Vigezo vikuu vya kiufundi
Kigezo cha Kiufundi
♦ Bidhaa za V-CHIP zenye uimara mdogo, nyembamba na zenye uwezo mkubwa
♦ Saa 2000~5000 kwa joto la 105℃
♦ Inatii Mawasiliano ya Maelekezo ya AEC-Q200 RoHS
♦Inafaa kwa ajili ya kupachika uso kiotomatiki kwa msongamano mkubwa wa juu kwa kutumia solder ya joto la juu
Vigezo vikuu vya kiufundi
| Mradi | sifa | ||||||||||||
| Kiwango cha halijoto ya uendeshaji | ≤100V -55~+105℃ ; 160V -40~+105℃ | ||||||||||||
| Kiwango cha volteji cha nominella | 6.3-160V | ||||||||||||
| Uvumilivu wa uwezo | ±20% (25±2℃ 120Hz) | ||||||||||||
| Mkondo wa uvujaji (uA) | 6.3-100WV≤0.01 CV au 3uA yoyote iliyo kubwa zaidi C: Uwezo wa kawaida (uF) V: Volti iliyokadiriwa (V) Usomaji wa dakika 2 | ||||||||||||
| 160WV ≤O.O2CV+1O(uA) C: uwezo wa kawaida uF) V: volteji iliyokadiriwa (V) Usomaji wa dakika 2 | |||||||||||||
| Hasara ya Kupungua (25±2)℃120Hz) | Volti iliyokadiriwa (V) | 6.3 | 10 | 16 | 25 | 35 | 50 | 63 | 80 | 100 | 160 |
| |
| tg 6 | 0.26 | 0.19 | 0.16 | 0.14 | 0.12 | 0.12 | 0.12 | 0.12 | 0.12 | 0.14 | |||
| Ikiwa uwezo wa kawaida unazidi 1000uF, thamani ya hasara ya tangent itaongezeka kwa 0.02 kwa kila ongezeko la 1000uF | |||||||||||||
| Sifa za Halijoto (120Hz) | Volti iliyokadiriwa (V) | 6.3 | 10 | 16 | 25 | 35 | 50 | 63 | 80 | 100 | 160 | ||
| Uwiano wa Impedans Z(-40℃)/Z(20℃) | 3 | 3 | 3 | 3 | 3 | 3 | 5 | 5 | 5 | 5 | |||
| Uimara | Katika oveni kwa 105°C, baada ya kutumia volteji iliyokadiriwa kwa muda maalum, iweke kwenye joto la kawaida kwa saa 16 kisha uijaribu. Joto la jaribio ni 25±2°C. Utendaji wa capacitor unapaswa kukidhi mahitaji yafuatayo. | ||||||||||||
| Kiwango cha mabadiliko ya uwezo | Ndani ya ±30% ya thamani ya awali | ||||||||||||
| mshale wa hasara | Chini ya 300% ya thamani iliyotajwa | ||||||||||||
| mkondo wa uvujaji | Chini ya thamani iliyobainishwa | ||||||||||||
| muda wa mzigo | ≤Φ10 Saa 2000 | ||||||||||||
| hifadhi ya halijoto ya juu | Hifadhi kwa 105°C kwa saa 1000, jaribu baada ya saa 16 kwenye halijoto ya kawaida, halijoto ya jaribio ni 25±2°C, utendaji wa capacitor unapaswa kukidhi mahitaji yafuatayo. | ||||||||||||
| Kiwango cha mabadiliko ya uwezo | Ndani ya ±20% ya thamani ya awali | ||||||||||||
| mshale wa hasara | Chini ya 200% ya thamani iliyotajwa | ||||||||||||
| mkondo wa uvujaji | Chini ya 200% ya thamani iliyotajwa | ||||||||||||
Mchoro wa Vipimo vya Bidhaa
Vipimo vya Bidhaa (Kitengo:mm)
| ΦD | L | B | C | A | H | E | K | a |
| 4 | 5.8 | 4.3 | 4.3 | 1.8 | 0.75±0.10 | 1 | 0.5MAX | ± 0.3 |
| 5 | 5.8 | 5.3 | 5.3 | 2.1 | 0.75±0.10 | 1.5 | 0.7MAX | ± 0.3 |
| 6.3 | 5.8 | 6.6 | 6.6 | 2.6 | 0.75±0.10 | 1.8 | 0.7MAX | ± 0.3 |
| 6.3 | 7.7 | 6.6 | 6.6 | 2.6 | 0.75±0.10 | 1.8 | 0.7MAX | ± 0.4 |
| 8 | 10 | 8.3 | 8.3 | 3.4 | 0.90±0.20 | 3.1 | 0.7MAX | ± 0.5 |
| 10 | 10 | 10.3 | 10.3 | 3.5 | 0.90±0.20 | 4.4 | 0.7MAX | ± 0.7 |
| 12.5 | 13.5 | 13 | 13 | 4.7 | 0.90±0.30 | 4.4 | 0.7MAX | ± 1.0 |
| 12.5 | 14.5 | 13 | 13 | 4.7 | 0.90±0.30 | 4.4 | 0.7MAX | ± 1.0 |
| 12.5 | 16.5 | 13 | 13 | 4.7 | 0.90±0.30 | 4.4 | 0.7MAX | ± 1.0 |
| 12.5 | 21 | 13 | 13 | 4.7 | 0.90±0.30 | 44 | 0.7MAX | ± 1.0 |
| 16 | 16.5 | 17 | 17 | 5.5 | 1.20±0.30 | 6.7 | 0.70±0.30 | ± 1.0 |
| 16 | 21 | 17 | 17 | 5.5 | 1.20±0.30 | 6.7 | 0.70±0.30 | ± 1.0 |
| 18 | 16.5 | 19 | 19 | 6.7 | 1.20±0.30 | 6.7 | 0.70±0.30 | ± 1.0 |
| 18 | 21 | 19 | 19 | 6.7 | 1.20±0.30 | 6.7 | 0.70±0.30 | ± 1.0 |
Mgawo wa urekebishaji wa masafa ya mkondo wa ripple
| Masafa (Hz) | 50 | 120 | 1K | 310K |
| mgawo | 0.35 | 0.5 | 0.83 | 1 |
Mfululizo wa YMIN V3M: Vidhibiti vya Elektroliti vya Alumini vya Utendaji wa Juu Sana Vinavyoweka Nguvu Vifaa vya Kielektroniki vya Kisasa vya Uzito wa Juu
Katika tasnia ya vifaa vya elektroniki inayobadilika kwa kasi ya leo, uundaji mdogo, ufanisi, na uaminifu vimekuwa mitindo isiyoweza kurekebishwa. Kuanzia magari mapya ya nishati ya kasi kubwa hadi vituo vya data vya AI vya saa 24/7, kuanzia kuchaji haraka kwa PD katika nyumba mahiri hadi roboti za viwandani za usahihi, programu hizi za hali ya juu huweka mahitaji magumu kwa sehemu yao kuu—kifaa cha kuchaji: lazima kitoe nguvu thabiti na nyingi ndani ya nafasi ndogo sana na kuhimili majaribio makali ya halijoto ya juu na mkondo wa juu wa mawimbi. Ili kushughulikia hili, YMIN Electronics, kwa kutumia msingi wake wa kina wa Utafiti na Maendeleo na michakato ya kisasa ya utengenezaji, inazindua kwa fahari mfululizo wa V3M wa vifaa vya kupokezana vya alumini vya elektroliti vya kupachika uso. Bidhaa hii si tu kilele cha uvumbuzi wa kiteknolojia bali pia ni mshirika mwenye nguvu kwa wahandisi wanaoshughulikia changamoto tata za muundo.
I. Uwekaji Nafasi Sahihi: "Jiwe la Pembeni la Nishati" Lililozaliwa kwa ajili ya Kuweka Sehemu ya Juu ya Msongamano
Mfululizo wa V3M hushughulikia sehemu muhimu ya uchungu katika muundo wa kisasa wa PCB (Bodi ya Mzunguko Iliyochapishwa)—matumizi ya nafasi. Vipokezi vya elektroliti vya jadi vyenye risasi havitoshi tena kukidhi mahitaji ya utengenezaji wa kiotomatiki na msongamano mkubwa wa uso. Mfululizo wa V3M hutumia kifungashio cha kawaida cha SMD (Kifaa cha Kuweka Uso), chenye muundo mdogo na mwembamba unaobadilika kikamilifu kwa michakato ya kusubu upya, kuwezesha uzalishaji otomatiki wa kasi ya juu na usahihi wa hali ya juu na kuboresha kwa kiasi kikubwa ufanisi na uthabiti wa uzalishaji.
Kipengele kinachoonekana zaidi cha mfululizo huu ni teknolojia yake ya V-CHIP, ambayo hutoa "uingizaji mdogo, wasifu mwembamba, na uwezo mkubwa." Hii ina maana kwamba, ndani ya ukubwa sawa, vipachikaji vya V3M vinaweza kutoa uwezo mkubwa kuliko bidhaa za kawaida, kuhakikisha ulainishaji mzuri wa mabadiliko ya volteji katika saketi muhimu kama vile kuchuja usambazaji wa umeme na vihifadhi vya kuhifadhi nishati, kutoa usambazaji wa nishati safi na thabiti kwenye chipu. Kiwango chake kikubwa cha halijoto ya uendeshaji, kikiwa na mifumo ya kawaida inayofunika -55℃ hadi +105℃, na hata mifumo ya volteji ya juu ya 160V inayofanya kazi kwa utulivu kutoka -40℃ hadi +105℃, inaonyesha uwezo bora wa kubadilika kimazingira.
II. Teknolojia Kuu Imesimbwa: Usaidizi Mango Nyuma ya Utendaji Bora
1. Muda Mrefu wa Maisha na Uimara:
Mfululizo wa V3M unajivunia muda wa kubeba mzigo wa saa 2000 hadi 5000 katika halijoto kali ya 105°C. Hii si kiashiria cha maabara tu; inatafsiri moja kwa moja katika uwezo wa kifaa kufanya kazi kwa muda mrefu bila matengenezo katika mazingira halisi. Iwe ni kitengo cha kudhibiti sehemu ya injini ya gari kinachofanya kazi katika mazingira yenye halijoto ya juu au usambazaji wa umeme wa seva unaohitaji uendeshaji endelevu wa mzigo kamili, V3M inahakikisha uthabiti wa capacitor wa muda mrefu, na kupunguza kwa ufanisi viwango vya hitilafu za mfumo.
2. Uingizaji wa Chini na Uwezo wa Kuhimili Mkondo wa Ripple wa Juu:
Impedansi ni kigezo muhimu cha kupima utendaji wa capacitor. Impedansi ya chini inamaanisha kasi ya mwitikio wa haraka na upotevu mdogo wa nishati katika masafa ya juu. Mfululizo wa V3M unapata sifa bora za chini za impedansi kupitia teknolojia ya hali ya juu ya foil ya elektrodi na elektroliti. Kinachosaidia hii ni uwezo wake wa juu wa mkondo wa ripple. Mkondo wa ripple ndio chanzo kikuu cha kupasha joto capacitor. Uvumilivu mkubwa wa V3M unamaanisha kuwa inaweza kudumisha halijoto ya chini chini ya mkondo unaobadilika sana, ambao sio tu unaboresha ufanisi wa mfumo mzima wa umeme lakini pia unaongeza zaidi maisha yake yenyewe na vipengele vinavyoizunguka.
3. Ubora na Uzingatiaji Kali:
Mfululizo wa V3M unatii kikamilifu maagizo ya RoHS, na kuifanya kuwa chaguo linalopendelewa kwa miundo rafiki kwa mazingira. Muhimu zaidi, mifumo mingi katika mfululizo huu imepitisha cheti cha uaminifu wa vifaa vya elektroniki vya magari cha AEC-Q200. Cheti hiki ni "pasipoti" ya mnyororo wa usambazaji wa vifaa vya elektroniki vya magari, ikimaanisha kuwa vidhibiti vya V3M vimepitia mfululizo wa majaribio makali ya mkazo, ikiwa ni pamoja na mzunguko wa halijoto, maisha ya mzigo, na upinzani wa unyevu, na uaminifu wao unakidhi mahitaji ya juu zaidi ya tasnia ya magari kwa vipengele.
III. Uchambuzi wa Kina wa Matukio ya Matumizi: Jinsi V3M Inavyowezesha Viwanda Mbalimbali
1. Elektroniki za Magari: Jiwe la Msingi la Kuaminika la Utambuzi na Umeme
Katika vipengele vikuu vya magari mapya ya nishati kama vile OBC (On-Board Charger), kibadilishaji cha DC-DC, kitengo cha kudhibiti injini (ECU), na ADAS (Advanced Dereva Assistance Systems), uthabiti wa usimamizi wa nguvu unahusiana moja kwa moja na usalama wa kuendesha. Mfululizo wa V3M, pamoja na uaminifu wake uliothibitishwa na AEC-Q200, hutoa uchujaji na uzuiaji mzuri wa saketi za umeme katika mazingira magumu ya halijoto na mtetemo wa magari, na kuhakikisha uendeshaji usio na dosari wa mifumo muhimu ya kielektroniki.
2. Seva za Data za AI na Vifaa vya Mawasiliano: Kuhakikisha Nguvu ya Kompyuta Isiyokatizwa
Vituo vya data vya AI na vituo vya msingi vya 5G vinahitaji msongamano na ufanisi mkubwa wa nguvu. Vipokezi vya V3M hutumika katika vifaa vya umeme vya seva (PSU) na moduli za umeme za swichi na ruta. Sifa zao za chini za uzuiaji na mkondo wa juu wa ripple husaidia kupunguza upotevu wa nguvu, kupunguza uzalishaji wa joto, na kuboresha ufanisi wa jumla wa nguvu (PUE). Hii ni muhimu kwa vituo vya data vinavyohitaji uendeshaji wa saa 24/7 na vinakabiliwa na shinikizo kubwa la uondoaji wa joto, kuhakikisha uthabiti wao na kupunguza gharama za uendeshaji.
3. Otomatiki ya Viwanda na Nyumba Nadhifu: Ubunifu Mdogo Unaoendesha Ulimwengu Nadhifu
Katika roboti za viwandani, inverters, motor drives, na vifaa vingine, capacitors za V3M zinaweza kutumika katika saketi za inverter buffer. Katika vifaa vya elektroniki vya watumiaji kama vile vifaa vya nyumbani mahiri, adapta za kuchaji haraka za PD, na taa mahiri, sifa zao nyembamba na za juu za uwezo ni bora kwa kufikia ubadilishaji mzuri wa nguvu katika nafasi zilizofungwa. Kwa mfano, katika chaja ya haraka ya gallium nitride (GaN), V3M husaidia kufikia ukubwa mdogo na nguvu ya juu ya kutoa.
4. Hifadhi Mpya ya Nishati na Nishati: Daraja la Mustakabali wa Kijani
Mfululizo wa V3M pia una jukumu muhimu katika vibadilishaji vya umeme vya photovoltaic, mifumo ya kuhifadhi nishati (ESS), na vifaa vya umeme visivyovunjika (UPS). Wanashiriki katika usaidizi na uchujaji wa DC-Link, na kusaidia kubadilisha nishati ya jua na upepo isiyo imara kuwa umeme thabiti na safi, na kuchangia katika ujenzi wa mfumo wa nishati endelevu.
IV. Thamani ya Kuchagua V3M: Uwezeshaji wa Ubunifu Zaidi ya Kipengele Chenyewe
Kuchagua mfululizo wa V3M wa YMIN si kuchagua tu kipaza sauti, bali pia kuchagua uhakikisho wa muundo. Wahandisi wanaweza kuutumia:
• Punguza ukubwa wa bidhaa: Tumia sifa zake nyembamba na zenye msongamano mkubwa ili kufikia miundo midogo ya bidhaa.
• Kuboresha uaminifu wa bidhaa: Kupunguza matengenezo baada ya mauzo na kuongeza sifa ya chapa kwa muda mrefu na uthabiti wa hali ya juu.
• Mchakato Rahisi wa Ununuzi: Sunmax inatoa aina mbalimbali za modeli kuanzia 6.3V hadi 160V, zenye uwezo wa kuanzia 10μF hadi 2200μF, nyingi zikiwa na chaguo za kiwango cha magari, zinazokidhi mahitaji ya ununuzi wa kituo kimoja.
• Upatikanaji wa Usaidizi wa Kiufundi: Sunmax inajivunia uzoefu wa zaidi ya miaka 20 katika Utafiti na Maendeleo na utengenezaji wa vipokezi vya elektroliti vya alumini, ikiwapa wateja usaidizi kamili wa kiufundi kuanzia uteuzi hadi matumizi.
Hitimisho
Katika ulimwengu wa uhandisi wa vifaa vya elektroniki, ambapo maelezo huamua mafanikio au kushindwa, capacitor ndogo mara nyingi hubeba jukumu kubwa la kuhakikisha uendeshaji thabiti wa mfumo mzima. Capacitors za alumini za mfululizo wa V3M za Sunmax Electronics, zenye ufundi wao wa hali ya juu, utendaji bora, na ubora wa kuaminika, zimefaulu majaribio makali kutoka kwa vifaa vya elektroniki vya watumiaji hadi tasnia ya magari. Sio tu "walinzi wa nishati" kimya kimya kwenye bodi za saketi lakini pia ni msaada mkubwa kwa wahandisi wanaoendesha uvumbuzi wa kiteknolojia na uundaji wa bidhaa. Katika wimbi la ujasusi na uenezaji wa umeme, mfululizo wa Sunmax V3M, pamoja na utendaji wake thabiti, unawezesha kimya kimya kila kifaa cha elektroniki cha hali ya juu, ukiunganisha kwenye mustakabali nadhifu na wenye ufanisi zaidi.
| Nambari ya Bidhaa | Halijoto ya uendeshaji (℃) | Volti (V.DC) | Uwezo (uF) | Kipenyo(mm) | Urefu(mm) | Mkondo wa uvujaji (uA) | Mkondo wa ripple uliokadiriwa [mA/rms] | ESR/ Impedans [Ωmax] | Maisha (saa) | Uthibitishaji |
| V3MC0770J471MV | -55~105 | 6.3 | 470 | 6.3 | 7.7 | 29.61 | 600 | - | 2000 | - |
| V3ME1001A152MVTM | -55~105 | 10 | 1500 | 10 | 10 | 150 | 1190 | - | 2000 | AEC-Q200 |
| V3MB0580J221MV | -55~105 | 6.3 | 220 | 5 | 5.8 | 13.86 | 240 | - | 2000 | - |
| V3MA0580J101MVTM | -55~105 | 6.3 | 100 | 4 | 5.8 | 6.3 | 160 | - | 2000 | AEC-Q200 |
| V3MB0580J221MVTM | -55~105 | 6.3 | 220 | 5 | 5.8 | 13.86 | 240 | - | 2000 | AEC-Q200 |
| V3MC0580J331MV | -55~105 | 6.3 | 330 | 6.3 | 5.8 | 20.79 | 300 | - | 2000 | - |
| V3MC0580J331MVTM | -55~105 | 6.3 | 330 | 6.3 | 5.8 | 20.79 | 300 | - | 2000 | AEC-Q200 |
| V3MC0770J471MVTM | -55~105 | 6.3 | 470 | 6.3 | 7.7 | 29.61 | 600 | - | 2000 | AEC-Q200 |
| V3MC0770J681MV | -55~105 | 6.3 | 680 | 6.3 | 7.7 | 42.84 | 600 | - | 2000 | - |
| V3MC0770J681MVTM | -55~105 | 6.3 | 680 | 6.3 | 7.7 | 42.84 | 600 | - | 2000 | AEC-Q200 |
| V3MD1000J152MV | -55~105 | 6.3 | 1500 | 8 | 10 | 94.5 | 850 | - | 2000 | - |
| V3MD1000J152MVTM | -55~105 | 6.3 | 1500 | 8 | 10 | 94.5 | 850 | - | 2000 | AEC-Q200 |
| V3ME1000J222MV | -55~105 | 6.3 | 2200 | 10 | 10 | 138.6 | 1190 | - | 2000 | - |
| V3ME1000J222MVTM | -55~105 | 6.3 | 2200 | 10 | 10 | 138.6 | 1190 | - | 2000 | AEC-Q200 |
| V3ME1001A152MV | -55~105 | 10 | 1500 | 10 | 10 | 150 | 1190 | - | 2000 | - |
| V3MD1001A102MVTM | -55~105 | 10 | 1000 | 8 | 10 | 100 | 850 | - | 2000 | AEC-Q200 |
| V3MA0581A680MV | -55~105 | 10 | 68 | 4 | 5.8 | 6.8 | 160 | - | 2000 | - |
| V3MD1001A102MV | -55~105 | 10 | 1000 | 8 | 10 | 100 | 850 | - | 2000 | - |
| V3MA0581A680MVTM | -55~105 | 10 | 68 | 4 | 5.8 | 6.8 | 160 | - | 2000 | AEC-Q200 |
| V3MB0581A151MV | -55~105 | 10 | 150 | 5 | 5.8 | 15 | 240 | - | 2000 | - |
| V3MB0581A151MVTM | -55~105 | 10 | 150 | 5 | 5.8 | 15 | 240 | - | 2000 | AEC-Q200 |
| V3MC0771A471MVTM | -55~105 | 10 | 470 | 6.3 | 7.7 | 47 | 600 | - | 2000 | AEC-Q200 |
| V3MC0581A221MV | -55~105 | 10 | 220 | 6.3 | 5.8 | 22 | 300 | - | 2000 | - |
| V3MC0581A221MVTM | -55~105 | 10 | 220 | 6.3 | 5.8 | 22 | 300 | - | 2000 | AEC-Q200 |
| V3MC0771A331MV | -55~105 | 10 | 330 | 6.3 | 7.7 | 33 | 600 | - | 2000 | - |
| V3MC0771A331MVTM | -55~105 | 10 | 330 | 6.3 | 7.7 | 33 | 600 | - | 2000 | AEC-Q200 |
| V3MC0771A471MV | -55~105 | 10 | 470 | 6.3 | 7.7 | 47 | 600 | - | 2000 | - |
| V3MA0580J101MV | -55~105 | 6.3 | 100 | 4 | 5.8 | 6.3 | 160 | - | 2000 | - |
| V3MJ2102C221MVTM | -40~105 | 160 | 220 | 18 | 21 | 714 | 2140 | - | 5000 | AEC-Q200 |
| V3MA0581C470MV | -55~105 | 16 | 47 | 4 | 5.8 | 7.52 | 160 | - | 2000 | - |
| V3MA0581C470MVTM | -55~105 | 16 | 47 | 4 | 5.8 | 7.52 | 160 | - | 2000 | AEC-Q200 |
| V3MB0581C680MV | -55~105 | 16 | 68 | 5 | 5.8 | 10.88 | 240 | - | 2000 | - |
| V3MB0581C680MVTM | -55~105 | 16 | 68 | 5 | 5.8 | 10.88 | 240 | - | 2000 | AEC-Q200 |
| V3MB0581C101MV | -55~105 | 16 | 100 | 5 | 5.8 | 16 | 240 | - | 2000 | - |
| V3MB0581C101MVTM | -55~105 | 16 | 100 | 5 | 5.8 | 16 | 240 | - | 2000 | AEC-Q200 |
| V3MC0581C151MV | -55~105 | 16 | 150 | 6.3 | 5.8 | 24 | 300 | - | 2000 | - |
| V3MC0581C151MVTM | -55~105 | 16 | 150 | 6.3 | 5.8 | 24 | 300 | - | 2000 | AEC-Q200 |
| V3MC0581C221MV | -55~105 | 16 | 220 | 6.3 | 5.8 | 35.2 | 300 | - | 2000 | - |
| V3MC0581C221MVTM | -55~105 | 16 | 220 | 6.3 | 5.8 | 35.2 | 300 | - | 2000 | AEC-Q200 |
| V3MC0771C331MV | -55~105 | 16 | 330 | 6.3 | 7.7 | 52.8 | 600 | - | 2000 | - |
| V3MC0771C331MVTM | -55~105 | 16 | 330 | 6.3 | 7.7 | 52.8 | 600 | - | 2000 | AEC-Q200 |
| V3MD1001C681MV | -55~105 | 16 | 680 | 8 | 10 | 108.8 | 850 | - | 2000 | - |
| V3MD1001C681MVTM | -55~105 | 16 | 680 | 8 | 10 | 108.8 | 850 | - | 2000 | AEC-Q200 |
| V3ME1001C102MV | -55~105 | 16 | 1000 | 10 | 10 | 160 | 1190 | - | 2000 | - |
| V3ME1001C102MVTM | -55~105 | 16 | 1000 | 10 | 10 | 160 | 1190 | - | 2000 | AEC-Q200 |
| V3MA0581E220MV | -55~105 | 25 | 22 | 4 | 5.8 | 5.5 | 160 | - | 2000 | - |
| V3MA0581E220MVTM | -55~105 | 25 | 22 | 4 | 5.8 | 5.5 | 160 | - | 2000 | AEC-Q200 |
| V3MA0581E330MV | -55~105 | 25 | 33 | 4 | 5.8 | 8.25 | 160 | - | 2000 | - |
| V3MA0581E330MVTM | -55~105 | 25 | 33 | 4 | 5.8 | 8.25 | 160 | - | 2000 | AEC-Q200 |
| V3MB0581E470MV | -55~105 | 25 | 47 | 5 | 5.8 | 11.75 | 240 | - | 2000 | - |
| V3MB0581E470MVTM | -55~105 | 25 | 47 | 5 | 5.8 | 11.75 | 240 | - | 2000 | AEC-Q200 |
| V3MB0581E680MV | -55~105 | 25 | 68 | 5 | 5.8 | 17 | 240 | - | 2000 | - |
| V3MB0581E680MVTM | -55~105 | 25 | 68 | 5 | 5.8 | 17 | 240 | - | 2000 | AEC-Q200 |
| V3MC0581E101MV | -55~105 | 25 | 100 | 6.3 | 5.8 | 25 | 300 | - | 2000 | - |
| V3MC0581E101MVTM | -55~105 | 25 | 100 | 6.3 | 5.8 | 25 | 300 | - | 2000 | AEC-Q200 |
| V3MC0771E151MV | -55~105 | 25 | 150 | 6.3 | 7.7 | 37.5 | 600 | - | 2000 | - |
| V3MC0771E151MVTM | -55~105 | 25 | 150 | 6.3 | 7.7 | 37.5 | 600 | - | 2000 | AEC-Q200 |
| V3MC0771E221MV | -55~105 | 25 | 220 | 6.3 | 7.7 | 55 | 600 | - | 2000 | - |
| V3MC0771E221MVTM | -55~105 | 25 | 220 | 6.3 | 7.7 | 55 | 600 | - | 2000 | AEC-Q200 |
| V3MD1001E471MV | -55~105 | 25 | 470 | 8 | 10 | 117.5 | 850 | - | 2000 | - |
| V3MD1001E471MVTM | -55~105 | 25 | 470 | 8 | 10 | 117.5 | 850 | - | 2000 | AEC-Q200 |
| V3ME1001E821MV | -55~105 | 25 | 820 | 10 | 10 | 205 | 1190 | - | 2000 | - |
| V3ME1001E821MVTM | -55~105 | 25 | 820 | 10 | 10 | 205 | 1190 | - | 2000 | AEC-Q200 |
| V3ML1351E152MV | -55~105 | 25 | 1500 | 12.5 | 13.5 | 375 | 1420 | - | 5000 | - |
| V3ML1351E152MVTM | -55~105 | 25 | 1500 | 12.5 | 13.5 | 375 | 1420 | - | 5000 | AEC-Q200 |
| V3MA0581V220MV | -55~105 | 35 | 22 | 4 | 5.8 | 7.7 | 160 | - | 2000 | - |
| V3MA0581V220MVTM | -55~105 | 35 | 22 | 4 | 5.8 | 7.7 | 160 | - | 2000 | AEC-Q200 |
| V3MB0581V330MV | -55~105 | 35 | 33 | 5 | 5.8 | 11.55 | 240 | - | 2000 | - |
| V3MB0581V330MVTM | -55~105 | 35 | 33 | 5 | 5.8 | 11.55 | 240 | - | 2000 | AEC-Q200 |
| V3MB0581V470MV | -55~105 | 35 | 47 | 5 | 5.8 | 16.45 | 240 | - | 2000 | - |
| V3MB0581V470MVTM | -55~105 | 35 | 47 | 5 | 5.8 | 16.45 | 240 | - | 2000 | AEC-Q200 |
| V3MC0581V680MV | -55~105 | 35 | 68 | 6.3 | 5.8 | 23.8 | 300 | - | 2000 | - |
| V3MC0581V680MVTM | -55~105 | 35 | 68 | 6.3 | 5.8 | 23.8 | 300 | - | 2000 | AEC-Q200 |
| V3MC0581V101MV | -55~105 | 35 | 100 | 6.3 | 5.8 | 35 | 300 | - | 2000 | —— |
| V3MC0581V101MVTM | -55~105 | 35 | 100 | 6.3 | 5.8 | 35 | 300 | - | 2000 | AEC-Q200 |
| V3MC0771V151MV | -55~105 | 35 | 150 | 6.3 | 7.7 | 52.5 | 600 | - | 2000 | - |
| V3MC0771V151MVTM | -55~105 | 35 | 150 | 6.3 | 7.7 | 52.5 | 600 | - | 2000 | AEC-Q200 |
| V3MD1001V331MV | -55~105 | 35 | 330 | 8 | 10 | 115.5 | 850 | - | 2000 | - |
| V3MD1001V331MVTM | -55~105 | 35 | 330 | 8 | 10 | 115.5 | 850 | - | 2000 | AEC-Q200 |
| V3ME1001V561MV | -55~105 | 35 | 560 | 10 | 10 | 196 | 1190 | - | 2000 | - |
| V3ME1001V561MVTM | -55~105 | 35 | 560 | 10 | 10 | 196 | 1190 | - | 2000 | AEC-Q200 |
| V3ML1451V102MV | -55~105 | 35 | 1000 | 12.5 | 14.5 | 350 | 1420 | - | 5000 | - |
| V3ML1451V102MVTM | -55~105 | 35 | 1000 | 12.5 | 14.5 | 350 | 1420 | - | 5000 | AEC-Q200 |
| V3MA0581H100MV | -55~105 | 50 | 10 | 4 | 5.8 | 5 | 85 | - | 2000 | - |
| V3MA0581H100MVTM | -55~105 | 50 | 10 | 4 | 5.8 | 5 | 85 | - | 2000 | AEC-Q200 |
| V3MB0581H100MV | -55~105 | 50 | 10 | 5 | 5.8 | 5 | 165 | - | 2000 | - |
| V3MB0581H100MVTM | -55~105 | 50 | 10 | 5 | 5.8 | 5 | 165 | - | 2000 | AEC-Q200 |
| V3MB0581H220MV | -55~105 | 50 | 22 | 5 | 5.8 | 11 | 165 | - | 2000 | - |
| V3MB0581H220MVTM | -55~105 | 50 | 22 | 5 | 5.8 | 11 | 165 | - | 2000 | AEC-Q200 |
| V3MC0581H470MV | -55~105 | 50 | 47 | 6.3 | 5.8 | 23.5 | 195 | - | 2000 | - |
| V3MC0581H470MVTM | -55~105 | 50 | 47 | 6.3 | 5.8 | 23.5 | 195 | - | 2000 | AEC-Q200 |
| V3MC0771H101MV | -55~105 | 50 | 100 | 6.3 | 7.7 | 50 | 350 | - | 2000 | - |
| V3MC0771H101MVTM | -55~105 | 50 | 100 | 6.3 | 7.7 | 50 | 350 | - | 2000 | AEC-Q200 |
| V3MD1001H221MV | -55~105 | 50 | 220 | 8 | 10 | 110 | 670 | - | 2000 | - |
| V3MD1001H221MVTM | -55~105 | 50 | 220 | 8 | 10 | 110 | 670 | - | 2000 | AEC-Q200 |
| V3ME1001H331MV | -55~105 | 50 | 330 | 10 | 10 | 165 | 900 | - | 2000 | - |
| V3ME1001H331MVTM | -55~105 | 50 | 330 | 10 | 10 | 165 | 900 | - | 2000 | AEC-Q200 |
| V3ML1351H471MV | -55~105 | 50 | 470 | 12.5 | 13.5 | 235 | 1340 | - | 5000 | - |
| V3ML1351H471MVTM | -55~105 | 50 | 470 | 12.5 | 13.5 | 235 | 1340 | - | 5000 | AEC-Q200 |
| V3MI1651H102MV | -55~105 | 50 | 1000 | 16 | 16.5 | 500 | 1820 | - | 5000 | - |
| V3MI1651H102MVTM | -55~105 | 50 | 1000 | 16 | 16.5 | 500 | 1820 | - | 5000 | AEC-Q200 |
| V3MI2101H152MV | -55~105 | 50 | 1500 | 16 | 21 | 750 | 2440 | - | 5000 | - |
| V3MI2101H152MVTM | -55~105 | 50 | 1500 | 16 | 21 | 750 | 2440 | - | 5000 | AEC-Q200 |
| V3ML1651J471MV | -55~105 | 63 | 470 | 12.5 | 16.5 | 296.1 | 1250 | - | 5000 | - |
| V3ML1651J471MVTM | -55~105 | 63 | 470 | 12.5 | 16.5 | 296.1 | 1250 | - | 5000 | AEC-Q200 |
| V3MI1651J681MV | -55~105 | 63 | 680 | 16 | 16.5 | 428.4 | 1740 | - | 5000 | - |
| V3MI1651J681MVTM | -55~105 | 63 | 680 | 16 | 16.5 | 428.4 | 1740 | - | 5000 | AEC-Q200 |
| V3MJ1651J821MV | -55~105 | 63 | 820 | 18 | 16.5 | 516.6 | 1880 | - | 5000 | - |
| V3MJ1651J821MVTM | -55~105 | 63 | 820 | 18 | 16.5 | 516.6 | 1880 | - | 5000 | AEC-Q200 |
| V3MI2101J122MV | -55~105 | 63 | 1200 | 16 | 21 | 756 | 2430 | - | 5000 | - |
| V3MI2101J122MVTM | -55~105 | 63 | 1200 | 16 | 21 | 756 | 2430 | - | 5000 | AEC-Q200 |
| V3ML1351K221MV | -55~105 | 80 | 220 | 12.5 | 13.5 | 176 | 1050 | - | 5000 | - |
| V3ML1351K221MVTM | -55~105 | 80 | 220 | 12.5 | 13.5 | 176 | 1050 | - | 5000 | AEC-Q200 |
| V3MI1651K471MV | -55~105 | 80 | 470 | 16 | 16.5 | 376 | 1500 | - | 5000 | - |
| V3MI1651K471MVTM | -55~105 | 80 | 470 | 16 | 16.5 | 376 | 1500 | - | 5000 | AEC-Q200 |
| V3MI2101K681MV | -55~105 | 80 | 680 | 16 | 21 | 544 | 2040 | - | 5000 | - |
| V3MI2101K681MVTM | -55~105 | 80 | 680 | 16 | 21 | 544 | 2040 | - | 5000 | AEC-Q200 |
| V3MJ2101K821MV | -55~105 | 80 | 820 | 18 | 21 | 656 | 2140 | - | 5000 | - |
| V3MJ2101K821MVTM | -55~105 | 80 | 820 | 18 | 21 | 656 | 2140 | - | 5000 | AEC-Q200 |
| V3ML1352A151MV | -55~105 | 100 | 150 | 12.5 | 13.5 | 150 | 1050 | - | 5000 | - |
| V3ML1352A151MVTM | -55~105 | 100 | 150 | 12.5 | 13.5 | 150 | 1050 | - | 5000 | AEC-Q200 |
| V3ML1652A221MV | -55~105 | 100 | 220 | 12.5 | 16.5 | 220 | 1250 | - | 5000 | - |
| V3ML1652A221MVTM | -55~105 | 100 | 220 | 12.5 | 16.5 | 220 | 1250 | - | 5000 | AEC-Q200 |
| V3MI1652A331MV | -55~105 | 100 | 330 | 16 | 16.5 | 330 | 1500 | - | 5000 | - |
| V3MI1652A331MVTM | -55~105 | 100 | 330 | 16 | 16.5 | 330 | 1500 | - | 5000 | AEC-Q200 |
| V3MI2102A471MV | -55~105 | 100 | 470 | 16 | 21 | 470 | 2040 | - | 5000 | - |
| V3MI2102A471MVTM | -55~105 | 100 | 470 | 16 | 21 | 470 | 2040 | - | 5000 | AEC-Q200 |
| V3MJ2102A561MV | -55~105 | 100 | 560 | 18 | 21 | 560 | 2140 | - | 5000 | - |
| V3MJ2102A561MVTM | -55~105 | 100 | 560 | 18 | 21 | 560 | 2140 | - | 5000 | AEC-Q200 |
| V3ML1652C101MV | -40~105 | 160 | 100 | 12.5 | 16.5 | 330 | 1040 | - | 5000 | - |
| V3ML1652C101MVTM | -40~105 | 160 | 100 | 12.5 | 16.5 | 330 | 1040 | - | 5000 | AEC-Q200 |
| V3MI2102C151MV | -40~105 | 160 | 150 | 16 | 21 | 490 | 1520 | - | 5000 | - |
| V3MI2102C151MVTM | -40~105 | 160 | 150 | 16 | 21 | 490 | 1520 | - | 5000 | AEC-Q200 |
| V3MJ2102C221MV | -40~105 | 160 | 220 | 18 | 21 | 714 | 2140 | - | 5000 | - |







