IiParamitha zoBugcisa eziPhambili
| iprojekthi | uphawu | |
| uluhlu lobushushu bokusebenza | -55~+105℃ | |
| I-voltage yokusebenza elinganisiweyo | 16-80V | |
| uluhlu lomthamo | 6.8 ~ 470 uF 120Hz 20℃ | |
| Ukunyamezela umthamo | ±20% (120Hz 20℃) | |
| i-tanjenti yokulahleka | 120Hz 20℃ ngaphantsi kwexabiso elikuluhlu lweemveliso ezisemgangathweni | |
| Umsinga ovuzayo※ | Ngaphantsi kwe-0.01 CV(uA), tshaja ngevolthi elinganisiweyo imizuzu emi-2 kwi-20°C | |
| Ukumelana nothotho olulinganayo (ESR) | 100kHz 20°C ngaphantsi kwexabiso elikuluhlu lweemveliso ezisemgangathweni | |
| Iimpawu zobushushu (Umlinganiselo wokunganyamezelani) | Z(-25℃)/Z(+20℃)≤2.0 ; Z(-55℃)/Z(+20℃)≤2.5 (100kHz) | |
|
Ukuqina | Kubushushu obuyi-105℃, faka i-voltage elinganisiweyo kuquka nomsinga we-ripple olinganisiweyo, kwaye emva kwexesha elithile, yibeke kwi-20°C kangangeeyure ezili-16 uze uyivavanye, imveliso kufuneka ifikelele | |
| Izinga lokutshintsha kwamandla | ±30% yexabiso lokuqala | |
| Ukumelana nothotho olulinganayo (ESR) | ≤200% yexabiso lokuqala lenkcazo | |
| i-tanjenti yokulahleka | ≤200% yexabiso lokuqala lenkcazo | |
| umsinga wokuvuza | ≤Ixabiso lokuqala leenkcukacha | |
|
indawo yokugcina kubushushu obuphezulu | Gcina kwi-105°C kangangeeyure ezili-1000, yibeke kubushushu begumbi kangangeeyure ezili-16 ngaphambi kovavanyo, ubushushu bovavanyo bungama-20°C±2°C, imveliso kufuneka ihlangabezane neemfuno ezilandelayo | |
| Izinga lokutshintsha kwamandla | ±30% yexabiso lokuqala | |
| Ukumelana nothotho olulinganayo (ESR) | ≤200% yexabiso lokuqala lenkcazo | |
| i-tanjenti yokulahleka | ≤200% yexabiso lokuqala lenkcazo | |
| umsinga wokuvuza | ukuya kwixabiso lokuqala lenkcazo | |
|
Ubushushu obuphezulu kunye nokufuma | Emva kokusebenzisa i-voltage elinganisiweyo iiyure ezili-1000 kwi-85°C kunye nokufuma kwe-85%RH, kwaye uyibeke kwi-20°C iiyure ezili-16, imveliso kufuneka ifikelele | |
| Izinga lokutshintsha kwamandla | ±30% yexabiso lokuqala | |
| i-tanjenti yokulahleka | ≤200% yexabiso lokuqala lenkcazo | |
| umsinga wokuvuza | ukuya kwixabiso lokuqala lenkcazo | |
※Xa ungaqinisekanga ngexabiso langoku lokuvuza, nceda ubeke imveliso kwi-105°C uze usebenzise i-voltage yokusebenza elinganisiweyo iiyure ezi-2, uze emva koko wenze uvavanyo lwangoku lokuvuza emva kokuba upholile ukuya kwi-20°C.
Umzobo Wemilinganiselo Yemveliso

| D (± 0.5) | 5 | 6.3 | 8 | 10 |
| d (± 0.05) | 0.45/0.50 | 0.45/0.50 | 0.6 | 0.6 |
| F (± 0.5) | 2 | 2.5 | 3.5 | 5 |
| a | 0.5 | 1 | ||
I-Ripple Current Frequency Correction Coefficient
into yokulungisa amaza
| Ireyithi (Hz) | 120Hz | 1kHz | 10kHz | 100kHz | 300kHz |
| into yokulungisa | 0.1 | 0.35 | 0.8 | 1 | 1 |
Uthotho lwe-NGY: Ii-High-Performance Conductive Polymer Hybrid Aluminium Electrolytic Capacitors ezine-10,000-Hour Durability
Kwishishini lezinto ze-elektroniki, ubomi bemveliso kunye nokuthembeka kwexesha elide zizibonakaliso ezibalulekileyo zexabiso lazo. Uthotho lwe-NGY lwe-Shanghai YMIN lwe-Conductive Polymer Hybrid Aluminium Electrolytic Capacitors ziimveliso ezintsha ezinobomi benkonzo obude kakhulu kunye nozinzo olugqwesileyo njengamandla azo aphambili. Zimela incopho yokuqina kwetekhnoloji ye-hybrid electrolytic capacitor kwiindawo zokusebenza ze-105°C, nto leyo eyenza ukuba zibe lukhetho olufanelekileyo kwiinjineli ezilandela ifilosofi "yoyilo oluhlala luhleli, olungenakugcinwa".
I. Isishwankathelo seMveliso: Umzekelo wokuthembeka onokuhlala ixesha elide iiyure ezili-10,000
Olu luhlu lwe-NGY lufumana zonke iingenelo zobuchwepheshe obuxutyiweyo ngelixa lufikelela kwimpumelelo ebalulekileyo kubomi benkonzo. Ubuchwepheshe balo "obuxutyiweyo" busebenzisa i-cathode ye-polymer eqhubayo kwaye bugcina i-electrolyte ekhethekileyo kwi-anode, nto leyo efezekisa ulungelelwaniso olugqibeleleyo lokusebenza. Nangona kunjalo, iimpawu zalo ezinomtsalane zezi:
• Isiqinisekiso soBomi obupheleleyo: Imveliso iqinisekisiwe ukuba isebenza ngokuqhubekayo iiyure ezili-10,000 kubushushu bokusebenza obulinganisiweyo be-105°C. Le mpumelelo ibalulekileyo ithetha ukuba kubushushu obuqhelekileyo bokusebenza (umz., 65°C-85°C), ubomi bethiyori bunokudlula iminyaka eli-15, bufezekise ngokwenene injongo yoyilo lobomi obufana nobemveliso yomninimzi.
• Ukuguquguquka kobushushu obuqinileyo: Uluhlu lobushushu bokusebenza lugubungela -55°C ukuya ku +105°C, nto leyo eyenza ukuba ikwazi ukumelana nemingeni yokuqalisa ukubanda kwiindawo ezibandayo kakhulu ngelixa igcina ukuqina okumangalisayo kwiindawo ezishushu kakhulu.
• Ukuthembeka Okungagungqiyo: Olu luhlu luhambelana ngokupheleleyo nemigangatho ye-AEC-Q200 yeemoto, luhlangabezana neemfuno ezingqongqo zokuthembeka kwezixhobo zemoto kwaye lususa umngcipheko wokomisa okuhambelana nee-capacitors zolwelo zemveli.
II. Iimpawu zobugcisa eziBalaseleyo: Ukuseta uphawu olutsha lozinzo lwexesha elide
Ubomi beeyure ezili-10,000 ze-NGY series abuyonto nje yokuthetha, kodwa busekelwe kwisiseko seenkcukacha zobugcisa ezingqongqo kunye nemigangatho yovavanyo olungqongqo.
1. Ukusebenza kakuhle koMbane:
◦ I-ESR ephantsi kunye nokukwazi ukusebenza kweRipple ephezulu: Kwi-100kHz, uthotho lwe-NGY lunexabiso eliphantsi kakhulu le-ESR (eliphantsi njenge-0.016Ω). Oku kuqinisekisa ukuveliswa kobushushu obuncinci kwiimveliso zamandla okutshintsha amandla aphezulu, okufunxa ngempumelelo i-ripple current ephezulu. Oku kuqinisekisa i-voltage ecocekileyo nezinzileyo kwiitships ezinobuthathaka ezifana nee-CPU, ii-GPU, kunye nee-ASIC, okuphucula ukusebenza kakuhle kwenkqubo kunye nozinzo.
◦ Uluhlu lweeVolthi eziBanzi kunye noLawulo lweMithamo: Olu luhlu lweeVolthi ezilinganiselweyo ukusuka kwi-16V ukuya kwi-80V kunye noluhlu lweeCapacitance ukusuka kwi-6.8μF ukuya kwi-470μF, olu luhlu lweeCapacitance lubonelela ngeendlela ezahlukeneyo zoyilo lombane, ukucoca, kunye nezicelo zokugcina amandla.
◦ Ukusebenza okuZinzileyo koBushushu obuPhantsi: Iimpawu zayo ezibalaseleyo zomlinganiselo we-impedance zithetha ukuba kwi--55°C, i-impedance yayo inyuka iye kuthi ga kwi-2.5 ngokuphindwe kabini kune-20°C (kwi-100kHz), okuqinisekisa ukuqalisa nokusebenza okuthembekileyo kuyo nayiphi na imozulu yehlabathi.
2. Ukuthembeka okungenakuthelekiswa nanto kwexesha elide:
◦ Uvavanyo lobomi beeyure ezili-10,000 @ 105°C: Eli lixabiso eliphambili lothotho lwe-NGY. Emva kweeyure ezili-10,000 zokusebenza komthwalo opheleleyo kwi-105°C, ukusebenza kwayo kombane kubonisa utshintsho oluncinci (utshintsho lwe-capacitance ≤ ±30%, utshintsho lwe-ESR ≤ 200%), nto leyo ebonisa uzinzo olukhethekileyo kunye nokumelana nokuguga kwezinto zayo zangaphakathi.
◦ Ukuqinisekiswa Okupheleleyo Kokuthembeka: Imveliso idlule iiyure ezili-1000 zovavanyo lokugcina ubushushu obuphezulu obuyi-105°C kunye neeyure ezili-1000 zovavanyo lomthwalo wobushushu obuphezulu obuyi-85°C/85%RH. Ezi mvavanyo zilinganisa iminyaka yeemeko ezinzima zendalo kwaye ziqinisekisa ukumelana kwayo okugqwesileyo kwe-oxidation kunye nokufuma kwiindawo ezinobushushu obuphezulu kunye nokufuma okuphezulu, okuqinisekisa ubomi obude kakhulu beshelufu kunye nobomi benkonzo.
3. Ukuthobela imithetho kunye noKhuseleko lweNdalo:
◦ Le mveliso ihambelana ngokupheleleyo nomgangatho wokuthembeka kwezixhobo ze-elektroniki zeemoto ze-AEC-Q200, imisela umgangatho wokungena kwizicelo ze-elektroniki zeemoto.
◦ Ihambelana ne-EU RoHS Directive (2011/65/EU), ehlangabezana neemfuno zendalo jikelele.
III. Uluhlu olubanzi lwezicelo ezisebenzayo: Zenzelwe ubomi obude
Ngenxa yobomi bayo obuhlala iiyure ezili-10,000 kunye nokuthembeka kwayo kwinqanaba leemoto, olu luhlu lwe-NGY lusisombululo esifanelekileyo kwezi zicelo zilandelayo zinzima.
1. Iimoto ze-elektroniki - Iindawo eziphambili zokusetyenziswa:
Isatifikethi se-NGY se-AEC-Q200 kunye nobomi obude kakhulu buyenza ibe lolona khetho luphezulu kwii-elektroniki zeemoto, ingakumbi kwiimodyuli ezibalulekileyo ezibalulekileyo kubomi bemoto:
◦ Ulawulo lweDomain yoMzimba (i-BDCU) kunye neenkqubo zokuthuthuzela: Iimodyuli ezifana nolawulo lweefestile, ukulungiswa kwezihlalo, kunye neengcango kulindeleke ukuba ziphile ixesha elide kunesithuthi, nto leyo eyenza ukuba i-NGY ingabi nangxaki yokugcinwa kwemoto ibe yeyona nto ibalulekileyo.
◦ Iinkqubo eziPhambili zeZithuthi eziNtsha zaMandla: Ezi zixhobo zisetyenziselwa ukucoca nokugcina amandla kwiitshaja ezisebhodini (ii-OBC), ii-DC-DC converters, kunye neenkqubo zolawulo lwebhetri (ii-BMS). Ukuphila kwazo ixesha elide kunciphisa umngcipheko wokungasebenzi ngexesha lewaranti.
◦ Iinkqubo zokuzonwabisa kunye neeQela zeZixhobo: Ezi nkqubo, ezisebenza rhoqo, zibonelela ngamandla azinzileyo, ziqinisekisa ukuboniswa nokusebenza rhoqo kangangeminyaka elishumi.
2. Uomatshini bokuZenzekela kunye neZiseko zoPhuhliso lweMizi-mveliso:
Izixhobo zoshishino zihlala zifuna ukusebenza okungaphazanyiswayo iiyure ezingama-24 ngosuku, iintsuku ezisixhenxe ngeveki, iifestile zazo zingadingi ukugcinwa kakhulu:
◦ Iinkqubo zolawulo lwemizi-mveliso (ii-PLC), ii-inverters, kunye nee-servo drives: Ubomi obude be-NGY buqinisekisa ukusebenza okuqhubekayo nokuzinzileyo kwemigca yemveliso, okunciphisa kakhulu umngcipheko wokungasebenzi okungalindelekanga ngenxa yokuguga kwe-capacitor.
◦ Izitishi zonxibelelwano kunye nezixhobo zenethiwekhi: Izixhobo zombane zezikhululo zesiseko ze-5G, ii-routers, iiswitshi, kunye nezinye izixhobo zenzelwe ubomi obude kwaye zisetyenziswa kwiindawo ezintsonkothileyo. Ukuthembeka okuphezulu kwe-NGY kuqinisekisa ngokufanelekileyo uzinzo lwenethiwekhi.
◦ Iimitha ezikrelekrele kunye neenkqubo zokujonga amandla: Emva kokufakelwa, iimitha zihlala zifuneka ukuba zisebenze ngokuzinzileyo kangangeminyaka engaphezu kweshumi nangaphezulu. Ubomi obude kakhulu be-NGY buhlangabezana ngokupheleleyo nale mfuneko.
3. Izixhobo ze-elektroniki kunye nezixhobo zonyango ezikumgangatho ophezulu:
◦ Izixhobo zamandla zeseva eziphezulu (ii-PSU) kunye nezixhobo zeziko ledatha: Zibonelela ngenkxaso yamandla ezinzileyo nesebenzayo kwi-cloud computing kunye namaqonga e-AI computing, kwaye ubomi bazo obude buhambelana nomjikelo woyilo lwamaziko edatha.
Izixhobo zokubeka esweni kwezonyango kunye nezixhobo zokuxilonga: Ezi zixhobo zifuna uzinzo oluphezulu kakhulu kunye nokuthembeka, kwaye uzinzo lokusebenza kwexesha elide lwe-NGY lusisiseko sokusebenza kwazo ngokukhuselekileyo.
IV. Isiphelo: Utyalo-mali oluCwangcisiweyo kuYilo oluQinisekisa iXesha elizayo noluQinisekisa ixesha elide
Ukukhetha ii-capacitors ze-electrolytic ze-NGY series conductive polymer hybrid aluminum electrolytic kungaphezulu kokukhetha nje icandelo; lutyalo-mali olucwangcisiweyo oluya kuqinisekisa ukusebenza okuzinzileyo kwemveliso yakho kwiminyaka elishumi ezayo okanye nangaphezulu. Okwangoku zimele ii-capacitors ze-electrolytic ezihlala ixesha elide kwizicelo ze-105°C.
Ukukhetha uthotho lwe-NGY kuthetha ukukhetha:
• Ubomi obupheleleyo kunye nokuthembeka: Iiyure ezili-10,000 eziqinisekisiweyo kwi-105°C kunye nesatifikethi se-AEC-Q200 zibonelela ngenkxaso enamandla kakhulu kwigama lemarike yemveliso yakho kunye nokuthembeka kophawu lwayo.
• Ixabiso lilonke lobunini (i-TCO) elincitshiswe kakhulu: Iindleko kunye nemingcipheko yokugcinwa emva kokuthengisa, ukutshintshwa, kunye nexesha lokungasebenzi zincitshiswe kakhulu, nto leyo edala ixabiso lexesha elide kubathengi.
• Impembelelo entle kakhulu kwindalo esingqongileyo: Ixesha elide kakhulu lokuphila linciphisa inkunkuma ye-elektroniki, lihambelana nemigaqo yokusingqongileyo ezinzileyo.
Ukuba ufuna isisombululo se-capacitor "esinokuthembeka kwexesha elide" njengexabiso laso eliphambili kwii-elektroniki zakho zeemoto zesizukulwana esilandelayo, izixhobo zolawulo lwemizi-mveliso, okanye iziseko zophuhliso eziphezulu, ngokuqinisekileyo uthotho lwe-NGY lolona khetho lwakho lubalaseleyo.
| Inombolo yeMveliso | Ubushushu (℃) | I-Voltage elinganisiweyo (i-Vdc) | Ubungakanani bomthamo (μF) | Ububanzi(mm) | Ubude (mm) | Ukuvuza kwangoku (μA) | I-ESR/Impedance [Ωmax] | Ubomi (iiyure) | Isiqinisekiso seMveliso |
| NGYB0571C470MJCG | -55~105 | 16 | 47 | 5 | 5.7 | 47 | 0.08 | 10000 | I-AEC-Q200 |
| NGYC0571C820MJCG | -55~105 | 16 | 82 | 6.3 | 5.7 | 82 | 0.045 | 10000 | I-AEC-Q200 |
| NGYC0701C151MJCG | -55~105 | 16 | 150 | 6.3 | 7 | 150 | 0.027 | 10000 | I-AEC-Q200 |
| NGYD0901C271MJCG | -55~105 | 16 | 270 | 8 | 9 | 270 | 0.022 | 10000 | I-AEC-Q200 |
| NGYE0901C471MJCG | -55~105 | 16 | 470 | 10 | 9 | 470 | 0.018 | 10000 | I-AEC-Q200 |
| NGYB0571E330MJCG | -55~105 | 25 | 33 | 5 | 5.7 | 33 | 0.08 | 10000 | I-AEC-Q200 |
| NGYC0571E470MJCG | -55~105 | 25 | 47 | 6.3 | 5.7 | 47 | 0.05 | 10000 | I-AEC-Q200 |
| NGYC0571E560MJCG | -55~105 | 25 | 56 | 6.3 | 5.7 | 56 | 0.05 | 10000 | I-AEC-Q200 |
| NGYC0701E680MJCG | -55~105 | 25 | 68 | 6.3 | 7 | 68 | 0.03 | 10000 | I-AEC-Q200 |
| NGYC0701E101MJCG | -55~105 | 25 | 100 | 6.3 | 7 | 100 | 0.03 | 10000 | I-AEC-Q200 |
| NGYD0901E151MJCG | -55~105 | 25 | 150 | 8 | 9 | 150 | 0.027 | 10000 | I-AEC-Q200 |
| NGYD0901E221MJCG | -55~105 | 25 | 220 | 8 | 9 | 220 | 0.027 | 10000 | I-AEC-Q200 |
| NGYE0901E271MJCG | -55~105 | 25 | 270 | 10 | 9 | 270 | 0.02 | 10000 | I-AEC-Q200 |
| NGYE0901E331MJCG | -55~105 | 25 | 330 | 10 | 9 | 330 | 0.02 | 10000 | I-AEC-Q200 |
| NGYE1251E331MJCG | -55~105 | 25 | 330 | 10 | 12.5 | 330 | 0.016 | 10000 | I-AEC-Q200 |
| NGYB0571V220MJCG | -55~105 | 35 | 22 | 5 | 5.7 | 22 | 0.1 | 10000 | I-AEC-Q200 |
| NGYC0571V270MJCG | -55~105 | 35 | 27 | 6.3 | 5.7 | 27 | 0.06 | 10000 | I-AEC-Q200 |
| NGYC0571V470MJCG | -55~105 | 35 | 47 | 6.3 | 5.7 | 47 | 0.06 | 10000 | I-AEC-Q200 |
| NGYC0701V470MJCG | -55~105 | 35 | 47 | 6.3 | 7 | 47 | 0.035 | 10000 | I-AEC-Q200 |
| NGYC0701V680MJCG | -55~105 | 35 | 68 | 6.3 | 7 | 68 | 0.035 | 10000 | I-AEC-Q200 |
| NGYD0901V101MJCG | -55~105 | 35 | 100 | 8 | 9 | 100 | 0.027 | 10000 | I-AEC-Q200 |
| NGYD0901V151MJCG | -55~105 | 35 | 150 | 8 | 9 | 150 | 0.027 | 10000 | I-AEC-Q200 |
| NGYE0901V151MJCG | -55~105 | 35 | 150 | 10 | 9 | 150 | 0.02 | 10000 | I-AEC-Q200 |
| NGYE0901V271MJCG | -55~105 | 35 | 270 | 10 | 9 | 270 | 0.02 | 10000 | I-AEC-Q200 |
| NGYE1251V271MJCG | -55~105 | 35 | 270 | 10 | 12.5 | 270 | 0.017 | 10000 | I-AEC-Q200 |
| NGYB0571H100MJCG | -55~105 | 50 | 10 | 5 | 5.7 | 10 | 0.12 | 10000 | I-AEC-Q200 |
| NGYC0571H100MJCG | -55~105 | 50 | 10 | 6.3 | 5.7 | 10 | 0.08 | 10000 | I-AEC-Q200 |
| NGYC0571H150MJCG | -55~105 | 50 | 15 | 6.3 | 5.7 | 15 | 0.08 | 10000 | I-AEC-Q200 |
| NGYC0571H220MJCG | -55~105 | 50 | 22 | 6.3 | 5.7 | 22 | 0.08 | 10000 | I-AEC-Q200 |
| NGYC0701H330MJCG | -55~105 | 50 | 33 | 6.3 | 7 | 33 | 0.04 | 10000 | I-AEC-Q200 |
| NGYD0901H330MJCG | -55~105 | 50 | 33 | 8 | 9 | 33 | 0.03 | 10000 | I-AEC-Q200 |
| NGYD0901H470MJCG | -55~105 | 50 | 47 | 8 | 9 | 47 | 0.03 | 10000 | I-AEC-Q200 |
| NGYD0901H560MJCG | -55~105 | 50 | 56 | 8 | 9 | 56 | 0.03 | 10000 | I-AEC-Q200 |
| NGYD0901H680MJCG | -55~105 | 50 | 68 | 8 | 9 | 68 | 0.03 | 10000 | I-AEC-Q200 |
| NGYE0901H101MJCG | -55~105 | 50 | 100 | 10 | 9 | 100 | 0.028 | 10000 | I-AEC-Q200 |
| NGYE0901H121MJCG | -55~105 | 50 | 120 | 10 | 9 | 120 | 0.025 | 10000 | I-AEC-Q200 |
| NGYE1251H121MJCG | -55~105 | 50 | 120 | 10 | 12.5 | 120 | 0.019 | 10000 | I-AEC-Q200 |
| NGYC0571J6R8MJCG | -55~105 | 63 | 6.8 | 6.3 | 5.7 | 6.8 | 0.12 | 10000 | I-AEC-Q200 |
| NGYC0571J100MJCG | -55~105 | 63 | 10 | 6.3 | 5.7 | 10 | 0.12 | 10000 | I-AEC-Q200 |
| NGYC0701J100MJCG | -55~105 | 63 | 10 | 6.3 | 7 | 10 | 0.08 | 10000 | I-AEC-Q200 |
| NGYC0701J150MJCG | -55~105 | 63 | 15 | 6.3 | 7 | 15 | 0.08 | 10000 | I-AEC-Q200 |
| NGYC0701J220MJCG | -55~105 | 63 | 22 | 6.3 | 7 | 22 | 0.08 | 10000 | I-AEC-Q200 |
| NGYD0901J220MJCG | -55~105 | 63 | 22 | 8 | 9 | 22 | 0.04 | 10000 | I-AEC-Q200 |
| NGYD0901J330MJCG | -55~105 | 63 | 33 | 8 | 9 | 33 | 0.04 | 10000 | I-AEC-Q200 |
| NGYD0901J470MJCG | -55~105 | 63 | 47 | 8 | 9 | 47 | 0.04 | 10000 | I-AEC-Q200 |
| NGYE0901J560MJCG | -55~105 | 63 | 56 | 10 | 9 | 56 | 0.03 | 10000 | I-AEC-Q200 |
| NGYE0901J680MJCG | -55~105 | 63 | 68 | 10 | 9 | 68 | 0.03 | 10000 | I-AEC-Q200 |
| NGYE0901J820MJCG | -55~105 | 63 | 82 | 10 | 9 | 82 | 0.03 | 10000 | I-AEC-Q200 |
| NGYE1251J101MJCG | -55~105 | 63 | 100 | 10 | 12.5 | 100 | 0.02 | 10000 | I-AEC-Q200 |
| NGYD0901K220MJCG | -55~105 | 80 | 22 | 8 | 9 | 22 | 0.045 | 10000 | I-AEC-Q200 |
| NGYE0901K330MJCG | -55~105 | 80 | 33 | 10 | 9 | 33 | 0.036 | 10000 | I-AEC-Q200 |
| NGYE0901K390MJCG | -55~105 | 80 | 39 | 10 | 9 | 39 | 0.035 | 10000 | I-AEC-Q200 |







