CH Series is high voltage protection for use in hybrid circuit application in Industrial or power supply equipment utilizing surface mount devices. These devices have significantly lower profiles than radial lead varistor. Protection for 8Vdc to Vdc and more higher voltage protection. * is belong to cold item and production schedule please contact sales for furr request. (MOQ 00k-kk) 2

13 ESD Solutions Suppressor Series Electro Static discharge (ESD) is transients as short duration excursion. Our ESD products are based on Multilayer fabrication technology design to suppress ESD events. Our products meet IEC standard for Electromagnetic Compliance testing. We supply extra low capacitance and protect integrated circuits protection Feature Fast Response < 0.nS Low Working Low Capacitance0.8pF Low Leakage Current < ua Low Clamping Bi-directional Specification (for 0402 and 0603 size) XXXX=0402 and 0603 Part No, Working Clamping Leakage Current Capacitance Volume ESD Contact ESD Air (NEW) (Unit) SFIXXXX-00E0NP SFIXXXX-00E8NP* SFIXXXX-00E60NP SFIXXXX-00E3NP SFIXXXX-00E2NP SFIXXXX-00E00NP SFIXXXX-00E00PP SFIXXXX-E0NP SFIXXXX-E8NP* SFIXXXX-E60NP* SFIXXXX-E3NP SFIXXXX-E2NP* SFIXXXX-E00NP SFIXXXX-E00PP SFIXXXX-240E2RPP SFI E008PP VDC (max) Vclamp(max) ua(max) pf KV KV ~ ~ ~ ~ 8 (NEW) Specification 080 ESD low capacitance series Working Clamping Leakage Capacitance Part No, ESD Contact ESD Air Current Volume (Unit) VDC (max) Vclamp(max) ua(max) pf KV KV SFI080-00E0NP SFI080-00E60NP This Clamping at which device stabilized during transition from high to low impedance 8/ s waveform current A 2. All capacitance test under MHz, tolerance at +-%(N) exception under pf for +80% -% 3. The Leakage current was measured at working voltage 4. The Insulation Resistor was measured at working voltage more than 0Mohm. * is cold item please contact sales for more production schedule and arrangement 3

14 Array Solutions Suppressor Series The Breakage was measured at ma DC, tolerance %. 2 The Clamping was measured at 8/ s waveform, A current. 3 The Leakage Current was measured at working voltage. 4 The Insulation Resistance was measured at working voltage. The Capacitance was measured at M Hz, tolerance %. 6 Special specification requirement are available upon request, please contact sales for furr request. 4

15 Lead type Solutions Suppressor Series SFI can also supply following disc varistor. SFI Model Number Element Size mm Working Breakdown 0D 07D 0D 4D D AC DC ma(v) 80K 4 8 6~ 2K ~24 270K ~ 3K ~36 390K ~43 470K 47 42~2 60K ~62 680K ~7 8K ~90 0K ~0 2K ~32 K ~6 8K ~98 K ~22 22K ~242 24K ~264 27K ~3 K ~3 33K ~363 36K ~396 39K ~429 43K ~473 47K ~7 K ~6 6K ~66 62K 0 6 8~682 68K ~748 7K ~82 78K ~88 82K ~902 9K ~00 02K ~00 2K ~ 82K ~980 NOTES : detail specification please contact sales department

16 New Development and Product Roadmap Item SFI have strong R&D team to continual producing new overvoltage protection for Customer valued application and circuit protection. We supply customer all series protection from low voltage to high voltage and from single type to array type. Now our product roadmap are including following. More detail schedule and product specification, please contact our sales team for furr request.. Extra low capacitance (0.8pf) ESD protection ZnO chip varistor with low capacitance need very high technical to production due to high effective dielectric constant. SFI have strong technical and our current mass production item capacitance is 2.pf. We still keep continual making research for under 0.8pf capacitance for customer application. Please refer to our ESD Series for spec. information 2. 0 type surface mount design We are also making develop surface mount from 0402 to more smaller size of 0 type to meet current customer more smaller size requirement. 3. Low voltage Array series type We are also making develop item of array 008 and 062 series for breakdown voltage lower to 2.V and low capacitance request. 4. ESD and EMI function toger Array products We are also making new item of array with EMI function for customer.. NTC temperature protection product We are going to develop not only overvoltage protection but also Temperature protection for more customer circuit protection. 6

17 Packaging T D P P E B F W K T Top A P D Direction of Symbol A 0 ±0.0 B 0 ±0.0 K 0 ±0.0 T ±0.0 T 2 ±0.0 D D ±0.0 P ±0.0 P 2 ±0.0 P 0 ±0.0 W ±0. E ± CH Reel Dimensions F ±0.0 Unit mm Symbol A B C D E W W ± ±0. 3.0± ± ±0. 9.0±0.0.± ± ±0. 3.0± ± ±0. 9.0±0.0.± ± ±0. 3.0± ± ±0. 9.0±0.0.± ± ±0. 3.0± ± ±0. 9.0±0.0.± ± ±0. 3.0± ± ±0. 9.0±0.0.± ± ±0. 3.±0. 2.0± ±0. 3.6±0.2.±0. 22/08CH 78.0± ±0. 3.±0. 2.0± ±0. 3.6±0.2.±0. Pieces packaged per reel Unit mm Type / /08CH Pcs/reel /

18 Typical Application. ESD Series suggestion Device Description Data Rate &Frequency Rise time Capacitance USB 2.0 Data Port 480 M bps 0.~0.6 ns < 4pF USB. Data Port 2 M bps 4~ ns ~6pF Wireless device. M bps 7~0 ns ~6pF RS232 IrDA.0.2 K us~8 us 0~00pF Audio (Microphone/Speaker) ~K Hz 0.0mS~0 ms 0~00pF ESD series application field Mobile phone Digital Camera PDA Notebook MP3 player I/O Port, Keypad for portable LCD Module HUB Telecom Wireless LAN Keyboard 2. ML/CH series application field Telecommunication Security systems Alarm systems Medical device and equipment Lighting AC line protection Automotive system Controller Sensor Data Systems Power supplier IC, Semiconductor more application please contact SFI 8

19 Characteristic Definition Definition Characteristics Max. Working Varistor BDV BDV Max. Clamping Surge Current Surge Shift V/V V/V Energy Absorption Test Method or Description Maximum steady-state DC operating voltage device can maintain and typical leakage current at 2 2. not exceed 0 A. With specified measuring current of ma DC applied. Tolerance of breakdown voltage: ~8V= ~8V= Maximum peak voltage across TVS measured at a specified pulse current A and current A and waveform 8/ s. 8/ s. Maximum peak current within varistor voltage changeof may 0% be may applied be with applied with specified specified waveform waveform 8/ s. 8/ s. The shift of Varistor voltage after suffering specified surge current. within 0%. Maximum energy within varistor voltage change of 0% 0% may be dissipated with a specified waveform 0/000 s 0/000 s. Device Capacitance measured with zero voltage bias 0.V RMS Typical Capacitance KH Z ; under 00pf measure at Mhz; Surge series capacitance is only for reference. Nonlinear exponent exponent = log V = log V ma /V 0.mA /log I /log I ma /I /I 0.mA Leakage Current Typical leakage current at 2 0 A; 2 0 A; Maximum leakage 0 A; 0 A; Standard Test Condition Environmental Condition Environmental condition under which every measuring is done without doubt on measuring results. Unless specially specified, temperature, relative humidity are to 3, 4 to 8 RH. ma 8/ s waveform current A ESD protection waveform current IEC , EN , This generator complies with UL 449 August. 996 Table B. 9

20 Reliability Experiment Experiment High Temperature Storage/ Dry Heat Test Method and Description The specimen shall be subjected to 0 ± 2 for 000 ± 2 hours in a rmostatic bath without load and n stored at room temperature and humidity for to 2 hours. Therefore, change of varistor voltage shall be measured. Temperature Cycle The temperature cycle of specified temper -ature shall be repeated five times and n stored at room temperature and humidity for one or two hours. change of varistor voltage and mechanical damage shall be examined. Step Temperature Period -40±3 Min±3 2 Room Temperature hour 3 2±3 Min±3 4 Room Temperature hours High Temperature Load/ Dry Heat Load After being continuously applied maximum allowable voltage at 8 ± 2 for 000± 2 hours, specimen shall be stored at room temperature and humidity for one or two hours, Therefore change of varistor voltage should be measured. Damp Heat Load/ Humidity Load The specimen should be subjected to 40± 2, 90 to 9 RH and maximum allowable voltage for 00 hours and n stored at room temperature and humidity for one or two hours. Therefore change of varistor voltage should be measured. Low Temperature Storage Direct contact electrostatic discharge Direct air electrostatic discharge The specimen should be subjected to -0 ± 2, without load for 00 hours and n stored at room temperature for one or two hours. Therefore change of varistor voltage should be measured..discharge: contact electrostatic discharge; 2. 8KV Level4 3.Polarity +,- ; 4.Number: 0 times ;.Interval time sec.discharge: air electrostatic discharge; 2. KV Level4 3.Polarity +,-; 4.Number: 0 times;.interval time ~ 3sec IEC Standard SEVERITY LEVEL AIR DIRECT DISCHARGE DISCHARGE 2 KV 2 KV 2 4 KV 4 KV 3 8 KV 6 KV 4 KV 8 KV Remark: More test information please contact sales.

21 Recommendation for Soldering RoHS Compliant Soldering Recommendations Material Temperature Flux Sn/Ag/Cu 96/3./0. or equivalent 260, 0 seconds max Non Activated.. Reflow and temperature 2

22 Recommendation for Soldering 2. Major point of SMT reflow (a) Solder pad layout : please refer to. (b) Steel plate and foot distance printing Foot distance printing (mm/mils) Steel Plate thickness (mm) > 0.6mm/2 mil 0.8mm 0.6mm/2 mils~0.mm/mils 0.mm 0.0mm/ mils~0.40mm/6mils 0.2mm >=0.40 mm/6 mils 0.0mm 3. IR reflow Pb Free Process suggestion profile () The solder recommend is Sn96./Ag 3. of to 0 m (2) Ramp-up rate (27 to Peak) + 3 /second max (3) Temp. maintain at 7 +/-2 80 seconds max (4) Temp. maintain above seconds () Peak temperature range 24 + / -0 time within of actually peak temperature (tp) 0~ seconds (6) Ramp down rate +6 /second max. 22

23 SMD Varistor Cross Reference List 0402/0603/080/Array series SFI Amotech EPCOS AVX 0402ML080C AVLM020 CT0402K4 VC040X0 0402MLC AVL8M020 VC0409X0 0402ML0C AVLL ML80C AVL4K020 VC04024X0 0402ML240C AVL8K020 CT0402L4G VC04028X ML00C AVL3M030 VC0603A ML080C AVLM030 CT0603M4G VC060A0 0603MLC AVL8M030 CT0603M6G VC0609A0 0603ML0C AVLL030 CT0603L8G 0603ML80C AVL4K030 CT0603KG VC06034A0 0603ML240C AVL8K030 CT0603K4G VC060A ML270C CT0603K7G 0603ML3C CT0603KG VC060326A E0NP AVLCS E60NP AVLCS E0NP AVLC4S E60NP AVLC4S E00NP AVLC8S E2RPP AVLC8S E0NP AVLC8S E3NP AVLC8S E00NP AVLC8S E2RPP AVLC0S S00NP-A S2NP-S AVNC8S0Q0 AVNC8S06Q MG064L8X00 080ML080C AVLM0400 CT080M4G VC0800A0 080MLC CT080M6G VC08009A0 080ML0C AVLL0400 VC0802A 080ML80C AVL4K0400 CT080KG VC0804C0 080ML240C AVL8K0400 CT080K4G VC0808C ML270C AVL22K0400 CT080K7G 080ML3C AVL26K0400 CT080KG VC08026C80 080ML390C CT080K2G VC080A60 080ML470C CT080KG 23

24 SMD Varistor Cross Reference List 6//82/22/08CH series SFI Amotech EPCOS AVX SFI Amotech EPCOS AVX 6ML080C AVLM06 CT6M4G VC60A0 22ML80C CN22KG 6MLC AVL8M06 CT6M6G 22ML240C CN22K4G 6ML0C AVLL06 CT6L8G 22ML270C CN22K7G 6ML80C AVL4K06 CT6KG VC64D0 22ML3C CN22KG 6ML240C AVL8K06 CT6K4G VC68D400 22ML390C CN22K2G 6ML270C AVL22K06 CT6K7G 22ML470C CN22KG 6ML3C AVL26K06 CT6KG VC626D80 22ML60C CN22K3G 6ML390C AVL3K06 CT6K2G 22ML680C CN22K40G 6ML470C AVLK06 CT6KG VC6D60 22ML8C CN22K0G 6ML60C AVL4K06 CT6K3G 08CH80L CU322KG2 6ML680C AVL6K06 CT6K40G VC648D0 08CH240L CU322K4G2 MLC AVL8M02 CTM6G 08CH3L CU322KG2 ML0C AVLL02 CTL8G 08CH390K CU322K2G2 ML80C AVL4K02 CTKG 08CH470K CU322KG2 ML240C AVL8K02 CTK4G VC8J390 08CH680K CU322K40G2 ML270C AVL22K02 CTK7G 08CH8K CU322K0G2 ML3C AVL26K02 CTKG VC26H60 08CH0K CU322K6G2 ML390C AVL3K02 CTK2G VCG6 08CH2K CU322K7G2 ML470C AVLK06 CTKG 08CHK CU322K9G2 ML60C AVL4K02 CTK3G VC48G0 08CH8K CU322KG2 ML680C AVL6K02 CTK40G 08CHK CU322KG2 82ML80C CN82LG 08CH22K CU322K40G2 82ML240C CN82K4G 08CH24K CU322K0G2 82ML270C CN82K7G 08CH27K CU322K7G2 82ML3C CN82KG 08CH36K CU322K2G2 82ML390C CN82K2G 08CH39K CU322KG2 82ML470C CN82KG 08CH43K CU322K27G2 82ML60C CN82K3G 08CH47K CU322K0G2 24

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