匯編器在微處理器的驗(yàn)證和應(yīng)用中舉足輕重,如何設(shè)計(jì)通用的匯編器一直是研究的熱點(diǎn)之一。本文提出了一種開放式的匯編器系統(tǒng)設(shè)計(jì)思想,在匯編語(yǔ)言與機(jī)器語(yǔ)言間插入中間代碼CMDL(code mapping description language)語(yǔ)言,打破匯編語(yǔ)言與機(jī)器語(yǔ)言的直接映射關(guān)系,由此建立起一套描述匯編語(yǔ)言與機(jī)器語(yǔ)言的開放式映射體系。基于此開放式映射體系開發(fā)了一套匯編器系統(tǒng),具有較高層次上的通用性和可移植性。【關(guān)鍵詞】指令集,CMDL,匯編器,開放式
Design of Retargetable Assembler System Liu Ling Feng Wen Nan Wang Ying Chun Jiang An Ping Ji Li Jiu IME of Peking University, 100871【摘要】An assembler plays a very important role in the field of microprocessor verifications and applications, thus how to build a retargetable assembler system has been a hotspot in this field for long time. This paper presents a new method about the retargetable assembler system design.It provides a kind of language CMDL, code mapping description language. During the process of assembling, assembler languages are firstly translated to CMDL, and then mapped to the machine codes. In an other word, CMDL is inserted between assembler languages and machine codes during the translation procedure. As a medium code, CMDL has a lot of features, such as high extraction, strong descript capabilities. It can describe almost all attributes of assembler languages. By breaking the direct mapping relationship between assembler languages and machine codes, the complexities of machine codes are hided to the users, therefore, the new retargetable assembler system has higher retargetable level by converting the mapping from assembler languages and machine codes to assembler languages and CMDL, and implementationof it becomes easier. Based on the new mapping system structure, a retargetable assemblersystem is developed. It proved the whole system has good retargetability and implantability.【關(guān)鍵詞】instruction set, symbol table, assembler, lexical analysis, retargetability
高壓雙管反激變換器的設(shè)計(jì):介紹一種雙管反激的電路拓?fù)洌治隽似涔ぷ髟恚o出了一些關(guān)鍵技術(shù)參數(shù)的計(jì)算公式,設(shè)計(jì)并研制成功的30W 380V AC5 0H z/510V DC/+15.1 V DC(1A )、+5.2VDC(2A)輔助開關(guān)電源具有功率密度高、變換效率高、可靠性高等優(yōu)良的綜合性能。該變換器在高電壓輸人情況下有重要的應(yīng)用價(jià)值。【關(guān) 鍵 詞 】變換器,輔助開關(guān)電源,雙管反激
[Abstract】 A n e wt opologyfo rd oubles witchfl ybackc onverteris in troduced.Th eo perationp rincipleis a nalyzeda nds ome for mulas for calculating key parameters for the topology are presented. The designed and produced auxiliary switching power supply,i. e. 30W 380V AC5 0H z/5 10V DC/+15.1 V DC《1A )、+5.2 V DC《2A ),hase xcellentc omprehensivep erformances sucha sh ighp owerd ensity, hi ghc onversione fficiencya ndh ighr eliability.Th isc onverterh asim portanta pplicationv aluef orh igh input voltag
[Keywords ]converter,au xiliary switchingp owers upply,do ubles witchf lybac
特點(diǎn) 顯示值范圍-199999至999999位數(shù) 最高輸入頻率 5KHz 90度相位差加減算具有提高解析度4倍功能 輸入脈波具有預(yù)設(shè)刻度功能 定位基準(zhǔn)值可任意設(shè)定 比較磁滯值可任意設(shè)定 數(shù)位化指撥設(shè)定操作簡(jiǎn)易 3組繼電器輸出功能 2:主要規(guī)格 脈波輸入型式: Jump-pin selectable current sourcing(NPN) or current sinking (PNP) 脈波觸發(fā)電位: HI bias (CMOS) (VIH=7.5V, VIL=5.5V) LO bias (TTL) (VIH=3.7V, VIL=2.0V) 最高輸入頻率: <5KHz 定位置范圍: -199999 to 999999 second adjustabl 比較磁滯范圍: 0 to 9999 adjustable 繼電器容量: AC 250V-5A, DC 30V-7A 顯示值范圍: -199999 to 999999 顯示幕: Red high efficiency LEDs high 9.2mm (.36") 參數(shù)設(shè)定方式: Touch switches 感應(yīng)器電源: 12VDC +/-3%(<60mA) 記憶方式: Non-volatile E2PROM memory 絕緣耐壓能力: 2KVac/1 min. (input/output/power) 1600Vdc (input/output) 使用環(huán)境條件: 0-50℃(20 to 90% RH non-condensed) 存放環(huán)境條件: 0-70℃(20 to 90% RH non-condensed) CE認(rèn)證: EN 55022:1998/A1:2000 Class A EN 61000-3-2:2000 EN 61000-3-3:1995/A1:2001 EN 55024:1998/A1:2001
特點(diǎn) 精確度0.25%滿刻度 ±1位數(shù) 輸入配線系統(tǒng)可任意選擇 CT比可任意設(shè)定 具有異常電流值與異常次數(shù)記錄保留功能 電流過高或過低檢測(cè)可任意設(shè)定 報(bào)警繼電器復(fù)歸方式可任意設(shè)定 尺寸小,穩(wěn)定性高 2.主要規(guī)格 輔助電源: AC110V&220V ±20%(50 or 60Hz) AC220V&440V ±20%(50 or 60Hz)(optional) 精確度: 0.25% F.S. ±1 digit 輸入負(fù)載: <0.2VA (Current) 最大過載能力 : Current related input: 2 x rated continuous 10 x rated 30 sec. 25 x rated 3sec. 50 x rated 1 sec. 輸入電流范圍: AC0-5A (10-1000Hz) CT ratio : 1-2000 adjustable 啟動(dòng)延遲動(dòng)作時(shí)間: 0-99.9 second adjustable 繼電器延遲動(dòng)作時(shí)間: 0-99.9 second adjustable 繼電器復(fù)歸方式: Manual (N) / latch(L) can be modified 繼電器磁滯范圍: 0-999 digit adjustable 繼電器動(dòng)作方向: HI /LO/GO/HL can be modified 繼電器容量: AC 250V-5A, DC 30V-7A 過載顯示: "doFL" 溫度系數(shù): 50ppm/℃ (0-50℃) 顯示幕: Red high efficiency LEDs high 14.22mm(.56")(PV) Red high efficiency LEDs high 14.22mm(.276")(NO) 參數(shù)設(shè)定方式: Touch switches 記憶型式 : Non-volatile E2PROM memory 絕緣耐壓能力: 2KVac/1 min. (input/output/power) 1600Vdc(input/output 使用環(huán)境條件 : 0-50℃(20 to 90% RH non-condensed) 存放環(huán)境條件: 0-70℃(20 to 90% RH non-condensed) CE認(rèn)證: EN 55022:1998/A1:2000 Class A EN 61000-3-2:2000 EN 61000-3-3:1995/A1:2001 EN 55024:1998/A1:2001
特點(diǎn) 精確度0.1%滿刻度 ±1位數(shù) 可量測(cè) 交直流電流/交直流電壓/電位計(jì)/傳送器/Pt-100/荷重元/電阻 等信號(hào) 顯示范圍-1999-9999可任意規(guī)劃 具有異常值與異常次數(shù)記錄保留功能 異常信號(hào)過高或過低或范圍內(nèi)或范圍外檢測(cè)可任意設(shè)定 報(bào)警繼電器復(fù)歸方式可任意設(shè)定 尺寸小,穩(wěn)定性高 2.主要規(guī)格 精確度: 0.1% F.S. ±1 digit 0.2% F.S. ±1 digit(AC) 取樣時(shí)間: 16 cycles/sec. 顯示值范圍: -1999 - +9999 digit adjustable 啟動(dòng)延遲動(dòng)作時(shí)間: 0-99.9 second adjustable 繼電器延遲動(dòng)作時(shí)間: 0-99.9 second adjustable 繼電器復(fù)歸方式: Manual (N) / latch(L) can be modified 繼電器動(dòng)作方向: HI /LO/GO/HL can be modified 繼電器容量: AC 250V-5A, DC 30V-7A 過載顯示: "doFL" 溫度系數(shù): 50ppm/℃ (0-50℃) 顯示幕: Red high efficiency LEDs high 14.22mm(.56")(PV) Red high efficiency LEDs high 7.0mm(.276")(NO) 參數(shù)設(shè)定方式: Touch switches 記憶型式 : Non-volatile E2PROM memory 絕緣耐壓能力: 2KVac/1 min. (input/output/power) 1600Vdc(input/output 使用環(huán)境條件 : 0-50℃(20 to 90% RH non-condensed) 存放環(huán)境條件: 0-70℃(20 to 90% RH non-condensed) CE認(rèn)證: EN 55022:1998/A1:2000 Class A EN 61000-3-2:2000 EN 61000-3-3:1995/A1:2001 EN 55024:1998/A1:2001
Single-Ended and Differential S-Parameters
Differential circuits have been important incommunication systems for many years. In the past,differential communication circuits operated at lowfrequencies, where they could be designed andanalyzed using lumped-element models andtechniques. With the frequency of operationincreasing beyond 1GHz, and above 1Gbps fordigital communications, this lumped-elementapproach is no longer valid, because the physicalsize of the circuit approaches the size of awavelength.Distributed models and analysis techniques are nowused instead of lumped-element techniques.Scattering parameters, or S-parameters, have beendeveloped for this purpose [1]. These S-parametersare defined for single-ended networks. S-parameterscan be used to describe differential networks, but astrict definition was not developed until Bockelmanand others addressed this issue [2]. Bockelman’swork also included a study on how to adapt single-ended S-parameters for use with differential circuits[2]. This adaptation, called “mixed-mode S-parameters,” addresses differential and common-mode operation, as well as the conversion betweenthe two modes of operation.This application note will explain the use of single-ended and mixed-mode S-parameters, and the basicconcepts of microwave measurement calibration.