• Product
  • Suppliers
  • Manufacturers
  • Solutions
  • Free tools
  • Knowledges
  • Experts
  • Communities
Search


Ujenzi wa muktadha wa awali wa kiwango cha juu (mfululizo 3 na tofauti 3)

  • High frequency on-line UPS (3phase in and 3phase out)

Sifa muhimu

Chapa Switchgear parts
Namba ya Modeli Ujenzi wa muktadha wa awali wa kiwango cha juu (mfululizo 3 na tofauti 3)
nguvu 10KW
Urefu wa Mzunguko 50/60Hz
uwezo 10kVA
Siri HBGS

Maelezo ya bidhaa kutoka kwa mchambishi

Maelezo

Siri ya HBGS imerejeshwa kwa umbo wa teknolojia ya awali. Kijiko kote kinatumia teknolojia ya utambuzi wa DSP digital na teknolojia ya utambuzi wa kiwango cha juu kutengeneza ukubwa mdogo, upungufu wa ongezeko na ufanisi mkubwa: muktadha wa sifuri na teknolojia ya tofauti za sine thamani sahihi huchukua kifaa cha mtumiaji kuwa na vifaa vingine vingine. Kitambulisho kamili cha AC-DC kina tumika ili kutathmini amperemeta na voliti wa tovuti ya umeme. Kwa kutumia modulayta ya pana ya kiwango cha juu, mzunguko wa amperemeta wa tovuti ya kuingiza unajihusisha na mzunguko wa voliti ili kupata kifano cha kiwango cha juu zaidi ya 95%. Katika mazingira ya kawaida, umeme unapata kitovu cha DCBUS kwa njia ya AC-DC. DCBUS kisha hupanuliwa kuwa AC kwa njia ya inverter, na mizigo yote yanatumia nguvu ya sine thamani sahihi ambayo imechukuliwa na imewachwa bila sauti. Kutumia ubora! Kama kilele la kubadilisha nguvu, GBT, kwa sababu ya tabia ya kubadilisha kwa kiwango cha juu la BGT, inaweza kufanya kifano cha inverter wa UPS kukua hadi 40KHz, kuboresha ufanisi wa inverter na ufanisi wa jumla wa UPS. Kuongezeka kwa kiwango cha inverter pia kunorahisha sauti ya inverter. Kwa hivyo, kuweka UPS wa Siri ya HBG moja kwa moja katika chumba cha kompyuta haiwezi kusababisha matatizo katika kazi yako. UPS wa kiwango cha juu wa online wa Siri ya HBG unaunganishwa na seva ya mitandao kwa njia ya RS232 na programu ya usimamizi wa nguvu, inatoa hali ya nguvu kwa wakati. Pia inafanikiwa kazi za akili kama kutathmini mwenyewe kwa muda, kuhifadhi moja kwa moja, kuanza/kusimamisha nguvu kwa muda, na kuhifadhi hali ya nguvu, kuunda mawasiliano ya sifuri nchi kati ya binadamu na mashine. Wakati umeme unapatikana, UPS hutoa arifa kwa seva ya kuanza kufanya mchakato wa kusimamisha na kuhifadhi data yote kwa disk, kutekeleza maamuzi sahihi ya kusimamisha. Hata katika mazingira ya mitandao yenye watu, inaweza kuhakikisha usalama wa data ya mfumo wa mitandao

Maeneo ya kutumika

Inatumika kwa wingi katika mikoa ya uzimrushi wa mitandao na mikoa ya kompyuta, benki na hisa, kodi, mawasiliano, posta, taarifa, usalama wa umma, na transporti. Maeneo muhimu ya data kama umeme, afya, utambuzi wa kiuchumi, na huduma za sekutu.

 

Mipangilio ya Teknolojia

Model Specification 10KH(S) 15KH(S) 20KH(S) 30KH(S) 40KH(S) 60KH(S) 80KS 100KS 120KS 160KS 200KS
Phase Three-Phase Input and Output Three-Phase Input and Output Three-Phase Input and Output Three-Phase Input and Output Three-Phase Input and Output Three-Phase Input and Output Three-Phase Input and Output Three-Phase Input and Output Three-Phase Input and Output Three-Phase Input and Output Three-Phase Input and Output
Capacity 10KVA/10KW 15KVA/15KW 20KVA/20KW 30KVA/30KW 40KVA/40KW 60KVA/60KW 80KVA/80KW 100KVA/90KW 120KVA/108KW 160KVA/144KW 200KVA/180KW
Input                      
Rated Voltage 3 × 400 VAC (3Ph+N) 3 × 400 VAC (3Ph+N) 3 × 400 VAC (3Ph+N) 3 × 400 VAC (3Ph+N) 3 × 400 VAC (3Ph+N) 3 × 400 VAC (3Ph+N) 3 × 400 VAC (3Ph+N) 3 × 400 VAC (3Ph+N) 3 × 400 VAC (3Ph+N) 3 × 400 VAC (3Ph+N) 3 × 400 VAC (3Ph+N)
Voltage Range 190-520 VAC (3-phase @ 50% load); 305-478 VAC (3-phase @ 100% load) 190-520 VAC (3-phase @ 50% load); 305-478 VAC (3-phase @ 100% load) 190-520 VAC (3-phase @ 50% load); 305-478 VAC (3-phase @ 100% load) 190-520 VAC (3-phase @ 50% load); 305-478 VAC (3-phase @ 100% load) 190-520 VAC (3-phase @ 50% load); 305-478 VAC (3-phase @ 100% load) 190-520 VAC (3-phase @ 50% load); 305-478 VAC (3-phase @ 100% load) 190-520 VAC (3-phase @ 50% load); 305-478 VAC (3-phase @ 100% load) 190-520 VAC (3-phase @ 50% load); 305-478 VAC (3-phase @ 100% load) 190-520 VAC (3-phase @ 50% load); 305-478 VAC (3-phase @ 100% load) 190-520 VAC (3-phase @ 50% load); 305-478 VAC (3-phase @ 100% load) 190-520 VAC (3-phase @ 50% load); 305-478 VAC (3-phase @ 100% load)
Frequency Range 46~54 Hz or 56~64Hz 46~54 Hz or 56~64Hz 46~54 Hz or 56~64Hz 46~54 Hz or 56~64Hz 46~54 Hz or 56~64Hz 46~54 Hz or 56~64Hz 46~54 Hz or 56~64Hz 46~54 Hz or 56~64Hz 46~54 Hz or 56~64Hz 46~54 Hz or 56~64Hz 46~54 Hz or 56~64Hz
Power Factor ≥ 0.99 @ 100% load ≥ 0.99 @ 100% load ≥ 0.99 @ 100% load ≥ 0.99 @ 100% load ≥ 0.99 @ 100% load ≥ 0.99 @ 100% load ≥ 0.99 @ 100% load ≥ 0.99 @ 100% load ≥ 0.99 @ 100% load ≥ 0.99 @ 100% load ≥ 0.99 @ 100% load
Output                      
Output Voltage 3 × 360/380/400/415 VAC (3Ph+N) 3 × 360/380/400/415 VAC (3Ph+N) 3 × 360/380/400/415 VAC (3Ph+N) 3 × 360/380/400/415 VAC (3Ph+N) 3 × 360/380/400/415 VAC (3Ph+N) 3 × 360/380/400/415 VAC (3Ph+N) 3 × 360/380/400/415 VAC (3Ph+N) 3 × 360/380/400/415 VAC (3Ph+N) 3 × 360/380/400/415 VAC (3Ph+N) 3 × 360/380/400/415 VAC (3Ph+N) 3 × 360/380/400/415 VAC (3Ph+N)
Voltage Regulation (Battery Mode) ± 1% ± 1% ± 1% ± 1% ± 1% ± 1% ± 1% ± 1% ± 1% ± 1% ± 1%
Frequency Range (Synchronous Tracking Range) 46~54 Hz or 56~64Hz 46~54 Hz or 56~64Hz 46~54 Hz or 56~64Hz 46~54 Hz or 56~64Hz 46~54 Hz or 56~64Hz 46~54 Hz or 56~64Hz 46~54 Hz or 56~64Hz 46~54 Hz or 56~64Hz 46~54 Hz or 56~64Hz 46~54 Hz or 56~64Hz 46~54 Hz or 56~64Hz
Frequency Accuracy (Battery Mode) 50 Hz ± 0.1 Hz or 60 Hz ± 0.1 Hz 50 Hz ± 0.1 Hz or 60 Hz ± 0.1 Hz 50 Hz ± 0.1 Hz or 60 Hz ± 0.1 Hz 50 Hz ± 0.1 Hz or 60 Hz ± 0.1 Hz 50 Hz ± 0.1 Hz or 60 Hz ± 0.1 Hz 50 Hz ± 0.1 Hz or 60 Hz ± 0.1 Hz 50 Hz ± 0.1 Hz or 60 Hz ± 0.1 Hz 50 Hz ± 0.1 Hz or 60 Hz ± 0.1 Hz 50 Hz ± 0.1 Hz or 60 Hz ± 0.1 Hz 50 Hz ± 0.1 Hz or 60 Hz ± 0.1 Hz 50 Hz ± 0.1 Hz or 60 Hz ± 0.1 Hz
Crest Factor 3:1 (Max) 3:1 (Max) 3:1 (Max) 3:1 (Max) 3:1 (Max) 3:1 (Max) 3:1 (Max) 3:1 (Max) 3:1 (Max) 3:1 (Max) 3:1 (Max)
Harmonic Distortion ≤ 2% THD (Resistive Load); ≤ 5% THD (Non-resistive Load) ≤ 2% THD (Resistive Load); ≤ 5% THD (Non-resistive Load) ≤ 2% THD (Resistive Load); ≤ 5% THD (Non-resistive Load) ≤ 2% THD (Resistive Load); ≤ 5% THD (Non-resistive Load) ≤ 2% THD (Resistive Load); ≤ 5% THD (Non-resistive Load) ≤ 2% THD (Resistive Load); ≤ 5% THD (Non-resistive Load) ≤ 2% THD (Resistive Load); ≤ 5% THD (Non-resistive Load) ≤ 2% THD (Resistive Load); ≤ 5% THD (Non-resistive Load) ≤ 2% THD (Resistive Load); ≤ 5% THD (Non-resistive Load) ≤ 2% THD (Resistive Load); ≤ 5% THD (Non-resistive Load) ≤ 2% THD (Resistive Load); ≤ 5% THD (Non-resistive Load)
Conversion Time                      
Mains to Battery 0 0 0 0 0 0 0 0 0 0 0
Inverter to Bypass 0 0 0 0 0 0 0 0 0 0 0
Waveform (Battery Mode) Pure Sine Wave Pure Sine Wave Pure Sine Wave Pure Sine Wave Pure Sine Wave Pure Sine Wave Pure Sine Wave Pure Sine Wave Pure Sine Wave Pure Sine Wave Pure Sine Wave
Overload                      
Mains Mode 100%-110% for 60 minutes, 110%-125% for 10 minutes, 125%-150% for 1 minute, >150% immediately 100%-110% for 60 minutes, 110%-125% for 10 minutes, 125%-150% for 1 minute, >150% immediately 100%-110% for 60 minutes, 110%-125% for 10 minutes, 125%-150% for 1 minute, >150% immediately 100%-110% for 60 minutes, 110%-125% for 10 minutes, 125%-150% for 1 minute, >150% immediately 100%-110% for 60 minutes, 110%-125% for 10 minutes, 125%-150% for 1 minute, >150% immediately 100%-110% for 60 minutes, 110%-125% for 10 minutes, 125%-150% for 1 minute, >150% immediately 105-110% for 60 minutes, 111-125% for 10 minutes, 126-150% for 1 minute, >150% for 200 milliseconds 105-110% for 60 minutes, 111-125% for 10 minutes, 126-150% for 1 minute, >150% for 200 milliseconds 105-110% for 60 minutes, 111-125% for 10 minutes, 126-150% for 1 minute, >150% for 200 milliseconds 105-110% for 60 minutes, 111-125% for 10 minutes, 126-150% for 1 minute, >150% for 200 milliseconds 105-110% for 60 minutes, 111-125% for 10 minutes, 126-150% for 1 minute, >150% for 200 milliseconds
Battery Mode 100%-110% for 60 minutes, 110%-125% for 10 minutes, 125%-150% for 1 minute, >150% immediately 100%-110% for 60 minutes, 110%-125% for 10 minutes, 125%-150% for 1 minute, >150% immediately 100%-110% for 60 minutes, 110%-125% for 10 minutes, 125%-150% for 1 minute, >150% immediately 100%-110% for 60 minutes, 110%-125% for 10 minutes, 125%-150% for 1 minute, >150% immediately 100%-110% for 60 minutes, 110%-125% for 10 minutes, 125%-150% for 1 minute, >150% immediately 100%-110% for 60 minutes, 110%-125% for 10 minutes, 125%-150% for 1 minute, >150% immediately 105-110% for 60 minutes, 111-125% for 10 minutes, 126-150% for 1 minute, >150% for 200 milliseconds 105-110% for 60 minutes, 111-125% for 10 minutes, 126-150% for 1 minute, >150% for 200 milliseconds 105-110% for 60 minutes, 111-125% for 10 minutes, 126-150% for 1 minute, >150% for 200 milliseconds 105-110% for 60 minutes, 111-125% for 10 minutes, 126-150% for 1 minute, >150% for 200 milliseconds 105-110% for 60 minutes, 111-125% for 10 minutes, 126-150% for 1 minute, >150% for 200 milliseconds
Parallel Capacity Up to 3 units in parallel Up to 3 units in parallel Up to 3 units in parallel Up to 3 units in parallel Up to 3 units in parallel Up to 3 units in parallel Up to 2 units in parallel Up to 2 units in parallel Up to 2 units in parallel Up to 2 units in parallel Up to 2 units in parallel
Efficiency                      
Mains Mode 95.5% 95.5% 95.5% 95.5% 95.5% 95.5% 94.0% 94.0% 94.0% 94.0% 94.0%
ECO Mode 98.5% 98.5% 98.5% 98.5% 98.5% 98.5% 98.0% 98.0% 98.0% 98.0% 98.0%
Battery Mode 94.5% 94.5% 94.5% 94.5% 94.5% 94.5% 93.0% 93.0% 93.0% 93.0% 93.0%
Battery                      
Standard Unit                      
Battery Model 12V/9Ah 12V/7Ah 12V/9Ah 12V/7Ah 12V/9Ah - N/A N/A N/A N/A N/A
Quantity (Cells) ±10 cells ×1 string ±16 cells ×1 string - ±16 cells ×2 strings - - N/A N/A N/A N/A N/A
Standard Charging Time 4 hours to 90% 4 hours to 90% - 4 hours to 90% - - N/A N/A N/A N/A N/A
Maximum Charging Current 1/2/3/4/5/6/7/8/9/10/11/12A±10% adjustable 1/2/3/4/5/6/7/8/9/10/11/12A±10% adjustable - 1/2/3/4/5/6/7/8/9/10/11/12A±10% adjustable - - N/A N/A N/A N/A N/A
Charging Voltage ±120VDC ±192VDC - ±120VDC/±192VDC - - N/A N/A N/A N/A N/A
Long-term Unit                      
Battery Model - - - Depends on Power Supply Time Depends on Power Supply Time Depends on Power Supply Time - - - - -
Quantity (Cells) ±10 cells ±16~±20 cells (Adjustable) - ±16~±20 cells (Adjustable) ±16~±20 cells (Adjustable) ±16~±20 cells (Adjustable) - - - - -
Maximum Charging Current 1/2/3/4/5/6/7/8/9/10/11/12A±10% adjustable 1/2/3/4/5/6/7/8/9/10/11/12A±10% adjustable (Max 12A charging current) - 1/2/3/4/5/6/7/8/9/10/11/12A±10% adjustable (Max 12A charging current) 12A 12A 16A 16A - -  
Charging Voltage ±13.65V × Number of Batteries (10) ±13.65V × Number of Batteries (16~20) - ±13.65V × Number of Batteries (16~20) ±13.65V × Number of Batteries (16~20) ±13.65V × Number of Batteries (16~20) - - - - -
Indicator Light                      
LCD Display System Status, Load Size, Battery Capacity, Mains Mode, Battery Mode, Bypass Mode, Input/Output Voltage, Fault Indication System Status, Load Size, Battery Capacity, Mains Mode, Battery Mode, Bypass Mode, Input/Output Voltage, Fault Indication System Status, Load Size, Battery Capacity, Mains Mode, Battery Mode, Bypass Mode, Input/Output Voltage, Fault Indication System Status, Load Size, Battery Capacity, Mains Mode, Battery Mode, Bypass Mode, Input/Output Voltage, Fault Indication System Status, Load Size, Battery Capacity, Mains Mode, Battery Mode, Bypass Mode, Input/Output Voltage, Fault Indication System Status, Load Size, Battery Capacity, Mains Mode, Battery Mode, Bypass Mode, Input/Output Voltage, Fault Indication System Status, Load Size, Battery Capacity, Mains Mode, Battery Mode, Bypass Mode, Input/Output Voltage, Fault Indication System Status, Load Size, Battery Capacity, Mains Mode, Battery Mode, Bypass Mode, Input/Output Voltage, Fault Indication System Status, Load Size, Battery Capacity, Mains Mode, Battery Mode, Bypass Mode, Input/Output Voltage, Fault Indication System Status, Load Size, Battery Capacity, Mains Mode, Battery Mode, Bypass Mode, Input/Output Voltage, Fault Indication System Status, Load Size, Battery Capacity, Mains Mode, Battery Mode, Bypass Mode, Input/Output Voltage, Fault Indication
Alarm Sound                      
Battery Mode Beeps every 4 seconds Beeps every 4 seconds Beeps every 4 seconds Beeps every 4 seconds Beeps every 4 seconds Beeps every 4 seconds Beeps every 4 seconds Beeps every 4 seconds Beeps every 4 seconds Beeps every 4 seconds Beeps every 4 seconds
Low Battery Beeps every 1 second Beeps every 1 second Beeps every 1 second Beeps every 1 second Beeps every 1 second Beeps every 1 second Beeps every 1 second Beeps every 1 second Beeps every 1 second Beeps every 1 second Beeps every 1 second
Overload Beeps every 0.5 second Beeps every 0.5 second Beeps every 0.5 second Beeps every 0.5 second Beeps every 0.5 second Beeps every 0.5 second Beeps every 0.5 second Beeps every 0.5 second Beeps every 0.5 second Beeps every 0.5 second Beeps every 0.5 second
Error Continuous Beep Continuous Beep Continuous Beep Continuous Beep Continuous Beep Continuous Beep Continuous Beep Continuous Beep Continuous Beep Continuous Beep Continuous Beep
Physical Performance                      
Standard Unit                      
Dimensions (W×D×H)mm 250X630X750 250X630X750 300 x815 x 1000 300 x815 x 1000 300 x815 x 1000 300 x815 x 1000 N/A N/A N/A N/A N/A
Net Weight (kgs) 109 126 139 225 250 - N/A N/A N/A N/A N/A
Long-term Unit                      
Dimensions (W×D×H)mm 250X630X750 250X630X750 300 x815 x 1000 300 x815 x 1000 360 x 790 x 1010 360 x 790 x 1010 550 x 850 x 1500 550x950x1700 650x1000x2100 - -
Net Weight (kgs) 43 43 43 60 61 108 113 150 185 - -
Operating Environment                      
Operating Temperature 0-40°C 0-40°C 0-40°C 0-40°C 0-40°C 0-40°C 0-40°C 0-40°C 0-40°C 0-40°C 0-40°C
Humidity <95% No Condensation <95% No Condensation <95% No Condensation <95% No Condensation <95% No Condensation <95% No Condensation <95% No Condensation <95% No Condensation <95% No Condensation <95% No Condensation <95% No Condensation
Noise Less than 65dB @ 1m Less than 65dB @ 1m Less than 65dB @ 1m Less than 65dB @ 1m Less than 65dB @ 1m Less than 65dB @ 1m Less than 75dB @ 1m Less than 75dB @ 1m Less than 75dB @ 1m Less than 75dB @ 1m Less than 75dB @ 1m
Control Management                      
Smart RS-232/USB Supports Windows® 2000/2003/XP/Vista/2008/7/8, Linux and MAC Supports Windows® 2000/2003/XP/Vista/2008/7/8, Linux and MAC Supports Windows® 2000/2003/XP/Vista/2008/7/8, Linux and MAC Supports Windows® 2000/2003/XP/Vista/2008/7/8, Linux and MAC Supports Windows® 2000/2003/XP/Vista/2008/7/8, Linux and MAC Supports Windows® 2000/2003/XP/Vista/2008/7/8, Linux and MAC Supports Windows® 2000/2003/XP/Vista/2008/7/8, Linux and MAC Supports Windows® 2000/2003/XP/Vista/2008/7/8, Linux and MAC Supports Windows® 2000/2003/XP/Vista/2008/7/8, Linux and MAC Supports Windows® 2000/2003/XP/Vista/2008/7/8, Linux and MAC Supports Windows® 2000/2003/XP/Vista/2008/7/8, Linux and MAC
Optional SNMP Power Management Supports SNMP Management and Network Management Power Management Supports SNMP Management and Network Management Power Management Supports SNMP Management and Network Management Power Management Supports SNMP Management and Network Management Power Management Supports SNMP Management and Network Management Power Management Supports SNMP Management and Network Management Power Management Supports SNMP Management and Network Management Power Management Supports SNMP Management and Network Management Power Management Supports SNMP Management and Network Management Power Management Supports SNMP Management and Network Management Power Management Supports SNMP Management and Network Management
*Ikiwa voltage ya output imeweka kuwa 3x360VAC, nguvu za output zitapungua hadi 90%
*Maelezo ya current yanaweza kubadilika bila ogledekeo la awali
FAQ
Q: Vipi zaidi za 3phase in & 3phase out high frequency online UPS kwa kila aina nyingine ya three-phase UPS?
A:

 Ingawa ina ufanisi zaidi kwa kumpara na UPS wa tholoni namba tatu ya maelezo ndogo na UPS wa tholoni namba tatu ya maelezo ndogo, yake ina ufanisi zaidi: ① Ufanisi mkubwa & kupunguza matumizi ya nishati: Teknolojia ya mabadiliko mfupi ya kiwango cha juu huchangia punguzo la matumizi ya nishati kwa asilimia 15~20 kwa kumpana na aina za maelezo ndogo; Ufanisi wa msingi wa ECO hufikia asilimia 96, huachia gharama muhimu ya kutumika kwa muda mrefu; ② Ndogo & kupunguza nafasi: Umbo ni chache na wivu (chache zaidi kwa asilimia 30~40 kuliko UPS wa maelezo ndogo), huchangia kupunguza nafasi ya kuweka kwa majukumu makubwa (kama vile data centers); ③ Tofauti sahihi ya tholoni namba tatu: Ina hamu imara ya tholoni namba tatu (inakubali tofauti ya mwaka ≤25%), utovu mdogo wa harmoniki (THD <3%), inapatikana kwa vifaa vya nguvu kubwa vilivyohitajika (mifano ni mfumo wa kudhibiti kimataifa, MRI ya daktari); ④ Badilisho haraka & hakuna muda wa kupunguza: Badilisho lisilo na kujulikana hasa kilichofikiwa <2ms kwenye nishati ya batilii, hutoa kuzuia kuing'iza katika utengenezaji au upotoso wa data; ⑤ Ukuaji mkubwa: Inasaidia unyanyapaa wa vitu viwili hadi nane ili kuboresha ukubwa, kufanana na mahitaji ya ongezeko la mizigo kwa muda mwingine; ⑥ Kudhibiti kwa akili: Imejengwa na skrini ya LCD ya touch, inasaidia uzigabuzi mbadala (SNMP/Modbus/4G), inafanana na kudhibiti ya kituo cha UPS nyingi.

Q: Ni ngoja ni nini kama chanzo muhimu na mbinu ya kufanya kazi ya High frequency on-line UPS (3phase in & 3phase out)?
A:

 Ni ni umeme lisilo na mwisho wa nguvu kubwa uliyoundwa kwa majukumu ya mifupi, kutumika kwa ujumla kusimamia vifaa vikubwa kutokana na matatizo ya grid ya umeme. Mazingira muhimu: ① Tumia umeme AC mifupi yenye ustawi, kuzuia maendeleo ya busara, mafuriko, mabaini, harmoniki na ukosefu wa umeme; ② Kufanya utaratibu wa kupungua kwa umeme wa batilinya (kwa muda wa sifuri) wakati umeme wa kiwango cha juu hujikuta ili kuhakikisha kuwa vifaa vya nguvu zinaweza kufanya kazi bila kupungua; ③ Kusawazisha ongezeko la mifupi na kuzuia matakwa ya grid. Sifa za kufanya kazi: Kutumia teknolojia ya ubadilishaji wa nguvu kuu - umeme AC mifupi unabadilishwa kwa DC na upasuaji, basi DC inabadilishwa tena kwa umeme AC mifupi yenye ustawi (sine wave safi) na upasuaji wa mifupi kwa matumizi ya ongezeko; wakati umeme wa kiwango cha juu hujikuta, paka ya batilinya hutumia umeme DC kwa upasuaji wa mifupi kwa haraka (muda wa kutumia <2ms); mfano wa nguvu magumu (20kHz~50kHz) unafanya IEE-Business iwe yenye ustawi zaidi na chache jiko kuliko IEE-Business za mifupi.

Jifunze kuhusu muuzaji wako
MV Switchgear Accessories
Zhejiang Wone IT Service Co., Ltd...
2yrs 1000+m² US$300000000+ China
Duuka ya mtandaoni
Kiwango cha upatikanaji kwa wakati
Muda wa majibu
100.0%
≤4h
Maelezo ya kampuni
Mkazi wa Kazi: 1000m² Jumla ya wafanyakazi: Upelelezi Mwaka wa Juu (USD): 300000000
Mkazi wa Kazi: 1000m²
Jumla ya wafanyakazi:
Upelelezi Mwaka wa Juu (USD): 300000000
Huduma
Aina ya Biashara: Mauzo
Makundi Makuu: vifaa vya kifaa/Mfano wa vifaa vya utambulisho/vifaa vya umeme viwango vya juu/vifaa vya umbo cha chini/vifaa vya utambuzi/vifaa vya kuzalisha/Vifaa vya umeme
Msimamizi wa huduma ya miaka yote
Huduma za usimamizi wa uangalifu kwa ajili ya ununuzi, matumizi, ustawi na huduma baada ya mauzo ya vifaa, kuhakikisha utekelezaji salama wa vifaa vya umeme, udhibiti wa maeneo yote, na matumizi ya umeme bila shida
Msupplai wa kifaa ameshapitisha ushuhuda wa kibali cha jukwaa na tathmini ya kisayansi, kuhakikisha utii, ustaarabu na uhakika kutoka kwenye chanzo.

Bidhaa Zinazohusiana

Maelezo Yanayohusiana

  • Vikorokoto vya Transformer Mkuu na Matatizo ya Mawasilisho ya Nishati ndogo
    1. Taarifa ya Ajali (Tarehe 19 Machi, 2019)Saa 16:13 tarehe 19 Machi, 2019, programu ya kuzingatia alama ilihitaji kwamba kifaa cha kuhamisha umeme kuu chenye namba 3 kilikuwa na matumizi mafupi ya chane. Kulingana na Mwongozo wa Matumizi ya Mfumo wa Kuhamisha Umeme (DL/T572-2010), wakurugenzi wa utaratibu na huduma (O&M) walipanga kutathmini hali ya kifaa cha kuhamisha umeme kuu chenye namba 3.Uthibitisho wa mahali: Paneli ya mbogo si ya umeme ya kifaa cha kuhamisha umeme kuu chenye namba 3
    02/05/2026
  • Matukio na Upatikanaji wa Kupata Ardhi moja kwenye Mstari wa Maendeleo wa 10kV
    Vipengele na Vifaa vya Kugundua Matatizo ya Uhamisho wa Awali kwa Mwamba1. Vipengele vya Matatizo ya Uhamisho wa Awali kwa MwambaIsara za Alama ya Kati:Kumbukumbu ya kujitambulisha inaanza kusimama, na taa ya maelezo iliyowekwa “Uhamisho wa Awali kwa Sehemu ya Bus ya [X] kV [Y]” inaangazia. Katika mifumo yenye uhamisho wa nukta ya neutral kwa kutumia koi la Petersen (koi la kuzima moto), taa ya “Koi la Petersen Imefanya Kazi” pia inaangazia.Maelezo ya Voltmeter ya Kufuatilia Uzalishaji wa Umeme:
    01/30/2026
  • Mfano wa kufanya kazi ya kuweka mizizi ya chini ya umeme kwa vifaa vya kupamba umeme vya 110kV~220kV
    Mfano wa mazingira ya kufunga chini ya pointi za neutrali za trafomu za gridi ya umeme 110kV~220kV lazima ufuatilie miundombinu ya kutahadhari insulation ya pointi za neutrali za trafomu, na pia lazima jaribu kuendelea kukudumu impedance ya zero-sequence ya steshoni za umeme, huku hakikisha kwamba impedance ya zero-sequence comprehensive katika chochote pointi cha short-circuit muhimu si zaidi ya mara tatu ya positive-sequence comprehensive impedance.Kwa trafomu za 220kV na 110kV katika majukwaa
    01/29/2026
  • Kwa Nini Viwanda vya Umeme Husatumia Mawe Kichwa Kidogo Kivuli na Mawe Vinavyovunjika?
    Kwa Nini Mstatio wa Nishati Huatumia Michororo, Mchanga, Michororo Madogo na Michororo Iliyovunjwa?Katika mstatio wa nishati, vifaa kama vile transforma za umeme na usambazaji, mistari ya usambazaji, transforma za voltaji, transforma za sasa na vichapishi vya kujitenga vinahitaji kuunganishwa na ardhi. Kupita juu ya uunganisho na ardhi, sasa tutafurahia kuchunguza kina kwa nini mchanga na michororo iliyovunjwa huatumika mara kwa mara katika mstatio wa nishati. Ingawa yanaonekana rahisi, michoror
    01/29/2026
  • Kwa nini kioti la transformer lazima likawishiwe kwenye moja tu ya pointi? Si kwamba kupungua kwa vipimo vingine ni zaidi ya imani?
    Kwa nini muundo wa transformer unahitaji kujiweka kwenye ardhi?Wakati inapatikana, muundo wa transformer pamoja na miundo ya chuma, sehemu, na vifaa vilivyovimba muundo na mawindo yote yanapokuwa katika nguvu ya umeme kali. Kusudi la nguvu hii ya umeme, wanapopata uwezo mkubwa kulingana na ardhi. Ikiwa muundo hajaijiweka kwenye ardhi, utakuwa na tofauti ya uwezo kati ya muundo na miundo ya chuma na chombo linavyoing'ara kwenye ardhi, ambayo inaweza kusababisha maongezi ya mara kwa mara.Pia, waka
    01/29/2026
  • Kuelewa kuhusu Mzunguko wa Transformer Neutral Grounding
    I. Nini ni Nukta ya Kati?Katika transforma na jeneratori, nukta ya kati ni nukta maalum katika wingu ambapo tensioni yoyote kati ya hii nukta na harakati zote za nje ni sawa. Katika diagramu ifuatayo, nuktaOinatafsiriwa kama nukta ya kati.II. Kwanini Nukta ya Kati Inahitaji Kutambulishwa?Mfumo wa uhusiano wa umeme kati ya nukta ya kati na dunia katika mfumo wa umeme wa tatu-viti unatafsiriwa kamamfumo wa kutambulisha nukta ya kati. Mfumo huu wa kutambulisha unaathibita:Usalama, ulimwengu na furs
    01/29/2026
Hujapata mtu muuzaji wa kutosha wala wewe? Achana na watu muuzaji ambao wametathmini kuwakutana nawe Pata Bei Yako Sasa
Hujapata mtu muuzaji wa kutosha wala wewe? Achana na watu muuzaji ambao wametathmini kuwakutana nawe
Pata Bei Yako Sasa
Tuma maoni
+86
Bonyeza kupakia faili
Pakua
Pata IEE Business Application
Tumia programu ya IEE-Business kupata vifaa kupata suluhisho kuunganisha wanaofanya kazi na kushiriki katika sekta yoyote wakati wowote mahali popote usisaidie maendeleo ya mipango yako ya umeme na biashara