• <tr id="yyy80"></tr>
  • <sup id="yyy80"></sup>
  • <tfoot id="yyy80"><noscript id="yyy80"></noscript></tfoot>
  • 99热精品在线国产_美女午夜性视频免费_国产精品国产高清国产av_av欧美777_自拍偷自拍亚洲精品老妇_亚洲熟女精品中文字幕_www日本黄色视频网_国产精品野战在线观看 ?

    Transformation of Voltage Mode Filter Circuit Based on Op-Amp to Circuit Based on CCII

    2015-07-14 01:20:30ThourayaEttaghzoutijibHassenandKamelBesbes

    Thouraya Ettaghzouti, Néjib Hassen, and Kamel Besbes

    1. Introduction

    Recently, the symbolic analysis has been widely applied in analogue circuits. Based on technique nodal admittance matrix (NAM)[1]-[3], we can transform any looped-application circuit based on op-amp to a circuit based on second-generation current conveyor (CCII). The matrix expansion process begins with introducing blank rows and columns which represent the new internal nodes in the admittance matrix. Then, nullators and norators are used to move the resulting admittance matrix elements to their final locations; therefore, it will be easier to determine whether the passive elements are floating or grounded.

    Nullator and norator are pathological elements, as shown in Fig. 1, which have ideal characteristics. They are expressed in terms of constraints on their voltages and currents. For nullator V=I=0, the norator imposes no constraint on the voltage and current. The union of nullator and norator is called ‘nullor’, which has a nullator input and a norator output[4]-[7]. There are other elements called pathological mirror elements. The voltage mirror (VM) is a two-port element. It is described by: V1= -V2, I1= I2= 0.The current mirror (CM) is a two-port element which is described by: V1, V2, and I1=I2: all of them are arbitrary.

    In 1999, based on pathological elements, Soliman and Awad gave a presentation for second-generation symbolic circuit current conveyors, as shown in Table 1[8].

    Fig. 1. Pathological elements: (a) nullator, (b) norator, (c) voltage mirror, and (d) current mirror.

    Table 1: Circuit CCII-based nullator and norator

    In this paper, based on technique nodal admittance matrix (NAM) and nullator-norator, we transform a voltage a mode filter (band-pass and low-pass) based on amp-op into filter circuit based on CCII and assign all possible proposals. We have simulated these filters with a new circuit current conveyor CCII. This circuit has a rail to rail dynamic range, wide-bandwidth (2.52 GHz) current and wide-bandwidth (2.88 GHz) voltage, and low resistor at terminal X (RX=1.01 Ω). The center frequency of the filter can have a max value, equal to 196 MHz.

    2. Low-Pass Band-Pass Filter

    The concept of CCII was first introduced by Sedra and Smith[9]. This circuit has attracted the attention of a lot of researchers in the field of active filters[10]-[15]and oscillators[16],[17]thanks to its advantages over operational amplifier, such as wide dynamic range, wide bandwidth,high accuracy, and low power dissipation. Our application is a low-pass band-pass filter shown in Fig. 2. Based on the technique nodal admittance matrix (NAM) and elements nullator-norator, we will assign all possible circuits of the filter circuit based on CCII.

    Fig. 2. Low-pass band-pass filter.

    Fig. 3. Block diagram of filter.

    The block diagram of the filter is given in Fig. 3. The transfer functions of the band-pass filter, low-pass filter,and the expression of the center frequency are respectively given by

    with a zero input voltage (Vin= 0), the denominator of (2)and (3) is given by

    This relationship reflects the filter transfer function of the loop part with Vinequal to zero. Transforming the equation to the following matrix form:

    To alter the circuit filter to a circuit based on CCII, we extend the matrix of (5) by adding a third row and third column with element 0, and move G3to the diagonal position (3, 3) by using a nullator between node 2 and node 3 and a current mirror between node 1 and node 3 as follows.

    Then a fourth row and a column are added with element 0, and G4 is moved to the diagonal position (4, 4) by using a nullator between node 1 and node 4 and norator between node 2 and node 4 as follows.

    This is the binding of each component of the matrix to the corresponding node (Fig. 4). In Table 2, we represent all possible circuits of the looped part of filter.

    Fig. 4. Pathological modeling of the loop part of filter.

    Table 2: All possible circuits of the looped part of filter

    Fig. 5. CCII block diagram.

    3. Second Generation Current Conveyor CCII Circuit

    3.1 Theoretical Analysis

    The CCII is a three terminal device as shown in Fig. 5.

    The ideal relation between terminal voltage and current is given by

    In real circumstances, the circuit will introduce parasitic elements. Thus the characteristic equation becomes

    On the terminal Y and Z, two impedances ZYand ZZare specific to a parallel resistor with a capacitor. The impedance ZXon the terminal X is a parasitic resistor RX,where α and β denote respectively current gain and voltage gain.

    The proposed CMOS CCII+ is shown in Fig. 6. The input stage of this circuit is composed of two differential pairs. The differential pair N-MOS (M1, M2) and another differential pair P-MOS (M5, M6) are connected in parallel to implement the voltage follower between the nodes X and Y. Transistors (M11, M12) provide the necessary biasing currents for each differential pair separately.

    Fig. 6. Circuit current conveyor of the proposed CMOS CCII+.

    The operation of this stage can be divided into three regions. In the positive rail region, only the NMOS pair is active. In the mid-rail region both NMOS and PMOS are active, however in the negative rail region, only the PMOS pair is active[18]-[21].

    The input stage model of the proposed CMOS CCII+ is presented in Fig. 7. The voltage gain Avtransition function between nodes X and Y is given by

    where RNand RPare the equivalent resistors of the differential stage type N and type P, where RN=ro1||ro3and RP=ro5||ro7. A1and A2are the respective gains of the two amplifiers with:

    where gmis the transconductance of MOS transistor. ro14and ro17are the internal resistances of transistors M14 and M17. Avis very close to 1 since

    Therefore, VXexactly follows VY.

    Fig. 7. Input stage model of the proposed CMOS CCII+.

    To calculate the parasitic resistance at node X, we have plotted the small signal equivalent circuit of the output stage. The impedance of the node X (RX) is the parallel connection of RXNand RXP.

    The impedance RXNpresented by M17 (Fig. 8) is given by

    Fig.8. Small signal equivalent circuits at the drains of M17.

    Fig. 9. Small signal equivalent circuits at the drains of M14.

    Similarly, the impedance RXPpresented by M14 (Fig. 9)is given by

    The impedance RXof the node X is the parallel connection of RXNand RXP.

    B. Simulation Results of CCII

    The performance of the proposed CMOS CCII+ was verified by TSPICE based on the BSIM3v3 transistor model for the TSMC 0.18 μm CMOS process available from MOSIS[22]. This circuit is powered by ±0.75 V. The transistors aspect ratios of the novel CCII is summarized and given in Table 3.

    Table 3: Aspect ratios of the transistors

    Table 4: Performance characteristics of the CMOS CCII

    The simulation results are presented in Table 4 and shown in Fig. 10 to Fig. 14. These results can be described as follows.

    In the voltage mode, the circuit current conveyor achieves the assured good linearity over the range -0.75 V to 0.65 V, as shown in Fig. 10, a frequency static gain of 0.99913 and a cutoff frequency of 2.88 GHz, as shown in Fig. 11, and the input resistance of 1.01 Ω at the node X, as given in Fig. 12.

    In the current mode, a good linearity was obtained over the interval [-150 μA, 150 μA] (Fig. 13). Fig. 14 shows a static gain of 0.99906 for a cutoff frequency of 2.52 GHz.The parasitic elements on the tracks Y and Z are a resistor in parallel with a capacitor. They are RY||CY(∞||30.3 fF) and RZ||CZ(11.31 KΩ||11.47 fF), respectively.

    Fig. 10. Variation of output voltage as a function of input voltage

    Fig.11. Voltage gain according to the frequency.

    Fig. 12. Resistance RX against frequency.

    Fig. 14. Current gain according to the frequency.

    Fig. 15. Low-pass band-pass filter based CCII.

    Fig. 13. Variation of output current as a function of input current.

    Fig. 16. Result of the simulation of the filter.

    C. Simulation Result of Filter

    To confirm the theoretical results of filter, we add the input stage to one of the proposals presented in Table 2 (Fig.15). The values of the passive components used are: C1= C2= 4 pF and R1= R2= R3= R4= 200 Ω. The center frequency obtained from the filter is 196 MHz (Fig. 16). By variations of the resistors (R1= R2= R3= R4) from 200 Ω to 1 kΩ and the capabilities from 4 pF to 100 pF, the center frequency of the proposed filter is variable on the interval [157 kHz, 196 MHz] (Fig. 17).

    Fig.17. Variation of the frequency as a function of R and C.

    4. Conclusions

    In this paper, based on the technique nodal admittance matrix (NAM) and nullator-norator, we have transformed a low-pass band-pass filter based on op-amp to the filter circuit based on CCII, and obtained eight possible circuits.The CCII is operative at low supply voltage. It has a low parasitic resistance at the terminal X and a high input impedance at terminal Y. The proposed CCII has a rail to rail dynamic range, wide-bandwidth (2.52 GHz) current and wide-bandwidth (2.88 GHz) voltage with a low resistor at the terminal X (RX= 1.01 Ω).

    [1] A. M. Soliman, “Generation of CCII and ICCII based Wien oscillators using nodal admittance matrix expansion,” Int.Journal of Electronics and Communications, vol. 64, no. 10,pp. 971-977, 2010.

    [2] A. M. Soliman, “Generation of current conveyor based oscillators using nodal admittance matrix expansion,”Analog Integrated Circuits and Signal Processing, vol. 65,pp. 43-59, 2010.

    [3] R. A. Saad and A. M. Soliman, “Generation, modeling, and analysis of CCII-based gyrators using the generalized symbolic framework for linear active circuits,” Int. Journal of Circuit Theory and Applications, vol. 36, no. 3 pp.289-309, 2008.

    [4] I. A. Awad and A. M. Soliman, “On the voltage mirrors and the current mirrors,” Analog Integrated Circuits and Signal Processing, vol. 32, no. 1, pp. 79-81, 2002.

    [5] J. A. Svoboda, “Current conveyors, operational amplifiers and Nullors,” IEE Proceedings, vol. 136, no. 6, pp. 317-322, 1989.

    [6] A. Carlosenat and G. S. Moschytz, “Nullators and norators in voltage to current mode transformations,” Int. Journal of Circuit Theory and Applications, vol. 21, no. 4, pp. 421-424,1993.

    [7] C.-M. Chang and P.-C. Chen, “Realization of current-mode transfer function using second-generation current conveyors,” Int. Journal of Electronics, vol. 71, no. 5, pp.809-815, 1991.

    [8] I. A. Awad and A. M. Soliman, “Inverting second generation current conveyors: the missing building blocks, CMOS realizations and applications,” Int. Journal of Electronics,vol. 86, no. 4, pp. 413-432, 1999.

    [9] A. S. Sedra and K. C. Smith, “A second generation current conveyor and its applications,” IEEE Trans. on Circuit Theory, vol. 17, no. 1, pp. 132-134, 1970.

    [10] A. M Soliman, “Current mode filters using two output inverting CCII,” Int. Journal of Circuit Theory and Applications, vol. 36, no. 7, pp. 875–881, 2008.

    [11] S. Maheshwari and I. A. Khan, “Novel cascadable current mode translinear-C universal filter,” Active and Passive Electronic Components, vol. 27, no. 4, pp. 215-218, 2004.

    [12] N. Hassen, T. Ettaghzouti, and K. Besbes, “Highperformance second-generation controlled current conveyor CCCII and high frequency applications,” World Academy of Science Engineering and Technology, vol. 5, no. 12, pp.851-860, 2011.

    [13] A. M. Soliman, “Voltage mode and current mode tow Thomas bi-quadratic filters using inverting CCII,” Int.Journal of Circuit Theory and Applications, vol. 35, no. 4,pp. 463–467, 2007.

    [14] J.-W. Horng, C.-L. Hou, C.-M. Chang, and W.-Y. Chung,“Voltage-mode universal biquadratic filters with one input and five outputs,” Analog Integrated Circuits and Signal Processing, vol. 47, no. 1, pp. 73–83, 2006.

    [15] J. Koton, N. Herencsa, and K. Vrba, “KHN-equivalent voltage-mode filters using universal voltage conveyors,”Int.Journal of Electronics and Communications, vol. 65, no. 2,pp. 154-160, 2011.

    [16] G. D. Skotis and C. Psychalinos, “Multiphase sinusoidal oscillators using second generation current conveyors,”Int.Journal of Electronics and Communications, vol. 64, no. 12,pp. 1178–1181, 2010.

    [17] A. K. Sharma and D. Pal, “Modified CMOS positive current conveyor based true RC sinusoidal oscillator,” Int. Journal of Engineering and Technology, vol. 2, no. 4, pp. 390–393,2010.

    [18] T. Kurashina, “A CMOS rail to rail current conveyor,”IEICE Trans Fundamentals of Electronics, Communications and Computer Sciences, vol. 85, no. 12, pp. 2894-2900,2002.

    [19] T. Ettaghzouti, N. Hassen, and K. Besbes, “Novel CMOS second generation current conveyor CCII with rail-to-rail input stage and filter application,” in Proc. of the 11th Int.Multi-Conf. on Systems, Signals & Devices, 2014, pp. 1–6.

    [20] W. S. Hassanein, I. A. Awad, and A. M. Soliman, “New wide band low power CMOS current conveyors,” Analog Integrated Circuits and Signal Processing, vol. 40, no. 1, pp.91–97, 2004.

    [21] A. H. M. Abolila, H. F. A. Hamed, and E.-S. A. M.Hasaneen, “High performance wideband CMOS current conveyor for low voltage low power applications,” in Proc.of 2010 IEEE Int. Symposium on Signal Processing and Information Technology, 2011, pp. 433-438.

    [22] The MOSIS Service. [Online]. Available:https://www.mosis.com/pages/Technical/Testdata/index

    国产精品久久久av美女十八| 亚洲国产精品一区二区三区在线| 十八禁人妻一区二区| 亚洲伊人久久精品综合| 久久精品国产亚洲av涩爱| 亚洲成人免费电影在线观看 | 尾随美女入室| 午夜精品国产一区二区电影| 亚洲三区欧美一区| 一级黄片播放器| 青青草视频在线视频观看| 国产高清国产精品国产三级| 免费日韩欧美在线观看| 国产又爽黄色视频| 肉色欧美久久久久久久蜜桃| 女人精品久久久久毛片| 99国产精品99久久久久| 国产在线一区二区三区精| 成年人免费黄色播放视频| 在线观看免费日韩欧美大片| 欧美日韩视频高清一区二区三区二| 国产精品免费视频内射| 精品一品国产午夜福利视频| 国产伦人伦偷精品视频| 精品欧美一区二区三区在线| 亚洲国产精品成人久久小说| 少妇被粗大的猛进出69影院| 免费高清在线观看视频在线观看| 18禁黄网站禁片午夜丰满| 色精品久久人妻99蜜桃| 国产91精品成人一区二区三区 | 亚洲欧洲国产日韩| 色综合欧美亚洲国产小说| 精品国产国语对白av| 久久久久久久大尺度免费视频| 亚洲成人国产一区在线观看 | 性色av一级| 少妇被粗大的猛进出69影院| 国产色视频综合| 欧美大码av| 九色亚洲精品在线播放| kizo精华| 嫁个100分男人电影在线观看 | 老汉色av国产亚洲站长工具| 午夜av观看不卡| 久久久久精品国产欧美久久久 | 纯流量卡能插随身wifi吗| 亚洲国产精品999| 天天躁夜夜躁狠狠久久av| 国产男人的电影天堂91| 久久久久国产精品人妻一区二区| 亚洲精品一二三| a级毛片在线看网站| 精品欧美一区二区三区在线| 国产精品一区二区精品视频观看| 国产精品香港三级国产av潘金莲 | 99热全是精品| 亚洲精品美女久久久久99蜜臀 | 夫妻午夜视频| 少妇被粗大的猛进出69影院| 极品少妇高潮喷水抽搐| 悠悠久久av| 午夜福利视频在线观看免费| 一区二区日韩欧美中文字幕| 国产欧美亚洲国产| 国产免费福利视频在线观看| 女人精品久久久久毛片| 欧美精品亚洲一区二区| 精品少妇黑人巨大在线播放| 久久这里只有精品19| 在线观看免费高清a一片| 欧美亚洲日本最大视频资源| 亚洲成色77777| 国产成人91sexporn| 丰满少妇做爰视频| 97在线人人人人妻| 欧美精品一区二区大全| 黑人欧美特级aaaaaa片| 伊人久久大香线蕉亚洲五| 在线天堂中文资源库| 亚洲人成电影免费在线| 夜夜骑夜夜射夜夜干| 无遮挡黄片免费观看| 国产熟女欧美一区二区| 国产精品三级大全| 亚洲精品中文字幕在线视频| 天天添夜夜摸| 国产不卡av网站在线观看| 国产真人三级小视频在线观看| 嫩草影视91久久| 久久久久久久精品精品| 9色porny在线观看| 日日夜夜操网爽| 又黄又粗又硬又大视频| 999精品在线视频| 美女高潮到喷水免费观看| 免费女性裸体啪啪无遮挡网站| 久久精品成人免费网站| 亚洲熟女精品中文字幕| 欧美中文综合在线视频| 亚洲欧美清纯卡通| 亚洲精品久久成人aⅴ小说| 黄频高清免费视频| 别揉我奶头~嗯~啊~动态视频 | 久热爱精品视频在线9| 老司机亚洲免费影院| 国产精品久久久久久精品古装| 欧美在线黄色| 久久精品人人爽人人爽视色| 国产成人精品无人区| 高清av免费在线| 亚洲精品一卡2卡三卡4卡5卡 | 成人免费观看视频高清| av片东京热男人的天堂| 欧美精品啪啪一区二区三区 | 欧美激情极品国产一区二区三区| 中文字幕色久视频| 亚洲中文字幕日韩| 成在线人永久免费视频| 国产亚洲欧美精品永久| 我要看黄色一级片免费的| 50天的宝宝边吃奶边哭怎么回事| 亚洲精品自拍成人| 婷婷色麻豆天堂久久| 国产国语露脸激情在线看| 女人精品久久久久毛片| 少妇人妻 视频| 极品人妻少妇av视频| 亚洲欧洲日产国产| 一本综合久久免费| 一边摸一边做爽爽视频免费| 天天躁狠狠躁夜夜躁狠狠躁| 国产高清不卡午夜福利| 一区在线观看完整版| 国产精品三级大全| 黄片播放在线免费| 99国产综合亚洲精品| 99国产精品一区二区蜜桃av | 国产又爽黄色视频| 亚洲精品久久成人aⅴ小说| 啦啦啦 在线观看视频| 亚洲精品日韩在线中文字幕| xxx大片免费视频| 91精品国产国语对白视频| 777久久人妻少妇嫩草av网站| 欧美在线黄色| 成人黄色视频免费在线看| 99久久99久久久精品蜜桃| 午夜影院在线不卡| 一区在线观看完整版| 天天躁日日躁夜夜躁夜夜| 巨乳人妻的诱惑在线观看| 亚洲av国产av综合av卡| 久久精品国产综合久久久| 欧美97在线视频| 丝袜人妻中文字幕| 王馨瑶露胸无遮挡在线观看| 久久久欧美国产精品| 精品国产乱码久久久久久小说| av国产精品久久久久影院| 女人高潮潮喷娇喘18禁视频| 亚洲精品久久久久久婷婷小说| 亚洲色图综合在线观看| 国产主播在线观看一区二区 | 波多野结衣av一区二区av| 欧美精品人与动牲交sv欧美| 一级毛片女人18水好多 | 岛国毛片在线播放| 一二三四在线观看免费中文在| 久久精品亚洲熟妇少妇任你| 久久久久网色| 丁香六月天网| 性高湖久久久久久久久免费观看| 亚洲美女黄色视频免费看| 制服人妻中文乱码| 丝袜脚勾引网站| 男女床上黄色一级片免费看| 成年女人毛片免费观看观看9 | 捣出白浆h1v1| 国产亚洲午夜精品一区二区久久| 亚洲国产精品国产精品| 大香蕉久久成人网| 欧美人与性动交α欧美软件| 亚洲久久久国产精品| 女人精品久久久久毛片| 少妇粗大呻吟视频| 天天操日日干夜夜撸| 50天的宝宝边吃奶边哭怎么回事| 精品一品国产午夜福利视频| 极品人妻少妇av视频| 亚洲专区国产一区二区| 99精国产麻豆久久婷婷| 脱女人内裤的视频| 国产精品国产av在线观看| 后天国语完整版免费观看| 一区二区三区乱码不卡18| 国产av一区二区精品久久| 亚洲av成人精品一二三区| 超碰成人久久| 国产亚洲欧美在线一区二区| 久久国产精品人妻蜜桃| 巨乳人妻的诱惑在线观看| 一区在线观看完整版| www日本在线高清视频| 一二三四社区在线视频社区8| e午夜精品久久久久久久| 亚洲精品国产av成人精品| 久久人人爽人人片av| 国产人伦9x9x在线观看| 99久久99久久久精品蜜桃| 国产精品免费视频内射| www.av在线官网国产| 女人精品久久久久毛片| 老司机亚洲免费影院| 亚洲人成电影免费在线| 国产成人av激情在线播放| 丝袜在线中文字幕| 亚洲成av片中文字幕在线观看| 国产福利在线免费观看视频| 国产亚洲午夜精品一区二区久久| 啦啦啦视频在线资源免费观看| 欧美成人午夜精品| 国产真人三级小视频在线观看| 黄色一级大片看看| 国产色视频综合| 婷婷丁香在线五月| 国产精品久久久久成人av| 午夜福利一区二区在线看| 丝袜人妻中文字幕| 免费久久久久久久精品成人欧美视频| 麻豆乱淫一区二区| 免费在线观看完整版高清| 国产成人av教育| 免费一级毛片在线播放高清视频 | 精品亚洲乱码少妇综合久久| 欧美日韩综合久久久久久| 操出白浆在线播放| 亚洲国产中文字幕在线视频| 老司机深夜福利视频在线观看 | 天堂中文最新版在线下载| 精品少妇久久久久久888优播| 欧美在线黄色| 十分钟在线观看高清视频www| 国产精品一二三区在线看| 久久人妻熟女aⅴ| 亚洲色图综合在线观看| 高清视频免费观看一区二区| √禁漫天堂资源中文www| 亚洲图色成人| 别揉我奶头~嗯~啊~动态视频 | 国产又色又爽无遮挡免| 亚洲成国产人片在线观看| 女人被躁到高潮嗷嗷叫费观| 欧美日韩成人在线一区二区| 国产精品免费视频内射| 纵有疾风起免费观看全集完整版| 欧美乱码精品一区二区三区| 女性生殖器流出的白浆| xxxhd国产人妻xxx| 午夜福利一区二区在线看| 亚洲激情五月婷婷啪啪| 午夜福利在线免费观看网站| 精品国产一区二区三区久久久樱花| 亚洲av男天堂| 亚洲精品久久午夜乱码| 韩国高清视频一区二区三区| 青春草视频在线免费观看| 男女免费视频国产| www.熟女人妻精品国产| 另类精品久久| 看十八女毛片水多多多| 国产精品三级大全| 波多野结衣av一区二区av| 日韩伦理黄色片| 日韩中文字幕欧美一区二区 | 久久久精品94久久精品| 国产精品一区二区精品视频观看| 丝袜喷水一区| 香蕉丝袜av| 又粗又硬又长又爽又黄的视频| 水蜜桃什么品种好| 高清视频免费观看一区二区| 免费在线观看黄色视频的| 国语对白做爰xxxⅹ性视频网站| 日本欧美视频一区| 亚洲精品日韩在线中文字幕| 一边摸一边抽搐一进一出视频| 中文字幕人妻丝袜一区二区| 国产精品一国产av| 看十八女毛片水多多多| 国产成人一区二区三区免费视频网站 | 后天国语完整版免费观看| 国产成人免费无遮挡视频| 一本综合久久免费| 91成人精品电影| 99国产综合亚洲精品| 亚洲综合色网址| 国产精品99久久99久久久不卡| 国产成人一区二区在线| 一区二区av电影网| 我要看黄色一级片免费的| 午夜福利视频精品| 国产成人免费无遮挡视频| 日本五十路高清| 亚洲av日韩在线播放| 中文字幕最新亚洲高清| 999精品在线视频| 日韩av不卡免费在线播放| 欧美人与性动交α欧美软件| 黄频高清免费视频| 丰满少妇做爰视频| 亚洲九九香蕉| av国产久精品久网站免费入址| 久久久久精品人妻al黑| 一级毛片女人18水好多 | 亚洲欧洲日产国产| 日韩电影二区| www.精华液| 国产免费又黄又爽又色| 大码成人一级视频| 亚洲国产看品久久| 色综合欧美亚洲国产小说| 无遮挡黄片免费观看| 极品人妻少妇av视频| 欧美成人精品欧美一级黄| 久久国产精品大桥未久av| 精品熟女少妇八av免费久了| 久久天躁狠狠躁夜夜2o2o | 自线自在国产av| 亚洲国产精品一区二区三区在线| 亚洲精品久久午夜乱码| 男女无遮挡免费网站观看| 免费人妻精品一区二区三区视频| 欧美日韩国产mv在线观看视频| 久久久国产欧美日韩av| 久久人妻熟女aⅴ| 国产亚洲欧美精品永久| 国产成人系列免费观看| 亚洲av男天堂| 国产精品麻豆人妻色哟哟久久| 亚洲国产av影院在线观看| 天天躁夜夜躁狠狠躁躁| 亚洲av成人精品一二三区| 三上悠亚av全集在线观看| 成年人黄色毛片网站| 国产亚洲一区二区精品| 成人手机av| 一边摸一边做爽爽视频免费| 欧美日韩成人在线一区二区| 婷婷色av中文字幕| 最黄视频免费看| 欧美亚洲日本最大视频资源| 精品熟女少妇八av免费久了| 国产片特级美女逼逼视频| 国产av精品麻豆| 美女福利国产在线| 精品国产一区二区三区久久久樱花| 亚洲av片天天在线观看| 久久人妻福利社区极品人妻图片 | cao死你这个sao货| 一二三四在线观看免费中文在| 久久久久久久久久久久大奶| 一边摸一边做爽爽视频免费| 欧美激情高清一区二区三区| 一级毛片电影观看| 午夜视频精品福利| 另类亚洲欧美激情| 久久性视频一级片| 久久久久久久精品精品| 亚洲国产毛片av蜜桃av| 亚洲五月婷婷丁香| 国产视频一区二区在线看| 母亲3免费完整高清在线观看| 老司机在亚洲福利影院| 这个男人来自地球电影免费观看| 亚洲欧美激情在线| 最新的欧美精品一区二区| 久热爱精品视频在线9| 免费看十八禁软件| 啦啦啦啦在线视频资源| 亚洲天堂av无毛| 美女视频免费永久观看网站| 视频区图区小说| 午夜精品国产一区二区电影| 99久久精品国产亚洲精品| 国产野战对白在线观看| 又粗又硬又长又爽又黄的视频| 男人添女人高潮全过程视频| www.熟女人妻精品国产| 欧美人与善性xxx| 看免费av毛片| 免费高清在线观看日韩| 久久精品亚洲熟妇少妇任你| 日韩人妻精品一区2区三区| 亚洲精品一卡2卡三卡4卡5卡 | 国产成人av教育| 三上悠亚av全集在线观看| av福利片在线| 男女午夜视频在线观看| av网站在线播放免费| 日韩欧美一区视频在线观看| 激情五月婷婷亚洲| 久久精品国产亚洲av涩爱| 亚洲,一卡二卡三卡| 视频区欧美日本亚洲| 国产成人免费无遮挡视频| 捣出白浆h1v1| 亚洲国产最新在线播放| 国产成人精品无人区| 亚洲精品一卡2卡三卡4卡5卡 | 日本wwww免费看| 国产亚洲av片在线观看秒播厂| 国产一区亚洲一区在线观看| 国产精品久久久人人做人人爽| 亚洲av电影在线观看一区二区三区| 国产精品二区激情视频| 久久 成人 亚洲| 黑丝袜美女国产一区| 美国免费a级毛片| 最近最新中文字幕大全免费视频 | 国产熟女午夜一区二区三区| 成年av动漫网址| 久久这里只有精品19| 丝袜喷水一区| 男女国产视频网站| 99国产精品免费福利视频| 91精品国产国语对白视频| 99国产综合亚洲精品| 在线 av 中文字幕| 亚洲精品久久久久久婷婷小说| 欧美亚洲日本最大视频资源| 99久久精品国产亚洲精品| 男人舔女人的私密视频| 午夜老司机福利片| av线在线观看网站| 欧美黄色淫秽网站| 国产xxxxx性猛交| av网站在线播放免费| 少妇被粗大的猛进出69影院| 国产一区二区 视频在线| 国产在线视频一区二区| 国产免费一区二区三区四区乱码| 男女之事视频高清在线观看 | 19禁男女啪啪无遮挡网站| 9色porny在线观看| 成人亚洲精品一区在线观看| 五月天丁香电影| 久久精品成人免费网站| 激情视频va一区二区三区| 操出白浆在线播放| 国产日韩欧美在线精品| 青春草亚洲视频在线观看| 亚洲精品美女久久av网站| av国产久精品久网站免费入址| 最近最新中文字幕大全免费视频 | 操出白浆在线播放| 99久久人妻综合| 女警被强在线播放| 日韩中文字幕视频在线看片| 国产无遮挡羞羞视频在线观看| 麻豆av在线久日| 天天躁日日躁夜夜躁夜夜| 国产亚洲欧美在线一区二区| 在线观看国产h片| 美女午夜性视频免费| 国产欧美日韩综合在线一区二区| 成人亚洲欧美一区二区av| 日本av手机在线免费观看| 人妻 亚洲 视频| 又粗又硬又长又爽又黄的视频| 国产免费又黄又爽又色| 久久综合国产亚洲精品| 国产精品av久久久久免费| 欧美精品亚洲一区二区| 亚洲人成电影免费在线| 搡老岳熟女国产| 伦理电影免费视频| 成人亚洲精品一区在线观看| 丝袜脚勾引网站| 男人操女人黄网站| 丝袜喷水一区| 两个人看的免费小视频| 精品国产一区二区三区久久久樱花| 777久久人妻少妇嫩草av网站| 亚洲熟女精品中文字幕| 国产一区有黄有色的免费视频| 久久ye,这里只有精品| 日韩,欧美,国产一区二区三区| netflix在线观看网站| 老鸭窝网址在线观看| 亚洲精品在线美女| 成人国语在线视频| 久久久欧美国产精品| 国产免费视频播放在线视频| 欧美精品一区二区大全| 中文字幕制服av| 亚洲精品乱久久久久久| 人人妻人人爽人人添夜夜欢视频| 9191精品国产免费久久| 免费看十八禁软件| 国产在线一区二区三区精| 国产精品三级大全| 亚洲中文av在线| 女性被躁到高潮视频| 亚洲色图 男人天堂 中文字幕| 十八禁高潮呻吟视频| 男女国产视频网站| 亚洲人成77777在线视频| 男人爽女人下面视频在线观看| 国产精品偷伦视频观看了| 亚洲图色成人| 国产高清videossex| 日韩熟女老妇一区二区性免费视频| 欧美国产精品va在线观看不卡| 国产色视频综合| 午夜福利视频在线观看免费| 亚洲情色 制服丝袜| 欧美日韩亚洲综合一区二区三区_| 秋霞在线观看毛片| av片东京热男人的天堂| 亚洲第一青青草原| 欧美日韩国产mv在线观看视频| 国产黄色免费在线视频| 亚洲少妇的诱惑av| 精品第一国产精品| 国产成人精品在线电影| 精品少妇一区二区三区视频日本电影| 极品人妻少妇av视频| 国产又色又爽无遮挡免| 咕卡用的链子| 久久精品亚洲av国产电影网| 天天躁狠狠躁夜夜躁狠狠躁| 校园人妻丝袜中文字幕| 国产成人精品久久二区二区91| 欧美成人精品欧美一级黄| av网站在线播放免费| 九草在线视频观看| 下体分泌物呈黄色| 日本色播在线视频| 精品一区二区三卡| 91精品国产国语对白视频| 一级片免费观看大全| 一区二区日韩欧美中文字幕| 国产成人a∨麻豆精品| 亚洲av欧美aⅴ国产| 成年av动漫网址| 久久久精品94久久精品| 色网站视频免费| 建设人人有责人人尽责人人享有的| 亚洲伊人久久精品综合| 免费看不卡的av| 午夜91福利影院| 又大又爽又粗| 91成人精品电影| 黄片播放在线免费| 大型av网站在线播放| 欧美 日韩 精品 国产| 国产男女内射视频| 国产成人精品在线电影| 亚洲中文字幕日韩| 精品久久蜜臀av无| 十八禁网站网址无遮挡| 欧美日韩av久久| 亚洲欧美成人综合另类久久久| 热99久久久久精品小说推荐| 国产在视频线精品| 亚洲av国产av综合av卡| 蜜桃国产av成人99| 精品一区二区三区四区五区乱码 | 亚洲人成网站在线观看播放| 伦理电影免费视频| 宅男免费午夜| 精品一区二区三区av网在线观看 | 欧美大码av| 久久鲁丝午夜福利片| 男男h啪啪无遮挡| 免费女性裸体啪啪无遮挡网站| 国产精品久久久久久精品电影小说| 亚洲av国产av综合av卡| 十八禁高潮呻吟视频| 久久久久久久久免费视频了| 在线看a的网站| 自线自在国产av| 成人18禁高潮啪啪吃奶动态图| 叶爱在线成人免费视频播放| 黄色 视频免费看| 欧美国产精品一级二级三级| 丝袜美腿诱惑在线| 飞空精品影院首页| 丰满人妻熟妇乱又伦精品不卡| 夫妻性生交免费视频一级片| 午夜两性在线视频| 国产男人的电影天堂91| 国产免费现黄频在线看| 激情视频va一区二区三区| 日韩av免费高清视频| 午夜福利免费观看在线| 亚洲精品在线美女| 国产成人啪精品午夜网站| 国产精品一区二区在线观看99| 一边摸一边做爽爽视频免费| 亚洲国产欧美在线一区| 五月开心婷婷网| 国产日韩欧美视频二区| 午夜激情久久久久久久| 久久国产精品大桥未久av| 999精品在线视频| 一级毛片电影观看| 免费女性裸体啪啪无遮挡网站| 999久久久国产精品视频| 亚洲精品国产色婷婷电影| 男女之事视频高清在线观看 | 欧美日韩视频精品一区| 国产日韩欧美在线精品| 午夜日韩欧美国产|