SF10-005G中文资料
SF10A600H中文资料
SF10A600HS e m i c o n d u c t o rUltra Fast Recovery DiodeApplications• High speed switching and rectification• Switching mode power supply• Free wheeling diode and snubber circuitFeatures• Ultra-fast reverse recovery time: trr=50ns Max.• Low forward voltage & low reverse current• Low switching lossOrdering InformationType No. Marking Package CodeSF10A600H SF10A600H TO-220F-2LOutline Dimensions unit : mmSF10A600HAbsolute Maximum Ratings[Ta=25°C]UnitRatingCharacteristic SymbolRepetitive peak reverse voltage V RRM 600 VAverage rectified output current I O 10 APeak forward surge current(Non-repetitive 60Hz sine wave) I FSM 120 AJunction temperature T J 150 °CStorage temperature range T stg-45 ~ 150 °CElectrical Characteristics [Ta=25°C]Typ.Min.Max.UnitConditionCharacteristic SymbolTestV-1.9Peak forward voltage V FM 1)I F=10A -㎂20-Repetitive peak reverse current I RRM V R=600V -Reverse recovery time t rr I F=1A, di/dt=-100A/㎲- - 50 nsTotal capacitance C T V R=10V, f=1MHz - 30 - pFJunction to ambient - - 62.5Thermal resistance R th°C/WJunction to case - - 3.51) Pulse test : t P≤380㎲, Duty cycle≤2%Electrical Characteristic CurvesFig. 5 I FSM – Number of cycle Fig. 6 I O derating - T CFig. 4 C - VThe AUK Corp. products are intended for the use as components in general electronic equipment (Office and communication equipment, measuring equipment, home appliance, etc.).Please make sure that you consult with us before you use these AUK Corp. products in equipments which require high quality and / or reliability, and in equipments which could have major impact to the welfare of human life(atomic energy control, airplane, spaceship, transportation, combustion control, all types of safety device, etc.). AUK Corp. cannot accept liability to any damage which may occur in case these AUK Corp. products were used in the mentioned equipments without prior consultation with AUK Corp..Specifications mentioned in this publication are subject to change without notice.。
SFF1006G中文资料
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元器件交易网
RATINGS AND CHARACTERISTIC CURVES (SFF1001G THRU SFF1008G)
FIG.1- REVERSE RECOVERY TIME CHARACTERISTIC AND TEST CIRCUIT DIAGRAM
NUMBER OF CYCLES AT 60Hz
10
01 SF F1 0
~S FF 10 G
FF 5G ~S SF F1 00 10
0 1
30பைடு நூலகம்
04 G
2
5
10
20
50
100
FIG.5- TYPICAL JUNCTION CAPACITANCE PER LEG
100
Tj=25 0C
3 1
90
G 08 10 FF ~S 7G 00 F1 SF
. 2 72 ( 6 .9 ) . 2 48 ( 6 .3 )
Mechanical Data
Case: ITO-220AB molded plastic Epoxy: UL 94V-O rate flame retardant Terminals: Leads solderable per MIL-STD202, Method 208 guaranteed Polarity: As marked High temperature soldering guaranteed: 260oC/10 seconds.16”,(4.06mm) from case. Weight: 2.24 grams Mounting torque: 5 in – 1bs. max.
. 6 06 (1 5. 5) . 5 83 (1 4. 8)
SF1005G资料
Dimensions in inches and (millimeters)Version: A06SF1001G - SF1008G10.0 AMPS. Glass Passivated Super Fast RectifiersTO-220ABFeaturesHigh efficiency, low VFHigh current capability High reliability High surge current capability Low power loss. For use in low voltage, high frequency inventor, freewheeling, and polarity protection applicationMechanical DataCase: TO-220AB Molded plastic Epoxy: UL 94V-0 rate flame retardantTerminals: Pure tin plated, lead free. solderable per MIL-STD-202, Method 208 guaranteed Polarity: As marked High temperature soldering guaranteed:260oC/10 seconds .16”,(4.06mm) from case. Weight: 2.24 gramsMaximum Ratings and Electrical CharacteristicsRating at 25 o C ambient temperature unless otherwise specified. Single phase, half wave, 60 Hz, resistive or inductive load. For capacitive load, derate current by 20%Type NumberSymbol SF 1001G SF 1002G SF 1003G SF 1004G SF 1005G SF 1006G SF 1007G SF1008GUnitsMaximum Recurrent Peak Reverse Voltage V RRM 50100 150200300 400 500 600V Maximum RMS Voltage V RMS 3570 105140210 280 350 420V Maximum DC Blocking VoltageV DC 50100 150200300 400 500 600V Maximum Average Forward RectifiedCurrent .375 (9.5mm) Lead Length @T C = 100 o CI (AV) 10.0 A Peak Forward Surge Current, 8.3 ms Single Half Sine-wave Superimposed on Rated Load (JEDEC method )I FSM 125AMaximum Instantaneous Forward Voltage @ 5.0AV F 0.975 1.3 1.7V Maximum DC Reverse Current@ T A =25 o C at Rated DC Blocking Voltage @ T A =100 o CI R10.0400 uA uAMaximum Reverse Recovery Time (N ote 1)Trr 35 nSTypical Junction Capacitance (Note 2) C j70 50 pF Typical Thermal Resistance (Note 3) R θJC 3.5 oC/WOperating Temperature RangeT J -65 to +150oC Storage Temperature RangeT STG -65 to +150oC Notes: 1. Reverse Recovery Test Conditions: I F =0.5A, I R =1.0A, I RR =0.25A2. Measured at 1 MHz and Applied Reverse Voltage of 4.0 V D.C.3. Mounted on Heatsink Size of 2” x 3” x 0.25” Al-plate.FIG.6-REVERSE RECOVERYTIME CHARACTERISTIC AND TEST CIRCUIT DIAGRAM50NONINDUCTIVE2.Rise Time=10ns max.Sourse Impedance=50ohms10NONINDUCTIVE-1.0A-0.25A0+0.5AFOR RATINGS AND CHARACTERISTIC CURVES (SF1001G THRU SF1008G)FIG.1-MAXIMUM FORWARD CURRENT DERATINGCURVEA V E R A G E F O R W A R D C U R R E N T .(A )05010015048121620CASE TEMPERATURE.(C)oFIG.5-TYPICAL FORWARD CHARACTERISTICSI N S T A N T A N E O U S F O R W A R D C U R R E N T .(A )13FORWARD VOLTAGE.(V)FIG.3-MAXIMUM NON-REPETITIVE FORWARD SURGEP E A K FO R W A R D S U R G E C U R R E N T .(A )25102010050NUMBER OF CYCLES AT 60Hz1501209060300FIG.4-TYPICAL JUNCTION CAPACITANCE PER LEGC A P A C I T A N C E .(p F )60708090100REVERSE VOLTAGE.(V)FIG.2-TYPICAL REVERSE CHARACTERISTICS02040608010012014010000.1110PERCENT OF RATED PEAK REVERSE VOLTAGE.(%)I N S T A N T A N E O U S R E V E R S E C U R R E N T .A )Version:A06。
变频器的类型 下载
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NXL152.LUST(路斯特)变频器说明书CDD3000CDE/CDB3000CDS4000153.WEG变频器说明书CTW-04CFW-08CFW-09CFW-10CFW-11154.BONFIGLIOLI(邦飞利)变频器说明书ACT200/400ACU200/400VCB400SYN10S/T SPL200/400155.Drivecon变频器说明书XS XT XR VF5100HG VF51RG VFDB VF61C VF61VF64VFK1/VFN1 VFN2156.CT变频器说明书Commander GP Unidrive SP Commander SE157.SIEI(西威)变频器说明书ARTDriveL ARTDriveG-EV158.KEB(科比)变频器说明书F4-S F4-F F5-M F5-M/S159.SEW变频器说明书MOVITRAC-31C MOVIDRIVE-60B/61B MOVITRAC-07MOVIRET-315/328/355/380/3150160.BERGES变频器说明书ACM-D2/S2/S3ACM-COMPACT SE1SW1161.施耐德变频器说明书ATV38ATV58-1ATV58-2ATV61ATV68-1ATV68-2ATV68-3162.pDRIVE变频器说明书MX-eco/pro/multi-eco/multi-pro-1MX-eco/pro/multi-eco/multi-pro-2163.斯德博(STOBER)变频器说明书FAS4000FDS4000MDS5000SDS4000164.欧陆变频器/直流调速器说明书512C590+590P690+590C165.依尔通(Emotron)变频器说明书FDU VFX VSA VSC CDX CDU MSF166.葆德(BALDOR)变频器说明书10111214167.Moeller(金钟-默勒)变频器说明书DV6-340DF51168.英泰(Invertek DRIVES)变频器说明书Optidrive Plus 3GV Optidrive Plus 3GV Compact Optidrive VTC Optidrive E Optidrive E1Optidrive E2Optidrive MEMA 4X169.瑞恩(RELIANCE)变频器说明书PSC4000/5000/DDS5000PSC7000VZ3000VZ7000170.派克汉尼汾(parker)变频器说明书AC650AC650V AC690+/ybc7778/blog/item/8faa0528684e0f23d42af11f.html ybc7778的空间主页博客相册|个人档案 |好友查看文章各种品牌变频器用户手册下载2010-09-03 09:551 616g5-------------下载2 616G3 -------------下载3 ABB ACS400用户手册下4 ABB ACS100用户手册下载5 ABB ACS140用户手册下载6 西门子变频器MM410操作手册下载7 西门子变频器MM420操作手册下载8 西门子变频器MM 430操作手册下载9 西门子变频器 MM 440操作手册下载10 三菱变频器FR-A500系列下载11 三菱变频器使用手册-FR-S540下载12 三菱变频器使用手册-FR-E540 中文版下载13 三垦变频器说明书下载14 Delta VFD-A/H型录下载15 Delta VFD-B型录下载16 Delta VFD-V型录下载17 Danfoss VLT2800 Profibuss支持载18 DANFOSS VLT?7000 恒压供水专用变频器下载19 艾默生TD3000系列变频器用户手册下载20 艾默生TD2100系列变频器用户手册下载21 艾默生EV2000 系列通用变频器技术手册下载22 欧陆690+系列变频器使用说明书下载23 欧陆直流调速器590P使用手册下载24 三垦 SAMCO-i 系列大容量变频器使用说明书下载25 三垦 SAMCO-vm05 系列变频器使用说明书下载26 富士FVR-E11S系列紧凑型变频器说明书下载27 富士 5000G11S/P11S系列变频器操作说明书下载28 日立变频器SJ300中文操作手册下载29 日立变频器SJ100中文操作手册下载30 日立变频器L100中文操作手册下载31 伦茨8220&8240变频器操作手册下载32 台安SV300系列变频器使用手册下载33 安邦信 AMB-G11 使用说明书下载34 安邦信 AMB-G9/P9使用说明书下载35 ACS501下载·ABB ACS600用户手册册下载·ABB ACS400用户手册下载·ABB ACS100用户手册下载·ABB ACS140用户手册下载·西门子变频器MM410操作手册下载·西门子变频器MM420操作手册下载·西门子变频器MM 430操作手册下载·西门子变频器MM 440操作手册下载·三菱变频器FR-A500系列下载·三菱变频器使用手册-FR-S540下载·三菱变频器使用手册-FR-E540 中文版下载·三垦变频器说明书下载·Delta VFD-A/H型录下载·Delta VFD-B型录下载·Delta VFD-V型录下载·Danfoss VLT2800 Profibuss支持下载·DANFOSS VLT?7000 恒压供水专用变频器下载·艾默生TD3000系列变频器用户手册下载·艾默生TD2100系列变频器用户手册下载·艾默生EV2000 系列通用变频器技术手册下载·欧陆690+系列变频器使用说明书下载·欧陆直流调速器590P使用手册下载·三垦 SAMCO-i 系列大容量变频器使用说明书下载·三垦 SAMCO-vm05 系列变频器使用说明书下载·富士FVR-E11S系列紧凑型变频器说明书下载·富士 5000G11S/P11S系列变频器操作说明书下载·日立变频器SJ300中文操作手册下载·日立变频器SJ100中文操作手册下载·日立变频器L100中文操作手册下载·伦茨8220&8240变频器操作手册下载·台安SV300系列变频器使用手册下载·安邦信 AMB-G11 使用说明书下载·安邦信 AMB-G9/P9使用说明书下载·FUJI FRENIC 5000G11S/P11S系列说明书下载FUJI FRENIC-Mini系列小容量通用紧凑型变频器下载类别:变频器 | | 添加到搜藏 | 分享到i贴吧 | 浏览(980) | 评论(12)上一篇:汇川变频器PG卡使用说明下一篇:变频器说明书资料下载大全3已有8人分享了这篇文章:fangxingyang12Ta的转贴花影扫尘Ta的转贴明你不知道Ta的转贴zz112212240Ta的转贴yongzhewudi21Ta的转贴RRRSHPLTa的转贴csyf0030Ta的转贴云中长弓张云中Ta的转贴最近读者:登录后,您就出现在这里。
无线参数设置和调整
ZXG10-BSS(V2.0)培训教材-GSM无线参数手册中兴通讯股份有限公司著作权声明本文中的所有信息均为中兴通讯股份有限公司机密信息,务请妥善保管,未经公司明确作出的书面许可,不得为任何目的、以任何形式或手段(包括电子、机械、复印、录音或其它形式)对本文档的任何部分进行复制、存储、引入检索系统或者传播。
侵权必究。
Copyright © 2005 ZTE CorporationAll rights reserved.策划移动网规网优部* * * *移动网规网优部地址:上海市张江高科开发区碧波路889号邮编:201203电话:(+8621)68895710传真:(+8621)50800813中兴通讯股份有限公司地址:深圳市高新技术产业园科技南路中兴通讯大厦邮编:518057技术支持网站:客户支持中心热线:(+86755)26770800 800-830-1118传真:(+86755)26770801* * * *版次:2007年07月第1版ZXG10-BSS无线参数手册前言说明ZXG10是深圳市中兴通讯股份有限公司(以下均简称中兴通讯)自主开发的GSM移动通信系统,该系统由ZXG10-MSS交换子系统和ZXG10-BSS基站子系统构成。
ZXG10-BSS基站子系统负责提供和管理GSM中的无线传输,其设备包括ZXG10-BSC基站控制器和ZXG10-BTS基站收发信台等。
本文是ZXG10-BSS无线资源参数手册,共分为十一章:第一章概述第二章BSC属性参数描述第三章BTS属性参数描述第四章TRX属性参数描述第五章TimeSlot属性参数描述第六章切换控制参数描述第七章功率控制参数描述第八章BA表参数描述第九章邻小区参数描述第十章跳频参数描述第十一章Timer参数描述本手册主要为用户学习ZXG10-BSS无线参数、对中兴GSM设备网络进行维护和网络优化的实践提供参考。
老师在讲课时,可以根据学员的情况,对内容课时做相应的调整。
Sun SPARC
Sun SP ARC® EnterpriseM4000/M5000 伺服器產品說明適用於 XCP 版本 1041 Sun Microsystems, Inc.文件號碼 820-2445-102007 年 6 月,修訂版 A請將您對本文件的意見提交至:/hwdocs/feedback請回收Copyright 2007 Sun Microsystems, Inc., 4150 Network Circle, Santa Clara, California 95054, U.S.A. 與 FUJITSU LIMITED, 1-1, Kamikodanaka 4-chome, Nakahara-ku, Kawasaki-shi, Kanagawa-ken 211-8588, Japan 。
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提供本文件並不表示您享有相關產品或技術的任何明示或暗示性權限或授權,同時本文件不包含或代表 Fujitsu Limited 、Sun Microsystems, Inc. 或任何關係企業的任何承諾。
SFF1005G中文资料
. 6 06 (1 5. 5) . 5 83 (1 4. 8)
. 11 0 (2 .8 ) .09 8 ( 2 . 5 )
. 5 43 (1 3. 8) . 5 12 (1 3. 2)
PIN 1 PIN 3 PIN 2 Positive CT
Dimensions in inches and (millimeters)
- 274 -
元器件交易网
RATINGS AND CHARACTERISTIC CURVES (SFF1001G THRU SFF1008G)
FIG.1- REVERSE RECOVERY TIME CHARACTERISTIC AND TEST CIRCUIT DIAGRAM
SF
1 2
1.2
1.4
1.6
1.8
5
10
20
50
100
200
500
1000
REVERSE VOLTAGE. (V)
FORWARD VOLTAGE. (V)
- 275 -
元器件交易网
SFF1001G THRU SFF1008G
Isolation 10.0 AMPS. Glass Passivated Super Fast Rectifiers
Voltage Range 50 to 600 Volts Current 10.0 Amperes
Maximum Ratings and Electrical Characteristics
Rating at 25℃ambient temperature unless otherwise specified. Single phase, half wave, 60 Hz, resistive or inductive load. For capacitive load, derate current by 20% Symbol SFF SFF SFF SFF Type Number
希捷 Savvio 10K.5 产品资料
900、600、450 和 300GB • 6Gb/秒串行连接SCSI • 4Gb/秒光纤通道主要优势•容量提升 50%,持续数据传输速率性能较前代硬盘提升 18%,从而提升存储效率。
•容量最大的 2.5 英寸 10K RPM 硬盘(高达 900GB),从而无需增加硬盘数量即可管理更多数据•首个在单个平台上提供四种容量的 SFF 硬盘平台•适用于兼容 T10 的电源管理的 PowerChoice™ 技术,使 IT 组织能针对性能和功耗定制系统•降低 OEM 的系统设计、质检和存储成本•使数据中心可以更好地管理硬盘外形、容量和接口转换•保护信息 (PI) 功能防止意外数据更改1•可选的自加密硬盘 (SED) 型号帮助企业达到集团和联邦数据安全要求,防止数据由于硬盘在使用过程中丢失、失窃或报废而被改动。
2•希捷统一存储架构综合了不同的接口、外形以及安全标准,从而减低了复杂性和成本。
完美应用•关键任务服务器和外置存储阵列•受功耗和空间限制的数据中心•绿色 IT 和降低硬盘报废成本的方案•兼容或数据安全方案•将 3.5 英寸硬盘系统升级到下一代技术保护信息 (PI) 功能需要兼容 PI 的主机或控制器的支持。
自加密硬盘 (SED) 需要兼容 TCG 的主机或控制器的支持。
并非所有型号或在所有国家都有售。
希捷 Savvio ® 10K.5完美平衡容量、性能和功耗的 10K 、2.5 英寸 企业级硬盘提升存储效率希捷 Savvio ® 10K.5 硬盘是容量最大的 2.5 英寸 10K 硬盘,也是首个在单个 SFF 平台上提供四种容量的 SFF 硬盘平台。
此款硬盘在单个硬盘中提供高达 900GB 的容量,提升 OEM 、系统构建商和终端用户的存储效率,帮助数据中心在不增加硬盘数量的情况下管理更多的数据,同时将持续数据传输率提升 18%(与上代硬盘相比),并保持较低的能耗等级。
希捷 PowerChoice™ 技术可以使 OEM 和数据中心根据性能和能耗定制系统,实现绿色 IT 方案。
AC2400,F1024无线控制器用户手册
提示
文的内容。
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This document and the information contained herein are provided on an "AS IS" basis. COMBA TELECOM SYSTEMS (CHINA) LTD may make improvement or changes in this document, at any time and without notice and as it sees fit. The information in this document was prepared by COMBA TELECOM SYSTEMS (CHINA) LTD with reasonable care and is believed to be accurate. However, COMBA TELECOM SYSTEMS (CHINA) LTD shall not assume responsibility for losses or damages resulting from any omissions, inaccuracies, or errors contained herein.
ZXG10iBSC(V63020)基站控制器数据快速配置指导手册_R11
ZXG10 iBSC(V6.30.20)基站控制器数据快速配置指导手册法律声明若接收中兴通讯股份有限公司(以下称为“中兴通讯”)的此份文档,即表示您已同意以下条款。
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中兴通讯股份有限公司地址: 中国深圳市科技南路55号邮编518057网站: 邮箱: 800@版本更新说明作者关于这篇文档摘要适用对象:iBSC侧开通人员目录1数据快配介绍 (1)1.1基本说明 (1)1.1.1模板内容 (1)1.1.2模板结构 (4)1.2快配数据准备 (6)1.2.1配置数据规划 (6)1.2.2快配数据准备 (6)1.3快配数据导入方法 (6)1.3.1创建子网和管理网元 (6)1.3.2快配模板导入 (7)1.4快配数据表导入顺序 (11)2快配模板填写场景说明 (12)2.1配置数据规划和准备 (12)2.1.1IBSC设备信息模板(V3_TEMPLATE_EQUIPMENT) (12)2.1.2IBSC传输信息模板(V3_TEMPLATE_TRANSPORTNETWORK) (13)2.1.3IBSC无线信息模板(GSM RADIO QUICK CONFIGURATION TEMPLATE)142.2BSC开通基本数据配置 (14)2.2.1全局资源配置 (14)2.2.2单板物理配置 (14)2.2.3IP相关配置 (15)2.3A口对接配置 (17)2.3.1A口对接参数说明 (17)2.3.2A口局向配置 (19)2.3.3A口对接配置 (19)2.4GB口对接 (20)2.4.1GB口对接参数说明 (20)2.4.2GB口局向配置 (20)2.4.3GB口对接配置 (20)2.5SDR站点开通配置 (21)2.5.1IPOE ABIS/IPABIS RPU业务地址配置 (21)2.5.2SDR传输资源配置 (21)2.5.3无线资源配置 (23)2.6其他场景说明 (24)2.6.1SDR站点模块号调整 (24)2.7快配模板填写场景汇总 (25)2.7.1所有场景都需要填写的快配表 (25)2.7.2按接口类型场景区分需要填写的快配表 (26)3快配模板填写说明 (26)3.1快配数据表页结构 (27)3.2V3_TEMPLATE_EQUIPMENT模板填写说明 (28)3.2.1BASIC INFO (28)3.2.2PLMN CONFIG (30)3.2.3SHELF CONFIG (30)3.2.4BOARD CONFIG (30)3.2.5UNIT CONNECTION (31)3.2.6GLOBAL INFO (32)3.2.7INTERFACE IP (32)3.2.8SERVICE IP (33)3.2.9USER PLANE SERVICE (34)3.2.10CHANNEL PORT(可选) (35)3.2.11MEMBER PORT(可选) (36)3.2.12SUPER VLAN(可选) (37)3.2.13SUPER VLAN MEMBER(可选) (37)3.2.14DHCP SERVER(可选) (37)3.2.15DHCP CLIENT(可选) (37)3.2.16DHCP RELAY(可选) (37)3.2.17VRF BASE INFO(可选) (37)3.2.18VRF ROUTE TARGET(可选) (37)3.2.19LAPD CONFIG(可选) (37)3.3V3_TEMPLATE_TRANSPORTNETWORK模板填写说明 (38)3.3.1LOCAL OFFICE (38)3.3.2STATIC ROUTE (39)3.3.3IP PATH GROUP (39)3.3.4IP BEARER(ABIS) (40)3.3.5ADJACENT OFFICE(CN) (41)3.3.6SCTP CONFIG(CN) (42)3.3.7M3UAAS CONFIG (43)3.3.8M3UAROUTE (44)3.3.9M3UAROUTESET (44)3.3.10MTP2LINK (45)3.3.11MTP3 ROUTE (46)3.3.12MTP3ROUTESET (46)3.3.13DYNAMIC SCTP (47)3.3.14NO.7 PCM (47)3.3.15MSC OFFICE (48)3.3.16SGSN OFFICE (48)3.3.17NRI (49)3.3.18FR GB (49)3.3.19IP GB (50)3.3.20LUCENT CHANNEL(可选) (51)3.3.21ITC OR BSC OFFICE(可选) (52)3.3.22PCM(ITC-MSC) (可选) (52)3.4GSM RADIO QUICK CONFIGURATION TEMPLATE模板填写说明 (52)3.4.1GBSSFUNCTION(只支持修改) (53)3.4.2GSITEBASEBANDSHARE(可选) (53)3.4.3GMOCNAREA(可选) (53)3.4.4GBSSIFTAMA (54)3.4.5GGSMCELL (54)3.4.6GCELLIFTA(只支持修改) (55)3.4.7GHANDOVERCONTROL(只支持修改) (55)3.4.8GPSHANDOVERCONTROL(只支持修改) (55)3.4.9GSCHANDOVERCONTROL(只支持修改) (55)3.4.10GFHHANDOVERCONTROL(只支持修改) (56)3.4.11GPOWERCONTROL(只支持修改) (56)3.4.12GPSCHANNELSCHEDULE(只支持修改) (56)3.4.13GPRIORITYRESEL(只支持修改) (56)3.4.14GHOPPINGFREQUENCY(可选) (56)3.4.15GHOPPINGBASEBAND(可选) (56)3.4.16GTRX (57)3.4.17GTS(只支持修改) (58)3.4.18GEXTERNALGSMCELL(可选) (58)3.4.19GEXTERNALUTRANCELLFDD(可选) (58)3.4.20GEXTERNALUTRANCELLTDDLCR(可选) (59)3.4.21GEXTERNALEUTRANCELLFDD(可选) (59)3.4.22GEXTERNALEUTRANCELLTDD(可选) (60)3.4.23GGSMRELATION (60)3.4.24GUTRANRELATION(可选) (61)3.4.25GEUTRANRELATION(可选) (62)3.4.26GGSMVPCRELATION(可选) (62)3.4.27GGSMINTFRELATION(可选) (62)3.5典型场景模板示例 (63)3.5.1IP A + IP ABIS + IPOE ABIS场景设备信息和传输信息模板示例 (63)3.5.2TDM A+IP GB+IPOE ABIS场景设备信息和传输信息模板示例 (63)3.5.3TDM A+E1 GB+IPOE ABIS场景设备信息和传输信息模板示例 (63)3.5.4无线信息模板示例 (63)1 数据快配介绍从iBSCV6.30.20*系列版本开始,提供了数据快速配置的方法,可以通过网管进行基本配置数据的导出/导入功能,配套的OMM网管版本为ZXM-OMMR(R3)V12.13.**版本。
光模块指标
SDH 10KM SDH 40KM 1.25G 550M 1.25G 10KM 1.25G 20KM 1.25G 40KM 1.25G 50KM 1.25G 80KM 125M 2KM 125M 15KM 125M 40KM 2.5G Telecom 622M Telecom 155M Telecom
< 2.5W < 3.5W < 1W < < < < < < < < 1W 1W 1W 1W 1W 1W 1W 1W
<1 <2 N/A N/A N/A N/A N/A N/A N/A N/A N/A <118 < -23 < -23
< 1W < 1W < 1W
色散要求及光纤类型根据具体应用进行计算。
通道代价 db <3.9 <3.2 <3
< -11 < -16 < -17 < < < < < < < < -19 -22 -22 -22 -22 -30 -28 -32
1310 1550 850 1310 1310 1310 1310 1550 1310 1310 1310 1310 1310 1310
> 8.2 > 8.2 > 8.2
NOTE : 1,电信应用中,ITU-T组织没有定义具体的传输距离,这需要通过最大色散要求及光纤类型根据具体应用 2,XFP与SFP+在光口指标上没有什么区别,同样是遵循IEEE802.3协议。 3,关于电源电压,SFP/SFP+ 为3.3V单电源;XFP根据电路设计的要求可能需要-5V、1.8V、3.3V、5V电源 其余XFP模块都是3.3V单电源。 4,此表格数据来源IEEE802.3、ITU-T G693 G.957、以及产品数据手册。
SF10CG-A中文资料
e 3SF10AG - SF10JG1.0A SUPER-FAST GLASS PASSIVATED RECTIFIERFeaturesMaximum Ratings and Electrical Characteristics@ T A = 25°C unless otherwise specified·Glass Passivated Die Construction ·Super-Fast Switching for High Efficiency ·Surge Overload Rating to 30A Peak ·Low Reverse Leakage Current·Lead Free Finish, RoHS Compliant (Note 4)Mechanical Data·Case: DO-41·Case Material: Molded Plastic. UL Flammability Classification Rating 94V-0·Moisture Sensitivity: Level 1 per J-STD-020C ·Terminals: Finish - Tin. Plated Leads Solderable per MIL-STD-202, Method 208 ·Polarity: Cathode Band ·Marking: Type Number·Ordering Information: See Last Page ·Weight: 0.3 grams (approximate)Single phase, half wave, 60Hz, resistive or inductive load. For capacitive load, derate current by 20%.Notes: 1. Valid provided that leads are maintained at ambient temperature at a distance of 9.5mm from the case. 2. Measured at 1.0MHz and applied reverse voltage of 4.0V DC. 3. Measured with I F = 0.5A, I R = 1.0A, Irr = 0.25A. (See Figure 5)4. RoHS revision13.2.2003. Glass and high temperature solder exemptions applied, see EU Directive Annex Notes 5 and 7.5. Short duration pulse test used to minimize self-heating effectI , P E A K F O R W A R D S U R G E C U R R E N T (A )F S M 0102030110100NUMBER OF CYCLES AT 60HzFig. 3 Peak Forward Surge Current110100110100C , T O T A L C A P A C I T A N C E (p F )T V , REVERSE VOLTAGE (V)R Fig. 4 Typical T otal Capacitance00.20.40.60.81.0255075100125150175200I , A V E R A G E F O R W A R D R E C T I F I E D (A V )C U R R E N T(A )T , AMBIENT TEMPERATURE (C)A Fig. 1 Forward Current Derating Curve°0.010.11.0100.60.81.01.21.4I , I N S T A N T A N E O U S F O R W A R D C U R R E N T (A )F V , INSTANTANEOUS FORWARD VOLTAGE (V)F Fig. 2 Typical Forward Characteristics1.61.82.0Set time base for 50/100 ns/cm+0.5A0A-0.25A-1.0AFig. 5 Reverse Recovery Time Characteristic and Test CircuitOrdering Information(Note 6) Array Notes: 6. For packaging details, visit our website at /datasheets/ap02008.pdf.IMPORTANT NOTICEDiodes Incorporated and its subsidiaries reserve the right to make modifications, enhancements, improvements, corrections or other changes without further notice to any product herein. Diodes Incorporated does not assume any liability arising out of the application or use of any product described herein; neither does it convey any license under its patent rights, nor the rights of others. The user of products in such applications shall assume all risks of such use and will agree to hold Diodes Incorporated and all the companies whose products are represented on our website, harmless against all damages.LIFE SUPPORTDiodes Incorporated products are not authorized for use as critical components in life support devices or systems without the expressed written approval of the President of Diodes Incorporated.。
SF1004G中文资料
80
0.3 0.1
70 60 50
.03 .01 .4 20 50 100 200 500
SF
SF
10
01
06
G
4G 00 F1 ~S 8G G 00 01 F1 10 ~S SF 5G 00
1 SF
Tj=25oC Pulse Width=300 s 1% Duty Cycle
.6
.8
Байду номын сангаас1.0
1.2
1.4
元器件交易网
SF1001G THRU SF1008G
10.0 AMPS. Glass Passivated Super Fast Rectifiers
Voltage Range 50 to 600 Volts Current 10.0 Amperes
Features
Low forward voltage drop High current capability High reliability High surge current capability
~S
1
2
5
10
20
50
100
F1
00
30 10
G
4G
10
NUMBER OF CYCLES AT 60Hz
FIG.5- TYPICAL JUNCTION CAPACITANCE PER LEG
SF-10 水暖器温度控制器说明书
MODEL SF-10CONTROLPublication No.SF-10-40Printed in U.S.A.609Part No.470899000The SF-10 Boiler Temperature Control (BTC) is an efficient boiler operator with a digital LCD display with backlight, a boiler pump output, and an alarm.The control regulates the boiler based upon set-point, outdoor reset with domestic hot water heating priority, and several options for external boiler control.Features:•Setpoint Operation•Outdoor Reset with DHW Priority •External Control through BMS Signal •External Control through tekmar Boiler Controls•Boiler Pump Operation and Purge •DHW Pump and Purge •DHW Priority •Parallel Piping•Primary - Secondary Piping •Display BacklightT able of Contents ............................................................2User Interface ..................................................................2Display ............................................................................3Symbol Description ........................................................3Sequence of Operation .. (4)Section A:General ..............................................4Section B:Setpoint..............................................8Section C:Outdoor Reset....................................9Section D:External Temperature T arget............10Section E:External Direct Drive........................11Section F:Indirect Domestic Hot Water (11)Installation ....................................................................13Alarm Signal ................................................................14Testing ..........................................................................15Control (DIP Switch) Settings........................................17Mode 1 and 2 Setpoint & DHW OperationApplications........................................................18View Menu .. (19)Adjust Menu (20)Mode 3 and 4 Outdoor Reset & DHW OperationApplications........................................................21View Menu ........................................................22Adjust Menu ......................................................23Default Settings.. (23)Mode 5 and 6 External Target TemperatureApplications .......................................................25View Menu ........................................................26Adjust Menu (27)Mode 7 External Direct Drive OperationApplications........................................................29View Menu ........................................................29Adjust Menu (30)Reload Factory Defaults ................................................30Error Messages ............................................................31Technical Data .. (32)2The BTC uses a Liquid Crystal Display (LCD) as a method of supplying information.Y ou use the LCD in order to setup and monitor the operation of your system.The BTC uses three push buttons (Item , )for selecting and adjusting settings.As you program your control, record your settings in the settings column of the Adjust menu.The table is found in the second half of this brochure.MENUAll of the items displayed by the control are organized into two menus:1) View 2) AdjustT ITEMT ItemItemItem ItemItemItemSymbol Description4Model SF-10 Control Instructions ManualSequence of OperationSection A: GeneralSection AGeneral Operation Page 4 -8Section BSetpoint Operation Page 8Section COutdoor Reset Operation Page 9Section DExternal Temp. Target Input Page 10Section E External DirectDrive Operation Page 11Section FIndirect DHWOperation Page 11 - 12Boiler Outlet Sensor Boiler InletSensor BoilerSupply Sensor Boiler Outlet SensorBoilerInletSensorBTC Boiler Outlet Sensor DHW TankBoiler Inlet SensorPOWERING UP THE CONTROLWhen the control is powered up, the control turns on all segments in the display for 2 seconds.Next, the software version isdisplayed for 2 st, the control enters into the normal operating mode.DISPLA Y BACKLIGHT The control’sdisplay has a backlight that is permanently on while the control is powered.PIPINGThe boiler can be piped in parallel or in primary / secondary to the system.The type of piping chosen affects the location of the control’s operating temperature sensor.The control can either use the boiler outlet sensor or the boiler supply sensor.MODES 1(Setpoint and DHW Operation with Parallel Piping)Mode 1 is designed for setpoint and domestic hot water (DHW) opera-tion using parallel piping.Once a heat dem and signal is present, the control operates the boiler burner to maintain the boiler target at the boil-er outlet sensor.Refer to section B for a description of setpoint operation.Once a DHW demand is present, the control operates the boiler burner to m aintain the DHW target at the boiler outlet sensor.If both a heat demand and a DHW demand are present at the same time, the control targets the higher of the two requirem ents.Refer to section F for adescription of indirect domestic hot water operation.PARALLEL PIPING In parallel piping applications,the boiler outlet temperature is typically the same as that deliv-ered to the system.Therefore the operating temperature sensor is the boiler outlet sensor.PRIMARY / SECONDARY PIPINGIn primary /secondary applications,the boiler outlet tem perature (primary loop) istypically hotter than the system supply temperature (secondary loop).This occurs when the system supply pipe has a larger flow rate than the boiler outlet pipe.Therefore, the control requires an additional sensor (boiler supply) to measure the temperature delivered out to the system.The operating temperature sensor is the boiler supply sensor.MODES OF OPERATION (MODE)The control allows for seven modes of operation in order to define the control operation and piping arrangement used.The piping arrangement can be categorized into parallel and primary / secondary.The mode of operation is selected using the MODE item in the Adjust menu.The temperature being controlled out to the heating system is measured by the operating sensor.The piping arrangement determines which sensor the control uses as the operating sensor.The operating sensor is either the boil-er outlet sensor or the boiler supply sensor.BURNERDisplays when the stage 1 oWWSDDisplays when the control is Shut Down.Note:Stage 2contact is not useSection A GeneralOperationPage 4 -8Section BSetpoint Operation Page 8Section F Indirect DHWOperationPage 11 - 12Boiler Outlet SensorBoiler Inlet Sensor Boiler Supply SensorBoiler Outlet SensorBoilerInlet SensorBOILER PUMPDisplays when the boiler pump is in operation.HEAT DEMANDDisplays when a heat demand is present.DHW PUMPDisplays when the DHW pump is in operation.DHW DEMAND Displays when a DHW demand is present.BURNER Displays when the stage 1 or 2 contact is on.ERROR Displays when an error message is present.WWSDDisplays when the control is in Warm WeatherShut Down.POINTERSDisplays the operation as indicated by thtext.Note:Stage 2contact is not used in this application.Section A GeneralOperationPage 4 -8Section B Setpoint Operation Page 8Section C Outdoor Reset Operation Page 9Section DExternal Temp. Target Input Page 10Section EExternal Dire Drive OperatPage 11Section F Indirect DHW OperationPage 11 - 12Boiler Outlet SensorBoiler Inlet SensorBoiler Supply Sensor Boiler OutletSensor Boiler InletSensorBTCBoilerOutlet SensorDHW TankBoiler Inlet SensorMode 2 is designed for setpoint and domestic hot water (DHW) operationusing primary / secondary piping.Once a heat demand signal is present,the control operates the boiler burner to maintain the boiler target at theboiler supply sensor.Refer to section B for a description of setpointoperation.Once a DHW demand is present, the control operates the boiler burner tomaintain the DHW target at the boiler supply sensor.If both a heat demandand a DHW demand are present at the same time, the control targets thehigher of the two requirements.Refer to section F for a description of indi-rect domestic hot water operation.MODE 3(Outdoor Reset and DHW Operation with Parallel Piping)Mode 3 is designed for outdoor reset and dom estic hot water (DHW)operation using parallel piping.Once a heat dem and is present, thecontrol operates the boiler burner to maintain the calculated outdoor resettarget at the boiler outlet sensor.Refer to section C for a description ofoutdoor reset operation.Once a DHW demand is present, the control operates the boiler burner tomaintain the DHW target at the boiler outlet sensor.If both a heat demandand a DHW demand are present at the same time, the control targets thehigher of the two requirements.Refer to section F for a description of indi-rect domestic hot water operation.MODE 4(Outdoor Reset and DHW Operation with Primary/Secondary Piping)Mode 4 is designed for outdoor reset and dom estic hot water (DHW)operation using prim ary / secondary piping.Once a heat dem and ispresent, the control operates the boiler burner to maintain the calculatedoutdoor reset target at the boiler supply sensor.Refer to section C for adescription of outdoor reset operation.Once a DHW demand is present, the control operates the boiler burner tomaintain the DHW target at the boiler supply sensor.If both a heat demandand a DHW demand are present at the same time, the control targets thehigher of the two requirements.Refer to section F for a description of indi-rect domestic hot water operation.MODE 5(External Target Temperature Input and DHW Operation–Parallel Piping)Mode 5 is designed for an external input signal and domestic hot water(DHW) with parallel piping.The external input signal can be provided froma BMS, an EMS, or a tekm ar tN4 System Control.The external inputsignal creates an internal demand and changes the boiler target accord-ing to a linear scale.The control operates the boiler burner to maintain theboiler target at the boiler outlet sensor.Refer to section D for a descriptionof external target temperature operation.Once a DHW demand is present, the control operates the boiler burner tomaintain the DHW target at the boiler outlet sensor.If both a heat demandand a DHW dem and are present at the sam e tim e, the control targetsthe higher of the two requirem ents.Refer to section F for a descriptionof indirect domestic hot water operation.Model SF-10 Control Instructions Manual5STAGINGST AGE Model SF-10 Control Instructions Manual 7is viewed.sensor.BOILER PUMP OPERATION ( )The boiler pump contact operates when:•A heat dem and is present and parallel piping (Mode 1, 3, 5) is used.Parallel piping requires the boiler pum p to operate even while the burner is off in order to provide heat to the system.•While the burner is firing and primary / secondary piping (Mode 2, 4, 6) is used.Primary / secondary piping reduces standby losses by isolating the boiler from the system while the burner is off.•During external direct drive operation (mode 7), the boiler pump contact closes whenever there is a heat demand.•After the burner shuts off the boiler pump remains on to purge heat from the boiler to the system.•During a DHW dem and the boiler pum p contact is closed unless DHW priority is selected.During DHW priority, the boiler pump contact is off.BOILER PUMP PURGE ( DL Y)After the burner is shut off, the control continues to operate the boiler pump for a period of time.The length of time that the boiler pump continues to run is based on the Pump DL Y setting.Once the burner turns off, the control keeps the boiler pump running for the time selected.This setting allows purging of any excess heat out of the boiler after the boiler is shut off.This also helps to prevent the water in the boiler from flashing into steam after the boiler is shut off.When Pump DL Y is set to OFF, there is no purging.When Pump DL Y is set to ON, the pump runs continuously.When on is selected and the control is configured for outdoor reset, the pump continues to run even during Warm Weather Shut Down. EXERCISINGIf the boiler pump has not operated at least once every 70 hours, the control turns on the output for 10 seconds.This minimizes the possibility of the pump seizing during a long period of inactivity.When either m ode 1 or 2 is selected, the water tem perature is controlled based on a fixed setpoint.The setpoint temperature is set using the BOIL T ARGET item in the Adjust menu.HEAT DEMAND(Dem 1)A heat demand is required whenever heat is required for the setpoint load.A heat demand is generated when a voltage between 24 and 120 V (ac) is applied across the CD (common demand) and the Ht D (heat demand).Once voltage is applied, the control turns on the Dem 1 segment in the display.The control closes the pump contacts, which starts the boil-er pump and the control turns on the boiler pump segment in the display.If the operating sensor is 1/2 of the differential below the BOIL T ARGET, the control then closes the Stage 1 contact.The boiler target temperature is set using the BOIL T ARGET item in the Adjust menu.If the operating sensor reaches 1/2 of the differential above the BOIL T ARGET setting, the boiler burner is shut off.The pump contact remains closed until the heat demand is removed and Pump DL Y setting expires.8Model SF-10 Control Instructions ManualModel SF-10 Control Instructions Manual910Model SF-10 Control Instructions ManualWhen mode 7 is selected, the control allows for an external control to operate the boiler through an analog direct drive input signal provided by a boiler sequencing control such as a tekmar Boiler Control 265.When in mode 7, the external heat demand (CD and Ht D) and the DHW demand (CD and DHW D are disabled.DIRECT DRIVE INPUT SIGNALAn external boiler sequencer provides a positive 0-10 V (dc) input signal to the control +V(in) input (pin 10).The negative V (dc) signal is applied to the Com/- input.The boiler burner remains off while the direct drive input signal range is between 0 to 0.5 V (dc).The Stage 1 contact remains on as long as the direct drive input signal is over 0.5 V (dc).PUMP OPERATIONThe pump contact close as soon as the direct drive input signal reaches 0.5 V (dc).Once the direct drive inputsignal falls below 0.5 V (dc), the pump continues to operate until the Pump DL Y purge expires, then the pump shuts off.BOILER MAXIMUM TEMPERATUREThe external boiler sequencer is able to operate the boiler tem perature.However, the BOIL MAX setting lim its the highest temperature at the boiler outlet sensor.Should the boiler outlet temperature exceed the BOIL MAX setting, the Stage contact is opened to shut off the burner.The burner remains off for the minimum off time and the boiler outlet temperature falls 2°F (1°C)below the BOIL MAX setting.When modes 1, 2, 3, 4, 5, or 6 are selected, the control is able to override the heat demand operation and respond to heat an indirect domestic hot water (DHW) tank.DHW DEMAND (Dem 2)A DHW demand is required whenever the indirect DHW tank requires heating.A DHW demand is generated when a voltage between 24 and 120 V (ac) is applied across the CD (com m on dem and) and the DHW D (DHW dem and).Once voltage is applied, the control turns on the Dem 2 segment in the display.The control closes the DHW pump contacts, which starts the DHW pump and the control turns on the DHW pump segment in the display.BOILER TARGET DURING DHW OPERATIONThe boiler target temperature is at least as hot as the DHW BOIL T ARGET setting.If a heat demand is present during a DHW demand, the boiler target is the higher of the two temperatures.DHW OPERATION WITH PRIMARY / SECONDARY PIPINGWhen the boiler is piped in primary /secondary to the boiler and MODE is set to 2, 4, or 6, the control operates the boiler pump together with the DHW pump.ΩIt is often desirable to have priority for the DHW tank.is achieved by lim5.•When DHW MODE is set to 1 there is no DHW priority.•When DHW MODE is set to 2 there is DHW priority.DHW FULL & CONDITIONAL PRIORITYThe control provides full DHW priority when BOIL MIN is set to OFF.This is intended for use with condensing boilers. The control provides conditional DHW priority when BOIL MIN is not set to OFF.Should the DHW and the heat demand Array space heating occurs.to the OUT STthe OUT STDHW POST PURGEAfter the DHW Demand is removed, the control performs a purge on the boiler.In MODE 1, 3, or 5 (parallel piping), the control shuts off the burner and continues to operate the DHW pump.In MODE 2, 4, or 6 (primary / secondary piping), the control shuts off the burner and continues to operate the DHW pump while the boiler pump is turned on.This purges the residual heat from the boiler into the DHW tank.The control continues this purge for a maximum of two minutes or until the boiler supply water temperature drops 20°F (11°C) below the boiler target temperature during the DHW operation.The con-trol also stops the purge if the operating sensor temperature is close to the current boiler target temperature.DHW MIXING PURGEAfter DHW priority, the space heating zones m ay have cooled off considerably after being off for a period of tim e; meanwhile, the boiler is hot.To avoid thermally shocking the boiler after DHW priority, the control shuts off the burner, but continues to operate the DHW pump while restarting the boiler pump.This allows some of the DHW tank return water to mix with the cool return water from the zones and temper the boiler return water.12Model SF-10 Control Instructions ManualPowered Input Connections24 V(ac) PowerConnect the 24 V(ac) power supply to the C and R pins.This connec-tion provides power to the microprocessor and display of the control.Aswell, this connection provides power to the Alarm pin from the R pin.Heat DemandT o generate a heat demand, a voltage between 24 V (ac) and 120 V(ac) must be applied across the CD (common demand) and the Ht D(heat demand) pins.DHW DemandT o generate a DHW demand, a voltage between 24 V (ac) and 120 V(ac) must be applied across the CD (common demand) and the DHWD(DHW demand) pins.Caution:The same power supply must be used for both the heatdemand and DHW demand circuits since they share the CD (com-mon demand) pin.Output ConnectionsBoiler Pump ContactThe Pump pins are an isolated output in the control.There is no poweravailable on these pins from the control.This output is to be used as aswitch to either make or break power to the boiler pump.Since this isan isolated contact, it may switch a voltage between 24 V (ac) and 120V(ac).Model SF-10 Control Instructions Manual13Note:Note:An14Model SF-10 Control Instructions ManualExternal InputThe control can accept an external input signal from an external control.If an external input signal is required, connect the positive 0-10 V (dc) wire to the +V(in) pin and connect the negative 0-10 V (dc) wire to the Com/-.R 2216Model SF-10 Control Instructions ManualApply power to the control. the brochure.Model SF-10 Control Instructions Manual17MODE1 and 2 – Setpoint & DHW Operation MODE1 SETPOINT & DHW OPERATION – PARALLEL PIPINGModel SF-10 Control Instructions Manual 19MODE1 and 2 – Setpoint & DHW Operation20Model SF-10 Control Instructions ManualMODE3 and 4 – Outdoor Reset & DHW Operation MODE 3 – OUTDOOR RESET AND DHW OPERATION WITH PARALLEL PIPINGThe control receives a heat demand provided from zone valve end switches or a switching relay end switch.The control22Model SF-10 Control Instructions ManualModel SF-10 Control Instructions Manual2324Model SF-10 Control Instructions ManualMODE5 and 6 – External Target TemperatureMODE 5 – EXTERNAL TARGET TEMPERATURE INPUT & DHW OPERATION-PARALLEL PIPING The control receives a heat demand provided via an external analog input signal from an EMS, BMS or tekmar tN4 system control.The external analog input signal is interpreted as a setpoint target temperature.The control turns on the boiler pump and operates the boiler to maintain the setpoint boiler target temperature at the boiler outlet sensor.The control receives a26Model SF-10 Control Instructions ManualModel SF-10 Control Instructions Manual2728Model SF-10 Control Instructions ManualMODE7 – External Direct Drive Operation MODE 7 – EXTERNAL DRIVE OPERATIONRELOAD FACTORY DEFAULTSTo reload FACTORY DEFAULT SETTINGS, press and hold the outside buttons (Item and Down) while powering the control up.This will reload the FACTORY DEFAULTS.30Model SF-10 Control Instructions ManualModel SF-10 Control Instructions Manual31SLANT/FIN CORPORATION,Greenvale,N.Y.11548 • Phone:(516) 484-2600 FAX:(516) 484-5921•Canada:Slant/Fin LTD/LTEE,Mississauga, Ontario。
F-SW1010 工业交换机 使用说明书
F-SW1010工业交换机使用说明书文档版本密级V1.0.0产品名称:F-SW1010共9页F-SW1010工业交换机使用说明书此说明书适用于下列型号产品:厦门四信通信科技有限公司Add:厦门市集美区软件园三期诚毅大街370号A06栋11层客户热线:400-8838-199电话:+86-592-6300320传真:+86-592-5912735网址型号F-SW1010-SF F-SW1010-8P-SF65W F-SW1010-8P-SF120W文档修订记录著作权声明本文档所载的所有材料或内容受版权法的保护,所有版权由厦门四信通信科技有限公司拥有,但注明引用其他方的内容除外。
未经四信公司书面许可,任何人不得将本文档上的任何内容以任何方式进行复制、经销、翻印、连接、传送等任何商业目的的使用,但对于非商业目的的、个人使用的下载或打印(条件是不得修改,且须保留该材料中的版权说明或其他所有权的说明)除外。
商标声明Four-Faith、四信、、、均系厦门四信通信科技有限公司注册商标,未经事先书面许可,任何人不得以任何方式使用四信名称及四信的商标、标记。
注:不同型号配件和接口可能存在差异,具体以实物为准。
第一章产品简介.................................................................................................................................1.1产品概述..............................................................................................................................1.2产品特点..............................................................................................................................1.3产品规格..............................................................................................................................第二章安装.........................................................................................................................................2.1概述......................................................................................................................................2.2装箱清单..............................................................................................................................2.3安装与电缆连接..................................................................................................................2.4电源说明..............................................................................................................................2.5面板说明..............................................................................................................................第一章产品简介1.1产品概述F-SW1010是一款工业级10口以太网交换机,产品配有8个10/100M 以太网口,1个千兆以太网口及1个千兆光口。
浪潮英信网枢NF100服务器硬件手册说明书
3.网枢NF100服务器的硬件设备都是特殊规格的 请不要和任何其他型号机器的相应设备 混用
4.在使用网枢NF100服务器过程中遇到的软件问题 请首先和相应软件的提供商联系 由 其和我们联系 以便于我们共同解决您的问题
2 个 64-bit,66MHz PCI 支持 133 或 100MHz的前
插槽
端总线 硬盘
内存
支持 Ultra160热拔插
1 个 PS/2 键盘接口 1 个串口 1 个显示卡接口 3 个网卡接口 1 个 Ultra3 SCSI 控
4条168-pin 双列直插 硬盘
制器 支持160MB/S数据传
5.由于产品更新 您购买的产品可能与手册中的描述有所不同 在购买浪潮英信服务器 时 供货商会给您讲解这些更新产品的使用 如果您仍有疑问 可以直接同我们联系 我们将 为您提供最新的使用说明
6.本手册中涉及的各软硬件产品的标识 名称版权由制造相应产品的公司拥有 7.以上声明中 我们 代指浪潮服务器事业部 浪潮服务器事业部拥有对以上声明的最 终解释权
关 于 本 手 册
第一章 快速使用指南 这一章介绍在购买网枢NF100服务器后 如何连接安装 加电运行 第二章 系统设置 这一章介绍网枢NF100服务器的主板BIOS设置情况 第三章 系统硬件 这一章介绍网枢NF100服务器的硬件安装情况 第四章 安装操作系统 这一章介绍如何在网枢NF100服务器上安装主流操作系统
第一章.pm6
3
3
00-2-13, 8:41
永不停顿的浪潮英信服务器
HELLOTEK SF10XXMF经济实用型楼道交换机手册
防堵 塞
支持 无
支持 无
端口 隔离
无 支持 支持 支持
防低端路 由器死机
支持 无 无 无
【TRUNK VLAN】:端口 1-15 对应的 VLAN ID 为 1-15,端口 16 路由器的 WAN 口(路由器必须支持扩 WAN 功能);多数应用与小区宽带软路由汇聚多条宽带线路。
经济实用型小区宽带交换机
SF1008MF
型
M1 M2
号
拨码
模式描述 8 口 100M
上联 端口
下行端口
上上
通用桌面办公 1-8
【防低端路由器死机】:HTK-SF10XXMF 系列交换机通过同步时钟时隙补偿技术,解决低端路由器时钟偏差 导致交换机堵死现象。
【端口镜像】:端口 1 接网络设备的汇聚端口(路由器 LAN),端口 8 接审计服务器(缓存服务器镜像口); 端 口 1 的接收和发送数据包均被复制到端口 8,发送给审计服务器。
大型lan网络里设备通讯依靠ieee8021x流控机制来保证数据包的正常到达但因lan设备终端和节点过多流控机制过于复杂容易导致网络瞬间堵塞从而出现浏览网页视频播放不畅语音停顿现象
HELLOTEK SF10XXMF 经济实用型楼道交换机手册
HTK-SF10XXMF 系列交换机是一款经济实用性型交换机;是 HELLOTEK 专为办公、小区、校园、安 防监控接入网开发的 100M 楼道接入型交换机产品,针对小区网络环境复杂多变的特点,此款交换机设计了防 雷、防网络设备时钟偏低等丰富应用功能特性。
无
SF1016MF
型 M1 M2
模式描述
上联
下行端口
号
拨码
16 口 100M
端口
上上
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0.1 0 20 40 60 80 100 120 140
PERCENT OF RATED PEAK REVERSE VOLTAGE (%)
.001
0
.2.4Βιβλιοθήκη .6.81.0 1.2 1.4
1.6 1.8
INSTANTANEOUS FORWARD VOLTAGE (V)
FIG. 6-TYPICAL JUNCTION CAPACITANCE FIG. 5-MAXIMUN NON-REPETITIVE FORWARD SURGE CURRENT PEAK FORWARD SURGE CURRENT (A)
INSTANTANEOUS FORWARD CURRENT (A)
1000
10
FIG. 4-TYPICAL INSTANTANEOUS FORWARD CHARACTERISTICS SF10-005G~10-02G
100
1.0
SF10-03G~10-04G
10 TJ=25 C 1.0
o
.1
.01
SF10-06G
1.0 30
ELECTRICAL CHARACTERISTICS (AT TA =25°C UNLESS OTHERWISE NOTED) ° SF10- SF10- SF10CHARACTERISTICS SYMBOL 005G 01G 015G MAXIMUM FORWARD VOLTAGE AT IO DC VF 0.95 MAXIMUM REVERSE CURRENT AT 25℃ IR MAXIMUM REVERSE CURRENT AT 100℃ IR MAXIMUM REVERSE RECOVERY TIME (NOTE 3) TRR
SF1002G
SF10- SF1003G 04G 1.25
10 100 35
SF10- SF10UNITS 05G 06G 1.85 V µA µA nS
NOTE : 1. MEASURED AT 1 MHZ AND APPLIED REVERSE VOLTAGE 0F 4.0 VOLTS 2. BOTH LEADS ATTATCHED TO HEATSINK 20× 20× 1t(mm) COPPER PLATE AT LEAD LENTH 5mm 3. REVERSE RECOVERY TEST CONDITIONS: IF=0.5A, IR=1.0A, IRR=0.25A
200 100
JUNCTION CAPACITANCE (pF)
40
30
8.3 ms Single Half Sine Wave (JEDEC Method)
40 20 10 6 4 2 1 .1
25 20 15 10 5 0 1 5 10 20 50 100
TJ=25oC
SF10-005G~10-02G
RATINGS MAXIMUM RECURRENT PEAK REVERSE VOLTAGE MAXIMUM RMS VOLTAGE MAXIMUM DC BLOCKING VOLTAGE MAXIMUM AVERAGE FORWARD RECTIFIED CURRENT .375〞(9.5mm) LEAD LENGTH AT TA=55°C PEAK FORWARD SURGE CURRENT, 8.3ms SINGLE HALF SINE-WAVE SUPERIMPOSED ON RATED LOAD TYPICAL JUNCTION CAPACITANCE (NOTE 1) TYPICAL THERMAL RESISTANCE (NOTE 2) STORAGE TEMPERATURE RANGE OPERATING TEMPERATURE RANGE SYMBOL VRRM VRMS VDC IO IFSM CJ Rθjc TSTG TOP 15 50 - 55 TO + 150 - 55 TO + 150 SF10005G 50 35 50 SF1001G 100 70 100 SF10015G 150 105 150 SF1002G 200 140 200 SF1003G 300 210 300 SF1004G 400 280 400 SF1005G 500 350 500 SF10UNITS 06G 600 V 420 V 600 V A A 10 PF ℃/W ℃ ℃
Trr
FIG. 2-TYPICAL FORWARD CURRENT DERATING CURVE
(-) D.U.T. (+) 25 Vdc (approx)
PULSE GENERATOR ( NOTE 2 ) 1Ω NON INDUCTIVE
+0.5A AVERAGE FORWARD CURRENT (A)
2.0
Single Phase Half Wave 60 Hz Resistive or Inductive Load
0
OSCILLOSCOPE ( NOTE 1 )
1.0
(+)
(-)
-0.25A
NOTE: 1. RISETIME=7ns MAX. INPUT IMPEDANCE=1 MEGOHM 22PF 2. RISE TIME =10ns MAX. SOURCE IMPEDANCE=50 OHMS
0
25 50 75 100 125 150 AMBIENT TEMPERATURE (oC)
1cm
SET TIME BASE FOR 10/20 ns/cm
FIG. 3-TYPICAL REVERSE CHARACTERISTICS INSTANTANEOUS REVERSE CURENT (uA)
.107(2.7) .080(2.0)
1.0(25.4) MIN
CASE-DO41
DIMENSIONS IN INCHES AND (MILLIMETERS)
MAXIMUM RATINGS AND ELECTRICAL CHARACTERISTICS RATINGS AT 25°C AMBIENT TEMPERATURE UNLESS OTHERWISE SPECIFIED SINGLE PHASE, HALF WAVE, 60 HZ, RESISTIVE OR INDUCTIVE LOAD. FOR CAPACITIVE LOAD, DERATE CURRENT BY 20%
6-31
RATINGS AND CHARACTERISTIC CURVE SF10-005G THRU SF10-06G
FIG. 1-TEST CIRCUIT DIAGRAM AND REVERSE RECOVERY TIME CHARACTERISTIC
50Ω NONINDUCTIVE 100Ω NONINDUCTIVE
FRONTIER ELECTRONICS CO., LTD. 1A GLASS PASSIVATED SUPER FAST RECOVERY RECTIFIER
SF10-005G THRU SF10-06G
FEATURES ! LOW FORWARD VOLTAGE ! HIGH SURGE CAPABILITY ! SUPER FAST SWITCHING SPEED ! GOOD FOR SWITCHING MODE CIRCUIT ! GLASS PASSIVATED CHIP JUNCTION
SF10-03G~10-06G
.2
.4
1.0 2
4
10
20
40
100
NUMBER OF CYCLES AT 60 Hz
REVERSE VOLTAGE (V)
6-32
1.0(25.4) MIN .034(0.9) .028(0.7) .205(5.2) .166(4.2)
MECHANICAL DATA ! CASE:MOLDED PLASTIC ! EPOXY:UL 94V-0 FLAME RETARDANT PLASTIC CASE ! LEADS:AXIAL LEADS, SOLDERABLE PER MIL-STD-202, METHOD 208 ! MOUNTING POSITION:ANY ! WEIGHT:0.34 GRAMS