為什麼這篇MSI 電源供應器 PTT鄉民發文收入到精華區:因為在MSI 電源供應器 PTT這個討論話題中,有許多相關的文章在討論,這篇最有參考價值!作者wolflsi (港都狼仔)看板PC_Shopping標題[開箱] MSI MPG A850GF...
MSI 電源供應器 PTT 在 星期天 Sunday Instagram 的最讚貼文
2021-04-09 00:30:19
感謝MSI #微星科技 爸爸😭 自從站住提供《動物星天頻道》之後... 老闆就送了整套電腦給我!這鋅含量超標了啊! 房間整個都是RGB光線...超級high的(?) 下面是電競椅&滑鼠的心得文(文長): 畫面右邊是我的新椅子~ 由於我身高有190公分,腿長有108公分(從髖骨到腳跟) 除了褲子很難...
狼窩好讀版:
https://wolflsi.pixnet.net/blog/post/69374150
MSI MPG A850GF特色:
●通過80PLUS金牌認證,降低廢熱產生,節省電能消耗及電費支出
●全模組化設計,搭配帶狀模組化線組,安裝便捷,整線輕鬆
●提供兩個EPS 4+4P接頭,支援Intel/AMD最新處理器/主機板平台
●半橋LLC諧振轉換,搭配12V同步整流及3.3V/5V DC-DC轉換設計,使12V可用功率最大化
,並改善各輸出電壓交叉調整率
●採用14公分Rifle軸承長壽靜音風扇,隨內部溫度控制風扇轉速,兼顧靜音及散熱
●採用全日系電容,提供完整OVP/UVP/OCP/OPP/SCP保護,加強可靠度及耐用度
●提供十年產品保固
MSI MPG A850GF輸出接頭數量:
ATX24P:1個
EPS 4+4P:2個
PCIE 6+2P:6個
SATA:8個
大4P:4個
小4P:1個
▼外盒正面,左上為MSI商標,中間為外觀圖,左下為產品名稱/輸出功率,右下為80PLUS
金牌標誌及十年保固圖示,最下方為三種語言產品特色簡介
https://i.imgur.com/kZHTtlM.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/kZHTtlMl.jpg?e=1739405104&s=BmbGT1XHzZO7BhuaJMU2Fg)
換效率表,右側為外觀尺寸及模組化輸出插座圖
https://i.imgur.com/XYPY0TH.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/XYPY0THl.jpg?e=1739418824&s=nqfU_EKSZzOU_M8Q8kkNtA)
資訊,請瀏覽我們的網站”說明、安規認證標誌、條碼、加州65號法案警語
https://i.imgur.com/Llz6DBY.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/Llz6DBYl.jpg?e=1739437477&s=CWy44MYLEtLg-gfnrjZIXQ)
左側面有商標、多國語言特色說明、產品名稱/輸出功率
https://i.imgur.com/Wm7bpyw.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/Wm7bpywl.jpg?e=1739449499&s=kjgfcn1f8A1D_Ave-IUxzA)
定螺絲及交流電源線
https://i.imgur.com/2RboURI.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/2RboURIl.jpg?e=1739448287&s=Vs0fFvKMKdOiYm4niD-bzQ)
https://i.imgur.com/FKLvUQx.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/FKLvUQxl.jpg?e=1739397105&s=fACgnX8u6KJKid8MfuhZSg)
https://i.imgur.com/fYtU27p.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/fYtU27pl.jpg?e=1739402051&s=nsk6nrOEuWIpB7Ml-OlQeg)
https://i.imgur.com/wybNOtG.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/wybNOtGl.jpg?e=1739436964&s=6HIzJQSWvGrj2MnUg7Mx2g)
https://i.imgur.com/rvF4CQG.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/rvF4CQGl.jpg?e=1739400219&s=Rd6VgU6fFJ-KLAmB3qbGxw)
各組最大輸出電流/功率、總輸出功率、80PLUS金牌認證、警告訊息、安規認證、代工廠/
型號、產地
https://i.imgur.com/dMCOJaA.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/dMCOJaAl.jpg?e=1739453599&s=0PdRWiKjY08Y4zzvKzQT8A)
週邊(SATA/大4P/小4P)、12VCPU-CPU、12VVGA1-VGA1、12VVGA2-VGA2&CPU
https://i.imgur.com/hHHX82d.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/hHHX82dl.jpg?e=1739403058&s=PydOeVcccB7laDByplc7qg)
https://i.imgur.com/K8tRPjP.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/K8tRPjPl.jpg?e=1739399593&s=p-KOQ_b2L0royQoiXjE-2Q)
https://i.imgur.com/8n3k02A.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/8n3k02Al.jpg?e=1739441849&s=SZNBnW2CsBnk5XUub5TN3w)
接頭線路長度為50公分,接頭間線路長度為15公分;另外兩組每條提供1個PCIE 6+2P接頭
,線路長度為50公分
https://i.imgur.com/W9QKN8O.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/W9QKN8Ol.jpg?e=1739453939&s=aJXQPqw7MOL92s63xEP4pA)
度為49公分,接頭間線路長度為14.5公分
https://i.imgur.com/seI4OG5.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/seI4OG5l.jpg?e=1739405378&s=zbLjudvD3SB9dAdgAnuVYw)
第一個接頭線路長度為50公分,大4P接頭間線路長度為14.5公分,末端小4P接頭線路長度
為14.5公分
https://i.imgur.com/1LSw0nb.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/1LSw0nbl.jpg?e=1739439201&s=gOEH2kuFhcPlR9vOTu1pXw)
理器電源線時,就只能連接三條顯示卡電源線,只有使用一條處理器電源線時才能連接四
條顯示卡電源線
https://i.imgur.com/OoDELYq.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/OoDELYql.jpg?e=1739442565&s=uqatPqEFJV0rP7TBcNco7g)
https://i.imgur.com/pk92u9j.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/pk92u9jl.jpg?e=1739427822&s=19Ccu-ZV1s8VVM2MYDyLEw)
次側12V同步整流、DC-DC轉換3.3V/5V、無跨接線的全模組化結構布局
https://i.imgur.com/t65AGsB.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/t65AGsBl.jpg?e=1739430748&s=ULZb1vEZFg7LIOJ5P9fwyA)
風片
https://i.imgur.com/vAkWOH8.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/vAkWOH8l.jpg?e=1739448604&s=7Crxv9IrfK5SKwqdqaB3KA)
https://i.imgur.com/JSGOmrV.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/JSGOmrVl.jpg?e=1739444680&s=qId_qDpgPaIVAQPvbDFS1Q)
https://i.imgur.com/zF4Es9m.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/zF4Es9ml.jpg?e=1739435398&s=II2vHr0zI9_AcWDc759uuQ)
外殼完成接地通路,電源總開關的白/黑線接至主電路板,交流電源線磁芯、插座、開關
焊點、X電容接腳均有包覆套管,不過藍線/黑線套管未完全套到底導致焊點裸露
https://i.imgur.com/xm4sRXN.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/xm4sRXNl.jpg?e=1739391954&s=K36z2ETAgblQ18NowDjvTA)
防爆保險絲未包覆套管
https://i.imgur.com/UA4Na7R.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/UA4Na7Rl.jpg?e=1739431398&s=UqX0T-IUi9ZEdMhmJhnE1w)
電容放電IC及隨附電阻,可在通電時減少傳統放電電阻造成的微小交流功耗的損失,並於
電源切斷時正常釋放X電容殘留電能避免觸電
https://i.imgur.com/4QHi7wC.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/4QHi7wCl.jpg?e=1739415963&s=JfXoUtcmHz_ImmYcy08UKg)
塗抹散熱膏後裝在一個加大L型散熱片的兩側
https://i.imgur.com/Ib8BFnr.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/Ib8BFnrl.jpg?e=1739410449&s=3E19U01CsTZBIqm0gfjXlw)
IPA60R099P7全絕緣封裝Power MOSFET及一顆ON SEMI FFSP0865A SiC Schottky Diode,
一次側半橋式LLC(HB-LLC)諧振功率級使用兩顆TOSHIBA TK25A60X5全絕緣封裝Power
MOSFET。右下APFC電感採用封閉式磁芯結構,APFC電感左側的NTC熱敏電阻用來抑制輸入
湧浪電流,在電源啟動後NTC下方的繼電器會將其短路,去除NTC所造成的功耗損失。APFC
電容左側有兩顆一次側MOSFET隔離驅動變壓器,驅動變壓器外包覆黑色聚酯薄膜膠帶
https://i.imgur.com/fOXHVCI.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/fOXHVCIl.jpg?e=1739455067&s=FsRSuiZwBdB4POSGZ7g3oQ)
https://i.imgur.com/iPfSDdk.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/iPfSDdkl.jpg?e=1739411379&s=H9a4QT_ZToDQnCAxAR8YbA)
其左側為PFC節能電路使用的Champion CM03X
https://i.imgur.com/PGRt2IN.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/PGRt2INl.jpg?e=1739393256&s=esFQBLPwne1rH15bLshtjw)
次側12V同步整流
https://i.imgur.com/NPDi36Q.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/NPDi36Ql.jpg?e=1739397903&s=_foblRM4KR1Olf3qhS5kDQ)
https://i.imgur.com/LWvTdCm.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/LWvTdCml.jpg?e=1739443193&s=XhEsjgm5mo_phYqOEVZ3Ag)
https://i.imgur.com/xRv8Y6t.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/xRv8Y6tl.jpg?e=1739446757&s=hTCVjef4OHD2PtVNinEfWA)
繞組焊點及MOSFET大電流路徑以敷錫方式來增強載流能力及協助散熱,也可將熱量傳導至
電路板正面的金屬散熱片,風扇溫控用熱敏電阻FTH1安裝在右側三顆MOSFET上方邊緣處,
偵測該處溫度來調整風扇轉速
https://i.imgur.com/DyajcnF.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/DyajcnFl.jpg?e=1739409297&s=DBrYDK7TZQexMnYYfPCIdQ)
https://i.imgur.com/2VMQGJz.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/2VMQGJzl.jpg?e=1739451403&s=d7_dzAk7LflGAW6mVwW-dw)
TinySwitch-LT系列TNY177PN整合式電源IC,輔助電源電路變壓器包覆黑色聚酯薄膜膠帶
https://i.imgur.com/YxuQK2A.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/YxuQK2Al.jpg?e=1739455021&s=r6ewYnaH1v_vsT5e8HKAEQ)
Chemi-con固態電容
https://i.imgur.com/Q1O1XRp.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/Q1O1XRpl.jpg?e=1739445072&s=jQRHHo5_p9_bPphikxZX9A)
QM3016D MOSFET,控制核心為Anpec的APW7159C雙通道同步降壓PWM控制器
https://i.imgur.com/QGuxY28.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/QGuxY28l.jpg?e=1739450862&s=dqmvce-cvmKO8gggj-VGMA)
使用,均採用Nippon Chemi-con電解電容
https://i.imgur.com/HkHtCMh.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/HkHtCMl.jpg?e=1739422347&s=7enJYEkPGyoImCZjfCK4zg)
https://i.imgur.com/Z5UywkD.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/Z5UywkDl.jpg?e=1739438911&s=JDKBO2fFsO1E9CrAdpcORQ)
電壓/低電壓/過電流/短路等保護,同時接受PS-ON信號控制及產生Power Good信號。
Weltrend WT7518D負責提供另外兩組12V的過電流偵測,並與ST9S429-PG14連動
https://i.imgur.com/HUr7nHt.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/HUr7nHtl.jpg?e=1739409834&s=zx27K9YSKJ6vaxIUouKUwg)
https://i.imgur.com/uIQGevA.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/uIQGevAl.jpg?e=1739449676&s=pjq6H1pS8cPGfHzwsR2k2w)
,提供12V過電流保護
https://i.imgur.com/wdDUGKS.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/wdDUGKSl.jpg?e=1739410375&s=vSfAzlyR5GULNKPhZV3z2g)
,正面亦增加一些加強濾波用的Nichicon固態電容
https://i.imgur.com/gLKCtHl.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/gLKCtHll.jpg?e=1739408851&s=olrbiCzf3OlEr_niqi8keg)
接下來就是上機測試
測試文閱讀方式請參照此篇:電源測試文閱讀小指南
http://wolflsi.pixnet.net/blog/post/67908465
▼MSI MPG A850GF於20%/50%/100%下效率分別為92.41%/92.53%/87.74%,符合80PLUS金牌
認證要求20%輸出87%效率、50%輸出90%效率、100%輸出87%效率
從電源本體及線組插頭處測試的電壓差異,會對效率產生0.06%至1.19%左右的影響
https://i.imgur.com/EeXUfxe.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/EeXUfxel.jpg?e=1739431506&s=HoR6Psd06bq6XEnt36p8IA)
牌認證要求輸出50%下功率因數需大於0.9,MSI MPG A850GF於50%輸出下功率因數為
0.9790
https://i.imgur.com/wBFbA6M.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/wBFbA6Ml.jpg?e=1739426973&s=07Hw6HbAtf5wKblEl5G0SQ)
以3.3V/5V電流達13.9A以後就不再往上加,3.3V/5V/12V電壓記錄如下表
https://i.imgur.com/cnK0LWO.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/cnK0LWOl.jpg?e=1739408804&s=b760F9DHh0m0lmz45WAExw)
https://i.imgur.com/9sv46Ml.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/9sv46Mll.jpg?e=1739451509&s=5auKbilHLoUDTU0ODA3a-A)
https://i.imgur.com/XZDRZSs.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/XZDRZSsl.jpg?e=1739449316&s=dgENdAFGFdjtJx1Zj9djUQ)
https://i.imgur.com/mLxZGFH.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/mLxZGFHl.jpg?e=1739447586&s=H_WIAeCD3RkSKCzj7urc9A)
(CL3)的3.3V/5V/12V電壓變化,並無出現超出±5%範圍情形(3.3V:3.135V-3.465V,5V:
4.75V-5.25V,12V:11.4V-12.6V)
https://i.imgur.com/kfPp855.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/kfPp855l.jpg?e=1739398405&s=_VnZgHHqrilmlb6XWAtQ2Q)
分別是主變壓器107℃,橋式整流98.4℃,二次側86.6℃,APFC區79.6℃,一次側73℃,
3.3V/5V DC-DC區64.6℃
https://i.imgur.com/pMFGw7t.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/pMFGw7tl.jpg?e=1739453766&s=BAE0RWrx5ftwZZVSRqUSlA)
https://i.imgur.com/86ZVULh.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/86ZVULl.jpg?e=1739429513&s=yGXjtISeKHxjotzfTEA0Tw)
https://i.imgur.com/ITa6gXn.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/ITa6gXnl.jpg?e=1739427573&s=wzQLanqpsWe_JoaNxdJvWw)
https://i.imgur.com/sfCfSHH.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/sfCfSHHl.jpg?e=1739425177&s=qXQOkjNtFownnzSgDrrkeA)
https://i.imgur.com/V7w4Srx.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/V7w4Srxl.jpg?e=1739404859&s=0ulS2uSaQBaCnbJnOJU08g)
列分別是主變壓器104.7℃,橋式整流101.6℃,二次側88.3℃,APFC區84.9℃,一次側
77.5℃,3.3V/5V DC-DC區46.2℃
https://i.imgur.com/uwwdZJe.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/uwwdZJel.jpg?e=1739428598&s=1MdfetSKEPrKi3kxRppfMQ)
點為40.7℃
https://i.imgur.com/2PiyKc3.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/2PiyKc3l.jpg?e=1739454019&s=I4yVgXhWbHByIQ4IBJ_JeQ)
(0.000s)時,12V於12ms開始壓降,16ms負載端電壓11.4V,20ms至驟降轉折點,略低於
Intel制定Hold-up time需高於16ms的要求
https://i.imgur.com/FlGUUIQ.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/FlGUUIQl.jpg?e=1739434275&s=KcjtWD6h-vxvMCsPXUwbRg)
從交流接通處當成起點(0.000s)時,各路電壓輸出於56ms時呈現穩定,12V上升時間為
12ms
https://i.imgur.com/xnSlcti.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/xnSlctil.jpg?e=1739403713&s=1bgb6MxvPhQJopBsIkag6g)
色波型為5V電壓波型,CH4綠色波型為3.3V電壓波型
▼輸出無負載時,5V輸出帶有13.6mV的漣波,3.3V輸出帶有7.6mV的漣波,12V輸出無明顯
漣波
https://i.imgur.com/pg7ZZtE.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/pg7ZZtEl.jpg?e=1739407557&s=DNJBS-HSPy4L2LWDauvMvA)
20.8mV/18mV/12.4mV,高頻漣波分別為15.2mV/18mV/12.8mV
https://i.imgur.com/idKXV0k.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/idKXV0kl.jpg?e=1739453269&s=HYAiGEgaEnfuY5Qoup1IEQ)
高頻漣波分別為10.8mV/18mV/9.6mV
https://i.imgur.com/vKiAib1.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/vKiAib1l.jpg?e=1739398365&s=59FIuspetjdL20ikqYITOQ)
,3.3V電壓變動高峰處維持時間在240微秒左右
https://i.imgur.com/VOgf2bU.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/VOgf2bUl.jpg?e=1739397261&s=PwrL0eyVRf5g-n_7rp1rtA)
動,5V電壓變動高峰處維持時間在240微秒左右
https://i.imgur.com/9GnKQvk.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/9GnKQvkl.jpg?e=1739405037&s=x8nwO0U1CBaSDyUP961gAw)
https://i.imgur.com/NrKmkVj.jpg
![](https://cache.ptt.cc/c/https/i.imgur.com/NrKmkVjl.jpg?e=1739440225&s=x6oeZJCjjSWKyj0Ez3bQJA)
本體及內部結構心得小結:
◆MSI MPG A850GF的代工廠為CWT
◆全模組化設計,搭配全黑帶狀線材,CPU供電提供4+4P接頭兩個,提供1個小4P接頭。若
是使用兩條處理器電源線時,就只能連接三條顯示卡電源線,只有使用一條處理器電源線
時才能連接四條顯示卡電源線
◆沖壓在金屬板上的風扇護網,裝在風扇及外殼之間
◆交流電源線磁芯、插座、開關焊點、X電容接腳均有包覆套管,部分套管未完全套到底
導致焊點裸露
◆主電路板輸入及開關線路連接處有點白色固定膠,突波吸收器有包覆套管,保險絲未包
覆套管
◆電路板背面焊點整體做工良好,部分大電流線路有敷錫處理
◆採用虹冠方案方案APFC、半橋LLC諧振與同步整流輸出12V,並透過DC-DC轉換3.3V/5V
◆APFC功率元件使用Infineon/ON SEMI,一次側功率元件使用TOSHIBA,12V同步整流功率
元件使用Infineon,3.3V/5V DC-DC功率元件使用Ubiq,APFC與一次側均使用全絕緣封裝
MOSFET
◆內部電容全部採用Nichicon/Nippon Chemi-con/Rubycon日系品牌
◆使用兩顆獨立電源管理IC,具備完整OVP/UVP/OCP/SCP,監測3.3V/5V/四路12V輸出電壓
與電流
各項測試結果簡單總結:
◆MSI MPG A850GF於20%/50%/100%下效率分別為92.41%/92.53%/87.74%,符合80PLUS金牌
認證要求20%輸出87%效率、50%輸出90%效率、100%輸出87%效率
◆MSI MPG A850GF功率因數修正滿足80PLUS金牌認證要求的輸出50%下功率因數大於0.9
◆偏載測試,12V維持空載,測試3.3V滿載、5V滿載、3.3V/5V滿載的3.3V/5V/12V電壓變
化,均無出現超出±5%範圍情形
◆從紅外線熱影像圖來看,主變壓器有最高的溫度,橋式整流/二次側/APFC同樣有明顯溫
度
◆全負載輸出時,切斷AC輸入模擬電力中斷,12ms後12V開始壓降,16m時負載端電壓
11.4V,20ms至驟降轉折點,略低於Intel制定Hold-up time需高於16ms的要求
◆電源接通到各輸出全負載狀態下,3.3V/5V/12V電壓達到穩定的時間在56ms,12V上升時
間為12ms
◆輸出漣波測試,電源供應器於空載下3.3V/5V輸出帶有一些漣波,12V輸出無明顯漣波;
於綜合靜態負載滿額輸出下12V/5V/3.3V各路低頻漣波分別為20.8mV/18mV/12.4mV;於12V
靜態負載滿額輸出下12V/5V/3.3V各路低頻漣波分別為18.4mV/17.6mV/8.8mV
◆動態負載測試,3.3V/5V/12V的最大變動幅度分別為432mV/368mV/304mV,3.3V/5V電壓
變動高峰處維持時間在240微秒左右
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