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数据表概述Arista通过其软件驱动的方法开创了云网络运动,该方法建立在具有一致,可靠的软件提供,基于开放标准的设计和本机的可编程性的云原理上。CloudVision®通过软件一致性扩展了与多域管理平面相同的架构方法,用于使整个网络,跨私人,公共和混合云以及有线和无线校园和分支环境自动化整个网络。CloudVision使企业能够通过交钥匙软件包获得云级自动化和遥测的好处。CloudVision是一种用于云网络的网络范围的方法,包括用于自动化,合规性,遥控器,分析和编排的功能的软件套件。
Appearance Colorless Odor sweet Odor Threshold 7 - 20 ppm Melting Point/Range -90 °C / -130 °F Softening Point No data available Boiling Point/Range 126 °C / 258.8 °F Flammability (liquid) Flammable On basis of test data Flammability (solid,gas) Not applicable Liquid Explosion Limits Lower 1.2 Upper 7.5 Flash Point 27 °C / 80.6 °F Method - No information available自动定位温度415°C/779°F分解温度无数据可用的数据pH 6.2 @ 20°C粘度0.83 MPA @ 20°C 20°C水溶性在其他溶剂中无溶性溶解度无信息可用的分区系数(n- octanol/water)
在健康女性受试者中的Aimovig和综合口服避孕药的开放标签,药代动力学相互作用研究中,Erenumab(140 mg皮下[SC],单剂量)并不影响含有含有乙基延伸质学乙基延伸质和非植物的组合避孕药的药代动力学。在健康志愿者中的随机,双盲,安慰剂控制的研究中,伴随sumatriptan伴随给药(140 mg静脉注射[iv],单剂量),对与苏马氏素单独的苏马特酮相比,对血压没有影响。aimovig对苏门普坦的药代动力学没有影响。erenumab不会被细胞色素P450酶代谢,并且不太可能引起促炎性细胞因子的明显变化,这可能会影响细胞色素P450酶表达或活性。因此,与细胞色素P450酶的底物,诱导剂或抑制剂的伴随药物相互作用不太可能。
5.2.13. 显示反转关闭(20H) ...................................................................................................... 41 5.2.14. 显示反转打开(21H) ...................................................................................................... 42 5.2.15. 所有像素关闭(22H) ...................................................................................................... 43 5.2.16. 所有像素打开(23H) ...................................................................................................... 44 5.2.17. 显示关闭(28H) ............................................................................................................. 45 5.2.18. 显示打开(29H) ............................................................................................................. 46 5.2.19. 撕裂效果线关闭(34H) ............................................................................................. 47 5.2.20. 撕裂效果线打开(35H) ............................................................................................. 48 5.2.21.显示访问控制(36H) ................................................................................................ 49 5.2.22. 空闲模式关闭(38H) ................................................................................................ 50 5.2.23. 空闲模式开启其他模式关闭(39H) ................................................................................ 51 5.2.24. 接口像素格式(3AH) ............................................................................................. 52 5.2.25. 写入撕裂扫描线(44H) ............................................................................................. 53 5.2.26. 读取扫描线(45H) ............................................................................................. 54 5.2.27. 写入撕裂扫描线宽度(46H) ............................................................................................. 55 5.2.28. 读取撕裂扫描线宽度(47H) ............................................................................................. 56 5.2.29. 写入显示亮度值(51H) ............................................................................................. 57 5.2.30.读取显示器亮度值(52h)..................................................................................... 58 5.2.31. 写入 CTRL 显示值(53H) ........................................................................................ 59 5.2.32. 读取 CTRL 显示值(54H) ........................................................................................ 60 5.2.33. 读取显示器 ID1(DAH) ............................................................................................. 61 5.2.34. 读取显示器 ID2(DBH) ............................................................................................. 62 5.2.35. 读取显示器 ID3(DCH) ............................................................................................. 63 5.2.36. 在 SPI 模式下读取 EXTC 命令(F8H) ............................................................................. 64 5.2.37. EXTC 命令设置使能寄存器 (FFH) .......................................................................... 65 5.3. 客户命令列表及说明 ...................................................................................... 68 5.3.1. WRMADC_EN:0Ah .............................................................................................. 68 5.3.2. RGB 接口控制:23h ......................................................................................... 68 5.3.3. vcom_adj:38H ~ 3Ah ........................................................................................... 69 5.3.4. PADCTRL1: 48H .................................................................................................... 74 5.3.5. BOOST_CTRL1~4 :80h~83h ............................................................................. 74 5.3.6. EXTPW_CTRL1~3:90H~92H ............................................................................. 77 5.3.7. PUMP_CTRL1~4:98H~9BH............................................................................. 79 5.3.8. RDEXTCSPI:F8H................................................................................................................ 83 5.3.9. ENEXTC:FFH ................................................................................................................ 84 5.3.10。 PGAMVR0~5;PAMPR0~1;PGAMPK0~9;GAMP0:B0H~C2H......................... 87 5.3.11. NGAMVR0~5;NAMPR0~1;NAMPK0~9;GAMN0:D0H~E2H ................................ 88 5.3.12. ENEXTC:FFH ...................................................................................................... 89 5.3.13 GIP_VST_1~12:00H~0BH ........................................................................................ 100 5.3.14. GIP_VEND_1~14:20H~2DH ................................................................................ 101 5.3.15. GIP_CLK_1~8:30H~37H ................................................................................... 102 5.3.16. GIP_CLKA_1~10:40H~49H ........................................................................... 103 5.3.17. GIP_CLKB_1~10:50H~59H ........................................................................... 104 5.3.18. GIP_CLKC_1~10:60H~69H ........................................................................... 105 5.3.19. GIP_ECLK1~2:70H~71H ........................................................................... 106................................................................................ 74 5.3.6. EXTPW_CTRL1~3:90H~92H ................................................................................ 77 5.3.7. PUMP_CTRL1~4:98H~9BH...................................................................................... 79 5.3.8. RDEXTCSPI:F8H................................................................................................................ 83 5.3.9. ENEXTC:FFH ................................................................................................................ 84 5.3.10。 PGAMVR0~5;PAMPR0~1;PGAMPK0~9;GAMP0:B0H~C2H......................... 87 5.3.11. NGAMVR0~5;NAMPR0~1;NAMPK0~9;GAMN0:D0H~E2H ................................ 88 5.3.12. ENEXTC:FFH ........................................................................................................... 89 5.3.13 GIP_VST_1~12:00H~0BH .................................................................................... 100 5.3.14. GIP_VEND_1~14:20H~2DH ................................................................................ 101 5.3.15. GIP_CLK_1~8:30H~37H .................................................................................... 102 5.3.16. GIP_CLKA_1~10:40H~49H ........................................................................... 103 5.3.17. GIP_CLKB_1~10:50H~59H ........................................................................... 104 5.3.18. GIP_CLKC_1~10:60H~69H ........................................................................... 105 5.3.19. GIP_ECLK1~2:70H~71H .................................................................................... 106................................................................................ 74 5.3.6. EXTPW_CTRL1~3:90H~92H ................................................................................ 77 5.3.7. PUMP_CTRL1~4:98H~9BH...................................................................................... 79 5.3.8. RDEXTCSPI:F8H................................................................................................................ 83 5.3.9. ENEXTC:FFH ................................................................................................................ 84 5.3.10。 PGAMVR0~5;PAMPR0~1;PGAMPK0~9;GAMP0:B0H~C2H......................... 87 5.3.11. NGAMVR0~5;NAMPR0~1;NAMPK0~9;GAMN0:D0H~E2H ................................ 88 5.3.12. ENEXTC:FFH ........................................................................................................... 89 5.3.13 GIP_VST_1~12:00H~0BH .................................................................................... 100 5.3.14. GIP_VEND_1~14:20H~2DH ................................................................................ 101 5.3.15. GIP_CLK_1~8:30H~37H .................................................................................... 102 5.3.16. GIP_CLKA_1~10:40H~49H ........................................................................... 103 5.3.17. GIP_CLKB_1~10:50H~59H ........................................................................... 104 5.3.18. GIP_CLKC_1~10:60H~69H ........................................................................... 105 5.3.19. GIP_ECLK1~2:70H~71H .................................................................................... 10650H~59H ........................................................................... 104 5.3.18. GIP_CLKC_1~10:60H~69H ......................................................................... 105 5.3.19. GIP_ECLK1~2:70H~71H ........................................................................... 10650H~59H ........................................................................... 104 5.3.18. GIP_CLKC_1~10:60H~69H ......................................................................... 105 5.3.19. GIP_ECLK1~2:70H~71H ........................................................................... 106
FortiSASE 使组织能够授予每个用户和每个会话对 Web、云和应用程序的安全访问权限,无论它们部署在何处,并结合完全集成的企业级安全性。通过安全性和网络之间的无缝融合,FortiSASE 可确保将相同级别的保护、可见性和用户体验扩展到任何地方的每个用户。对于那些注重合规性的人来说,FortiSASE 已通过服务组织控制 (SOC2) 认证,该认证提供独立验证,确保解决方案安全控制符合美国注册会计师协会 (AICPA) 适用的信托服务原则和标准。此 SOC 2、Type II 标准认证表明我们致力于确保我们的客户能够满足各种合规性要求。Fortinet 提供 99.999% 的 SLA 和延迟保证,用于安全检查,这是因为其在全球范围内拥有数百个安全 PoP。
2.1.1. AHB-Lite Crossbar . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ....................................................................................................................................................................................................................... 17 2.1.3. APB 桥....................................................................................................................................................................................................................... ........................................................................................................................................................................................ ........................................................................................................................................................................ ........................................................................................................................................................................................ ........................................................................................................................................................................................ ........................................................................................................................................................................................ ........................................................................................................................................................................................ 17 2.1.4. 窄 IO 寄存器写入.................... ... ....................................................................................................................................................................................................................................... 18 2.2. 地址映射....................................................................................................................................................................................................... ....................................................................................................................................................................... ....................................................................................................................................................................... ....................................................................................................................................................................... ....................................................................................................................................................................................... ....................................................................................................................................................................................... ....................................................................................................................................................................................... ...24