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1、<p>  河南科技學院新科學院</p><p>  2012屆本科畢業(yè)論文</p><p><b>  中英文翻譯</b></p><p>  學生姓名: </p><p>  所在院系: </p><p>  所

2、學專業(yè): </p><p>  導師姓名: </p><p>  完成時間: 2012年5月10日 </p><p>  Based on single-chip microcomputer control elevator voice station reporting device<

3、/p><p>  Key words: SCM ISD4004voice station reporting device</p><p>  1 Introduction</p><p>  The modern building scale is larger and larger, more and more high on the floor, the elev

4、ator technical and quality requirements are also getting higher and higher. Modern elevator technology has been towards faster, more stable, more secure, more humane direction of rapid development.</p><p>  

5、Elevator voice station reporting device is the embodiment of the humanized design of a specific performance. The elevator will be reported by voice or has reached the floor information, the running state of the elevator,

6、 welcome speech and music, can avoid wrong elevator passengers or floor, elimination of people take the elevator to the loneliness.</p><p>  2 hardware circuit design</p><p>  The system consist

7、s of signal acquisition and isolating circuit, SCM and its peripheral circuit, a speech chip circuit composed of three parts. The elevator floor after signal acquisition isolation after treatment sent to single-chip, sin

8、gle-chip analysis, judgment, extract the effective information, and then by processing output signals to control a speech chip circuit real-time broadcast.</p><p>  A 2.1 signal acquisition and separation ci

9、rcuit</p><p>  The newspaper station implement work needs to collect some relevant information to the operation of the elevator, elevator security requires additional system on elevator does not generate int

10、erference, the signal acquisition and isolation work is very important.</p><p>  The system used the elevator control panel on each floor button, elevator flat-layer signal and switch signal, as shown in tab

11、le 1:</p><p>  Table 1the elevator control signal</p><p>  Considering the signal voltage levels is not a, for the collection of signals required by different treatment. Experiments show that, w

12、hen the collection circuit input resistance in500K ohm following can result when the signal voltage drop, affect the elevator work; in view of this, the author adopts the high input resistance of the integrated operation

13、al amplifier circuit, the corresponding processing as shown in table 2:</p><p>  Table 2elevator signal processing and Applications</p><p>  After processing the signal by a photoelectric couple

14、r isolation processing, sent to mcu.</p><p>  2.2 single chip microcomputer and its peripheral circuit</p><p>  The system is based on ATMEL 's AT89C51as controller, AT89C51P1.0, P1.1, P1.2,

15、 P1.3, P1.4and ISD4004pins respectively1,2,3,28,25 foot link, to control (1,2,3,28,25are respectively the ISD4004chip select terminal SS, serial input serial output end MOSI, MISO, SCLK, INT serial clock end interrupt ),

16、 the remaining pins connected after treatment of floor information: including 1-23floor information signal, DOWN1, UP1peace level DOOR1, DT1, as shown in figure 1</p><p>  Figure 1 the AT89C51pin wiring diag

17、ram</p><p>  2.3speech chip circuit</p><p>  Because ISD4004voice chip of the normal working voltage for the 3V, and system using the voltage of 12V, we used the LM317integrated voltage regulato

18、r for voltage conversion ( as shown in Figure 2). ISD4004 audio signal output pin AUDOUT pin through a filter capacitor is connected with the loudspeaker, AMCAP automatically mute end, through the use of a capacitor to g

19、round, as shown in figure 3.</p><p>  ISD4004 series single chip voice recording</p><p>  The single chip 8to 16 minutes the voice recording</p><p>  The built-in microcontroller se

20、rial communication interface</p><p>  The 3V single supply</p><p>  Multi information processing.</p><p>  The current25-30mA, maintaining the current1 A</p><p>  The e

21、lectricity information stored for 100 years ( typical)</p><p>  The high quality, natural voice restoration technology</p><p>  The100000 recording cycle ( typical)</p><p>  Automat

22、ic muting function.</p><p>  The internal adjustment free clock, may choose to use an external clock</p><p>  ISD4004 series3V working voltage, a recording time of 8to 16 minutes, good sound qua

23、lity, applicable to mobile phones and other portable electronic products. Chip using CMOS technology, including the oscillator, antialiasing filter, smoothing filter, an audio amplifier, automatic squelch and high-densit

24、y multi-level flash memory display. Chip design is based on all operations must be controlled by the microcontroller, operation commands through the serial communication interface ( SPI or Microwi</p><p>  P

25、in description</p><p>  Power supply: ( VCCA, VCCD ) to make the noise to a minimum, chip analog and digital circuits using different power supply bus, and are respectively led to the outer package of differ

26、ent pin, analog and digital power supply terminal preferably respectively, walk the line, as far as possible, in close proximity to the power supply terminal is connected, and the decoupling capacitor should be as close

27、to the device.</p><p>  Ground: ( VSSA, VSSD ) chip internal analog and digital circuits also use different ground.</p><p>  Noninverting analog input ( IN + ANA ) this is a recording signal in-

28、phase input terminal. Input amplifier available single ended or differential drive. Single end input signal, by a coupling capacitor input maximum amplitude, peak32mV, coupling capacitance and the end of the3K ohm resist

29、ive input impedance determines the chip band cutoff frequency. Differential drive signal amplitude, maximum peak to peak value of16mV, ISD33000series of the same.</p><p>  Reverse analog input ( ANA IN ) dif

30、ferential drive, this is a recording signal to the inverting input. Signal through the coupling capacitor input, maximum amplitude of peak16mV</p><p>  Audio output ( AUD OUT ) to provide an audio output, ca

31、n drive5K ohm load.</p><p>  Chip select ( SS ) this end is low, namely to the ISD4004 chip sends instruction, instruction for high level between two.</p><p>  Serial input ( MOSI ) this end is

32、a serial input end, a main controller in serial the rising edge of the clock before half a cycle of data in the end, for the ISD input.</p><p>  Serial output ( MISO ) ISD serial output. ISD is not selected,

33、 the end is in a high resistance state.</p><p>  Serial clock ( SCLK ) ISD clock input terminal, by the master controller, MOSI and MISO for synchronous data transmission. Data in SCLK ascending latched onto

34、 the ISD, in falling out of the ISD.</p><p>  Interrupt ( / INT ) the end is an open drain output. ISD in any operation ( including the fast-forward ) was detected in EOM or OVF, the end becomes lower and ma

35、intain. Interrupt status in the next SPI cycle begins to clear. Interrupt status is also used RINT instructions read. OVF logo, indicating the ISD book, operation has reached the end of the memory. EOM logo - only in the

36、 playback was detected in the internal EOM logo, the status bit is set to 1.</p><p>  Row address clock ( RAC ) open drain outputs. Each of the RAC cycle of said ISD memory operation carried out a row ( in t

37、he ISD4004 series</p><p>  Memory total of 2400 lines ). The signal 175ms to maintain a high level, low level25ms. Fast forward mode, the RAC218.75 s is high,31.25 u s low. The terminal can be used for stora

38、ge management technology.</p><p>  External clock ( XCLK ) the end has an internal pull-down element. Chip sampling clock in the factory before calibration, error in the +1%. Commercial grade chip in the tem

39、perature and voltage range, frequency variation in +2.25%. Industrial grade chip in the temperature and voltage range, frequency variation in the - 6 / +4%, then recommend the use of regulated power supply. If greater ac

40、curacy is required, from the end of the external clock input ( as listed in the table ). Due to internal ant</p><p>  Automatic squelch ( AMCAP ) when the recording signal level drops to internally set a thr

41、eshold, automatically mute function so that the signal is weak, which helps to feed without the noise signal ( mute ). Usually the end of grounding capacitance of 1mF, constitute the internal signal peak value detection

42、circuit part. Detection of the peak level and internal set threshold for comparison, automatic muting function turning point. Large signal, automatic squelch circuit without attenuation, atte</p><p>  SPI (s

43、erial peripheral interface )</p><p>  ISD4004 to work with SPI serial interface. The SPI protocol is a synchronous serial data transmission protocol, protocol assumes that the microcontroller SPI shift regis

44、ter on the falling edge of SCLK action, so as to ISD4004, the clock stop rising along the latch pins of the MOSI data, the falling edge sends the data to the MISO pin. The specific content of the agreement for:</p>

45、<p>  1 all serial data transmission begins at SS falling edge.</p><p>  2.SS during transmission must be maintained as low level, in the two instruction is maintained at a high level.</p><

46、p>  3data at the rising edge of the clock moved, at the falling edge out.</p><p>  4.SS goes low, the input commands and addresses, ISD to start recording operation.</p><p>  The 5 instructio

47、n format (8control code ) is a plus (16 bits of the address code ).</p><p>  6.ISD any operations (including fast-forward) if EOM or OVF, is to generate an interrupt, the interrupt status in the next SPI the

48、 beginning of the cycle is cleared.</p><p>  7 the use of "reading" instruction so that the interrupt state displacement of ISD occurs on the MISO pin, control and address data should also be simul

49、taneously from the MOSI terminal moving. Therefore attention should be paid to whether the data and devices are compatible with operation current. Of course, is also allowed in a SPI cycle, while performing a read state

50、and start a new operation (i.e., new immigrant data and devices the operation can be incompatible).</p><p>  8all the operations in a running position (RUN ) set to 1when begin, placing0at the end of.</p&

51、gt;<p>  9all instructions are in the SS rising start execution.</p><p>  ( a ) the information fast forward</p><p>  The user does not need to know the exact address information, can fas

52、t-forward through a piece of information. Fast forward playback mode for information only. The playback speed is</p><p>  Often1600 times, met EOM after stopping, and then the internal address counter plus 1

53、, pointing to the next message at the beginning of.</p><p>  ( two) the power up sequence</p><p>  Device delay TPUD (8kHz sampling, approximately25 ms ) to start operation. Therefore, the user

54、sends the power on command, must wait for</p><p>  TPUD, can make an operation instruction.</p><p>  For example, from 00from the pronunciation, should follow the following sequence:</p>

55、<p>  1 rounds of POWERUP command;</p><p>  2wait for TPUD ( electric delay );</p><p>  3address value is 00SETPLAY command;</p><p>  4 rounds of PLAY command.</p><p

56、>  The device will have00address to start playback, when EOM, an immediate interrupt, stop playback.</p><p>  If the00recording, according to the following sequence:</p><p>  1POWER UP comman

57、d;</p><p>  2wait for TPUD ( electric delay );</p><p>  3POWER UP command</p><p>  4wait 2times TPUD;</p><p>  5address value is 00SETREC command;</p><p> 

58、 6 rounds of REC command.</p><p>  Device address from00to start recording, until the emergence of OVF ( memory end), to stop recording.</p><p>  3 software design</p><p>  3.1the s

59、ystem function realization</p><p><b>  (1) power</b></p><p>  The elevator stopped at the first floor, open the power switch, broadcast address of welcome. And initializes the curren

60、t floor1floor.</p><p>  (2) closed.</p><p>  Waiting for passengers to select floor, close the door. The selected floor information sort, find the maximum target floor: if the maximum target flo

61、or is greater than the current floor, the elevator upward, broadcasting the minimum target floor information; if the maximum target floor is less than the current floor, indicate the elevator down, the biggest target flo

62、ors information broadcast. On completion, the elevator starts operation.</p><p>  Figure 2 LM317voltage stabilizing circuit</p><p>  Figure 3 ISD4004connected graph</p><p>  (3) the

63、 running count</p><p>  Elevator operation process, according to the acquisition of the flat layer, lower implantation signal, on the current floor calculation, namely: if the elevator up, each level one, th

64、e current floor plus one; if the elevator down, each level one, the current floor.</p><p>  (4) the door.</p><p>  The elevator to reach the current floor, open the door, broadcast information,

65、and inform the ladder external passenger elevator running state, that broadcast" lift up / down". Broadcast end, return operation steps (2).</p><p>  The 4ending</p><p>  This system a

66、fter the installation, debugging, stable, reliable operation of the elevator, the safe and stable operation, without interference, achieve the expected design requirements.</p><p>  一種基于單片機控制的電梯語音報站器</p&g

67、t;<p>  鍵詞: 單片機   ISD4004   語音報站器 電子園51單片機學習網(wǎng)Bn&F@x </p><p>  1  引言電子園51單片機學習網(wǎng)3pR u$s5QAJ現(xiàn)代建筑物規(guī)模越來越大,樓層越來越高,對電梯的技術(shù)和質(zhì)量的要求也越來越高?,F(xiàn)代電梯技術(shù)已朝著更快、更穩(wěn)、更安全、更人性

68、化的方向迅速發(fā)展。#u r ~%iY&pg6g44606電梯語音報站器就是體現(xiàn)其人性化設(shè)計的一個具體表現(xiàn)。用語音報告電梯將要到達或已到達的樓層信息、電梯的運行狀態(tài)、歡迎詞和音樂等,可避免乘客搭錯電梯或樓層、消除人們乘坐電梯時的寂寞感。</p><p>  r~MQv2  硬件電路設(shè)計)KOD7f t"`-g \44606本系統(tǒng)由信號采集與隔離電路、單片機及其外圍電路、

69、語音芯片電路三大部分組成。電梯的樓層信號經(jīng)過采集隔離處理后送至單片機,單片機分析、判斷、提取出有效信息,再經(jīng)運算處理輸出控制信號控制語音芯片電路實時播報。電子園51單片機學習網(wǎng)3Y9J!~@7WN|2.1  信號采集與隔離電路電子園51單片機學習網(wǎng)4l4Zt:\C+q(JibU報站器的正常工作需要采集到電梯運行的一些相關(guān)信息,電梯的安全運行要求附加系統(tǒng)對電梯本身不能產(chǎn)生干擾,因此信號的采集與隔離工作相當重要。

70、/s&j:~3eA kt){)}44606本系統(tǒng)用到了電梯控制面板上的各樓層按鈕、電梯平層信號和開關(guān)門信號。</p><p>  Be6^k\44606 電子園51單片機學習網(wǎng)8Rs p7HA$pgPmMrG電子園51單片機學習網(wǎng)%Xx1N,TV7o8tp考慮到信號的電壓等級不一,對于采集到的信號需經(jīng)過不同的處理。實驗證明,當采集電路的輸入端電阻在500kΩ以下時會導致信號的電壓下降,

71、影響電梯工作;鑒于此,筆者采用具有高輸入電阻的集成運算放大器電路,并作出相應的處理Z/^%}qL.lsOZ9c44606 電子園51單片機學習網(wǎng)%St g6q5J電子園51單片機學習網(wǎng)b~DY3mQ)P 電子園51單片機學習網(wǎng)zF-} [2X5y~k d-c3c經(jīng)過處理之后的信號再經(jīng)光電耦合器進行隔離處理,送至單片機。 1_\]#s)R_`@446062.2  單片機及其外圍電路 :v#w0}

72、AH5I44606本系統(tǒng)采用的是ATMEL公司的AT89C51作主控制器,AT89C51的P1.0、P1.1、P1.2、P1.3、P1.4引腳分別與ISD4004的 1、2、3、28、25腳連接,以對其進行控制(1、2、3、28、25分別是ISD4004的片選端SS、串行輸入端MOSI、串行</p><p>  電子園51單片機學習網(wǎng)A:U,u+{#FN446062.3  語音芯片電路電子園51單

73、片機學習網(wǎng)F)H$Jp'qp_2_0}\因ISD4004語音芯片的正常工作電壓為3V,而系統(tǒng)的使用電壓為12V,我們采用了LM317集成穩(wěn)壓器做電壓轉(zhuǎn)換。ISD4004的音頻信號輸出引腳AUDOUT引腳通過一個濾波電容與揚聲器連接, AMCAP為自動靜音端,使用時通過一個電容接地。</p><p>  ISD4004 系列單片語音錄放 </p><p>  ●單片8 至

74、16 分鐘語音錄放 </p><p>  ●內(nèi)置微控制器串行通信接口 </p><p>  ●3V 單電源工作 </p><p><b>  ●多段信息處理 </b></p><p>  ●工作電流25-30mA,維持電流1μA </p><p>  ●不耗電信息保存100 年(典型值) <

75、/p><p>  ●高質(zhì)量、自然的語音還原技術(shù) </p><p>  ●10 萬次錄音周期(典型值) </p><p><b>  ●自動靜噪功能 </b></p><p>  ●片內(nèi)免調(diào)整時鐘,可選用外部時鐘 </p><p>  ISD4004 系列工作電壓3V,單片錄放時間8 至16 分鐘,音質(zhì)

76、好,適用于移動電話及其他便攜式電子產(chǎn)品中。芯片采用CMOS 技術(shù),內(nèi)含振蕩器、防混淆濾波器、平滑濾波器、音頻放大器、自動靜噪及高密度多電平閃爍存貯陳列。芯片設(shè)計是基于所有操作必須由微控制器控制,操作命令可通過串行通信接口(SPI 或Microwire)送入。芯片采用多電平直接模擬量存儲技術(shù), 每個采樣值直接存貯在片內(nèi)閃爍存貯器中,因此能夠非常真實、自然地再現(xiàn)語音、音樂、音調(diào)和效果聲,避免了一般固體錄音電路因量化和壓縮造成的量化噪聲和&q

77、uot;金屬聲"。采樣頻率可為 4.0,5.3,6.4,8.0kHz,頻率越低,錄放時間越長,而音質(zhì)則有所下降,片內(nèi)信息存于閃爍存貯器中,可在斷電情況下保存100 年(典型值),反復錄音10 萬次。 </p><p><b>  引腳描述</b></p><p>  電源:(VCCA,VCCD) 為使噪聲最小,芯片的模擬和數(shù)字電路使用不同的電源總線,并且分別

78、引到外封裝的不同管腳上,模擬和數(shù)字電源端最好分別走線,盡可能在靠近供電端處相連,而去耦電容應盡量靠近器件。 </p><p>  地線:(VSSA,VSSD) 芯片內(nèi)部的模擬和數(shù)字電路也使用不同的地線。 </p><p>  同相模擬輸入(ANA IN+) 這是錄音信號的同相輸入端。輸入放大器可用單端或差分驅(qū)動。單端輸入時,信號由耦合電容輸入,最大幅度為峰峰值32mV,耦合電容和本端的3K

79、Ω電阻輸入阻抗決定了芯片頻帶的低端截止頻率。差分驅(qū)動時,信號最大幅度為峰峰值16mV,為ISD33000 系列相同。 </p><p>  反相模擬輸入(ANA IN-) 差分驅(qū)動時,這是錄音信號的反相輸入端。信號通過耦合電容輸入,最大幅度為峰峰值16mV </p><p>  音頻輸出(AUD OUT) 提供音頻輸出,可驅(qū)動5KΩ的負載。 </p><p>  片

80、選(SS) 此端為低,即向該ISD4004 芯片發(fā)送指令,兩條指令之間為高電平。 </p><p>  串行輸入(MOSI) 此端為串行輸入端,主控制器應在串行時鐘上升沿之前半個周期將數(shù)據(jù)放到本端,供ISD 輸入。 </p><p>  串行輸出(MISO) ISD 的串行輸出端。ISD 未選中時,本端呈高阻態(tài)。 </p><p>  串行時鐘(SCLK) ISD

81、的時鐘輸入端,由主控制器產(chǎn)生,用于同步MOSI 和MISO 的數(shù)據(jù)傳輸。數(shù)據(jù)在SCLK上升沿鎖存到ISD,在下降沿移出ISD。 </p><p>  中斷(/INT) 本端為漏極開路輸出。ISD 在任何操作(包括快進)中檢測到EOM 或OVF 時,本端變低并保持。中斷狀態(tài)在下一個SPI 周期開始時清除。中斷狀態(tài)也可用RINT 指令讀取。OVF 標志----指示ISD的錄、放操作已到達存儲器的未尾。EOM 標志--

82、--只在放音中檢測到內(nèi)部的EOM 標志時,此狀態(tài)位才置1。 </p><p>  行地址時鐘(RAC) 漏極開路輸出。每個RAC 周期表示ISD 存儲器的操作進行了一行(ISD4004 系列中的 </p><p>  存貯器共2400 行)。該信號175ms 保持高電平,低電平為25ms??爝M模式下,RAC 的218.75μs 是高電平,31.25μs 為低電平。該端可用于存儲管理技術(shù)。

83、</p><p>  外部時鐘(XCLK) 本端內(nèi)部有下拉元件。芯片內(nèi)部的采樣時鐘在出廠前已調(diào)校,誤差在 +1%內(nèi)。商業(yè)級芯片在整個溫度和電壓范圍內(nèi), 頻率變化在+2.25%內(nèi)。工業(yè)級芯片在整個溫度和電壓范圍內(nèi),頻率變化在-6/+4%內(nèi),此時建議使用穩(wěn)壓電源。若要求更高精度,可從本端輸入外部時鐘(如前表所列)。由于內(nèi)部的防混淆及平滑濾波器已設(shè)定,故上述推薦的時鐘頻率不應改變。輸入時鐘的占空比無關(guān)緊要,因內(nèi)部首先進

84、行了分頻。在不外接地時鐘時,此端必須接地。 </p><p>  自動靜噪(AMCAP) 當錄音信號電平下降到內(nèi)部設(shè)定的某一閾值以下時,自動靜噪功能使信號衰弱,這樣有助于養(yǎng)活無信號(靜音)時的噪聲。通常本端對地接1mF 的電容,構(gòu)成內(nèi)部信號電平峰值檢測電路的一部分。檢出的峰值電平與內(nèi)部設(shè)定的閾值作比較,決定自動靜噪功能的翻轉(zhuǎn)點。大信號時,自動靜噪電路不衰減,靜音時衰減6dB。1mF 的電容也影響自動靜噪電路對信號

85、幅度的響應速度。本端接VCCA 則禁止自動靜噪。 </p><p>  SPI(串行外設(shè)接口)</p><p>  ISD4004 工作于SPI 串行接口。SPI 協(xié)議是一個同步串行數(shù)據(jù)傳輸協(xié)議,協(xié)議假定微控制器的SPI 移位寄存器在SCLK 的下降沿動作,因此對ISD4004 而言,在時鐘止升沿鎖存MOSI 引腳的數(shù)據(jù),在下降沿將數(shù)據(jù)送至MISO 引腳。協(xié)議的具體內(nèi)容為: </p&

86、gt;<p>  1.所有串行數(shù)據(jù)傳輸開始于SS 下降沿。 </p><p>  2.SS 在傳輸期間必須保持為低電平,在兩條指令之間則保持為高電平。 </p><p>  3.數(shù)據(jù)在時鐘上升沿移入,在下降沿移出。 </p><p>  4.SS 變低,輸入指令和地址后,ISD 才能開始錄放操作。 </p><p>  5.指令

87、格式是(8 位控制碼)加(16 位地址碼)。 </p><p>  6.ISD 的任何操作(含快進)如果遇到EOM 或OVF,則產(chǎn)生一個中斷,該中斷狀態(tài)在下一個SPI 周期開始時被清除。 </p><p>  7.使用"讀"指令使中斷狀態(tài)位移出ISD 的MISO 引腳時,控制及地址數(shù)據(jù)也應同步從MOSI 端移入。因此要注意移入的數(shù)據(jù)是否與器件當前進行的操作兼容。當然,也

88、允許在一個SPI 周期里,同時執(zhí)行讀狀態(tài)和開始新的操作(即新移入的數(shù)據(jù)與器件當前的操作可以不兼容)。 </p><p>  8.所有操作在運行位(RUN)置1 時開始,置0 時結(jié)束。 </p><p>  9.所有指令都在SS 端上升沿開始執(zhí)行。 </p><p><b>  (一)信息快進</b></p><p>  

89、用戶不必知道信息的確切地址,就能快進跳過一條信息。信息快進只用于放音模式。放音速度是正 </p><p>  常的1600 倍,遇到EOM 后停止,然后內(nèi)部地址計數(shù)器加1,指向下條信息的開始處。 </p><p><b>  (二)上電順序</b></p><p>  器件延時TPUD(8kHz 采樣時,約為25 毫秒)后才能開始操作。因此,用

90、戶發(fā)完上電指令后,必須等待 </p><p>  TPUD,才能發(fā)出一條操作指令。 </p><p>  例如,從00 從處發(fā)音,應遵循如下時序: </p><p>  1. 發(fā)POWERUP 命令; </p><p>  2. 等待TPUD(上電延時); </p><p>  3. 發(fā)地址值為00 的SETPLAY

91、命令; </p><p>  4. 發(fā)PLAY 命令。 </p><p>  器件會從此00 地址開始放音,當出現(xiàn)EOM 時,立即中斷,停止放音。 </p><p>  如果從00 處錄音,則按以下時序: </p><p>  1. 發(fā)POWER UP 命令; </p><p>  2. 等待TPUD(上電延時); &

92、lt;/p><p>  3. 發(fā)POWER UP 命令 </p><p>  4. 等待2 倍TPUD; </p><p>  5. 發(fā)地址值為00 的SETREC 命令; </p><p>  6. 發(fā)REC 命令。 </p><p>  器件便從00 地址開始錄音,一直到出現(xiàn)OVF(存貯器末尾)時,錄音停止。 <

93、/p><p>  +idrEy:o Y446063  軟件設(shè)計電子園51單片機學習網(wǎng)dR1E;dvQ;o` o9i3.1  系統(tǒng)功能的實現(xiàn)8rH_x9S{;jwoNh44606電梯停在一樓時,打開電源開關(guān),播報歡迎詞。并初始化當前樓層為1樓。2E$D*F)Q3y6]-JM44606(2) 關(guān)門播報電子園51單片機學習網(wǎng)ewSQ</p><p>

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