EnglishIngarihi

PS-CB101 High-Voltage Whakawhiti Miihini Whakaaturanga Whakaaturanga Kaihanga Kaihanga Kaihanga Kaihanga

Ko nga ahuatanga whakahuri o tenei HA ka puta: he pai mo nga momo whakawhiti SF6 katoa, nga taputapu whakakotahi GIS, nga huringa korehau, me nga huringa hinu i hangaia i te kainga me waho. Ka taea e te kaitirotiro ahuatanga miihini te huri ngaohiko teitei te ine tika i nga tawhā ahuatanga hihiri o nga kaikohiko hiko teitei o nga momo taumata ngaohiko, penei i te hinu iti, te hinu teitei, te korehau, me te hexafluoride whanariki. Ko nga kaiwawao hiko teitei te kawenga mo nga mahi e rua o te mana whakahaere me te whakamarumaru i roto i te punaha hiko, a ko o raatau mahi e pa ana ki te mahi haumaru o te punaha hiko. Ko te tawhā āhuatanga miihini tetahi o nga tawhā nui hei whakawa i te mahi a te kaitukino iahiko.
KAUPAPA KI TE PDF
Nga korero
Tohu
Hua Whakataki Tohu Whakataki

 

  1. 1.Ko tenei taputapu he rorohiko ahumahi whakauru, ko te poari matua kei runga i te CortexTM-A8, ko te auau matua ko 1GHZ, ko te mahara flash ko 1GB, a ko te tere o te peke he 16 hēkona anake. Ko te mata nui 8.4-inihi te tae, te punaha whakahaere matapihi, te atanga mahi ngawari-kaiwhakamahi, te mata pa, te tautoko i te whakauru Hainamana me te reo Ingarihi, he ngawari ki te whakamahi i nga kaiwhakahaere o te waahi.
    2. He perehi waiariki tere tere, he watea mo te tuhi i te waahi o nga raraunga whakamatautau.
    3. Ko te whakaurunga mana whakahaere i roto i te miihini ka whakakore i te hiahia mo te tuku hiko tuarua i runga i te waahi, he pai me te tere ki te whakamahi. Ka taea e ia te whakarato DC5~270V te mana whakahaere, 20A o naianei. Ko te uara ngaohiko whakahaere o te whakatuwheratanga me te kati kati ka taea te whakarite noa, a ka taea te mahi i te whakamatautau mahi ngaohiko iti o te waahi ara iahiko.
    4. Kua rite ki te pūoko rārangi, pūoko hurihanga, pūoko ao me te taiapa, motuhake pūmau multifunctional hononga, he tino watea me te ngawari te whakaurunga.
    5. E tika ana mo nga momo whakawhiti SF6 katoa, nga taputapu hiko huinga GIS, nga huringa korehau, me nga huringa hinu i hangaia i te kainga me o waho.
    6. Ko te mahi whakawhiti kotahi, tiki i nga raraunga me nga whakairoiro katoa.
    7. Ka taea e te kaihautu te penapena i nga roopu 30000 o nga raraunga whakamatautau o naianei (kaari mahara whakawhanui), a he watea te karaka i roto i te miihini mo te penapena.
    8. Kua oti te whakauru ki te atanga kōpae U, ka taea te tiaki tika i nga raraunga ki te kōpae U, te tuku ki te rorohiko mo te tātari me te tiaki.
    9. Ka taea e ia te ine i te 12 nga pakaru whakapiri whakarewa, e 6 nga pakaru matua me te 6 nga pakaru awhina i te wa kotahi.
    10. Kei roto te kopaki kōpaki. Ko te kurupae envelope paerewa ka hangaia ma te uara i whakamatauria e te huringa mo te tātari me te whakataurite, tae atu ki te tātari auau wiri.
    11. Ka taea e te ara iahiko anti-whakararuraru o roto te makona i te whakamahi pono i roto i te teihana 500KV.
  2.  
Tawhā Hua

 

Te ine i te wa

12 nga hongere i te wa whakatuwhera (katinga).

Nga wa rereke i te wahanga whakatuwhera (katinga).

Te rereketanga i waenga i nga wahanga whakatuwhera (kati) i nga waa rereke

Te kati (whakatuwhera) te taima tāwhana (wā tāwhana)

Awhe whakamātautau keu o roto

0.01ms~20s

Whakatau

0.01ms,

Putua te awhe whakamatautau whakapā

0.01ms~200s

Whakatau

0.1ms

Reiti tika i roto i te 1000ms

0.05%±1 kupu

Te ine tere

Te whakatuwhera noa (ka kati noa) tere

Te tere toharite i roto i te waa kua tohua (waa whiu, wa koki ranei)

Awhe tere

1mm pūoko 0.01~25.00m/s

0.1mm pūoko 0.001~2.50m/s

360° pūoko koki 1 huringa/ 0.25°

Te ine whiu

Panuku whakapä (whiu)

Paanga Whakapā (tawhiti tuwhera)

Te haere nui

Te whiu nui atu, te whiu whakamuri ranei

Awhe ine

Pūoko rārangi

50mm

Awhe ine

0-50mm

Whakatau

0.1mm

360 pūoko raina

360°

Awhe ine

0-1000mm

Whakatau

0.25

Awhe ine ine pūoko whakatere

0-300mm

Whakatau

0.1mm

Whakaaturanga o naianei

Te 30A teitei o naianei

Whakatau

0.01A

Te kaha taputapu

AC 220V ± 10%; 50Hz ± 5%

Putanga mana DC

DC5~270V ka taea te whakarite tonu, DC110V≤30A (wa poto), DC220V≤20A (wa poto)

Putua ngaohiko keu whakapā

AC/DC10-300V, ≤120A nāianei

Te awhe ine inenga whakawehe

Putanga ngaohiko

DC5~270V (ka taea te whakarite)

Te wa whakaputa hiko

0.01-20 hēkona (ka taea te whakarite)

Ko te 200 hēkona te wa whiwhi morahi o te tohu pakaru

Ka taea e ia te ine i te wa kati me te whakatuwheratanga o te pakaru, te toru-waahanga
wā rerekē, te wā tāwhana me te maha o ngā wā

Rōrahi kaihautū

360×260×170mm

Whakamahia te taiao

-20℃~+50℃

Te haumākū pātahi

≤90%

 

circuit breaker tester

circuit breaker tester finder

circuit breaker trip tester

electrical breaker tester

electrical circuit breaker tester

Mena kei te pirangi koe ki a maatau hua, ka taea e koe te kowhiri ki te waiho i o korero ki konei, a ka tata tonu te korero ki a koe.


Tuhia to korero ki konei ka tukuna mai ki a matou
E pa ana Rongorongo
  • Find the Best Loop Impedance Tester for Sale and Ensure Electrical Safety
    Find the Best Loop Impedance Tester for Sale and Ensure Electrical Safety
    When ensuring electrical safety, accurate loop impedance testing is crucial. Whether you’re an electrician, a facilities manager, or a safety inspector, having a reliable loop impedance tester for sale is essential. This article will guide you through the key considerations when purchasing a loop impedance tester, explore the different types available, and highlight the benefits of choosing a high-quality instrument. Understanding the nuances of these testers will help you make an informed decision and ensure compliance with safety regulations.
    Taipitopito
  • Comprehensive Guide to Loop Impedance Meter for Electrical Safety
    Comprehensive Guide to Loop Impedance Meter for Electrical Safety
    Ensuring electrical safety is paramount in any installation, and a loop impedance meter is a crucial tool for achieving this. This device measures the total impedance of the earth fault loop, helping to verify that protective devices will operate correctly under fault conditions. In this article, we'll explore what a loop impedance meter is, how it works, its applications, factors influencing measurements, choosing the right meter, and the importance of regular testing. Investing in a quality meter from Push Tester is a step towards safer electrical systems.
    Taipitopito
  • Understanding and Choosing a Line Impedance Tester for Optimal Network Performance
    Understanding and Choosing a Line Impedance Tester for Optimal Network Performance
    In the realm of telecommunications and electrical engineering, maintaining the integrity of transmission lines is paramount. A line impedance tester is a crucial instrument for ensuring optimal signal transmission and preventing costly network disruptions. This article delves into the world of line impedance testing, exploring its importance, applications, types of testers, and what to look for when making a purchase. Ensuring accurate impedance measurements is essential for efficient and reliable network performance. Choosing the right tester can significantly impact troubleshooting speed and the overall quality of your infrastructure. A line impedance tester, also known as a cable impedance analyzer, is a device used to measure the characteristic impedance of coaxial cables, twisted pair cables, and other transmission lines. Impedance, measured in ohms, represents the opposition to the flow of alternating current. Maintaining the correct impedance (typically 50 or 75 ohms) is vital for minimizing signal reflections, ensuring efficient power transfer, and preventing signal degradation. Mismatched impedance can lead to signal loss, ghosting, and reduced network performance. Regular testing helps identify faults and maintain network integrity.
    Taipitopito

Mena kei te pirangi koe ki a maatau hua, ka taea e koe te kowhiri ki te waiho i o korero ki konei, a ka tata tonu te korero ki a koe.