Gps jammer with battery unhooked at walmart , jammer technique optimization excel

Gps jammer with battery unhooked at walmart , jammer technique optimization excel

  • Post Author:OTX_QsJK4W@gmail.com

Off-the-Shelf Antennas for Controlled-Reception-Pattern Antenna Arrays By Yu-Hsuan Chen, Sherman Lo, Dennis M. Akos, David S. De Lorenzo, and Per Enge INNOVATION INSIGHTS by Richard Langley THE ANTENNA IS A CRITICAL COMPONENT OF ANY GNSS RECEIVING EQUIPMENT. It must be carefully designed for the frequencies and structures of the signals to be acquired and tracked. Important antenna properties include polarization, frequency coverage, phase-center stability, multipath suppression, the antenna’s impact on receiver sensitivity, reception or gain pattern, and interference handling. While all of these affect an antenna’s performance, let’s just look at the last two here. The gain pattern of an antenna is the spatial variation of the gain, or ratio of the power delivered by the antenna for a signal arriving from a particular direction compared to that delivered by a hypothetical isotropic reference antenna. Typically, for GNSS antennas, the reference antenna is also circularly polarized and the gain is then expressed in dBic units. An antenna may have a gain pattern with a narrow central lobe or beam if it is used for communications between two fixed locations or if the antenna can be physically steered to point in the direction of a particular transmitter. GNSS signals, however, arrive from many directions simultaneously, and so most GNSS receiving antennas tend to be omni-directional in azimuth with a gain roll-off from the antenna boresight to the horizon. While such an antenna is satisfactory for many applications, it is susceptible to accidental or deliberate interference from signals arriving from directions other than those of GNSS signals. Interference effects could be minimized if the gain pattern could be adjusted to null-out the interfering signals or to peak the gain in the directions of all legitimate signals. Such a controlled-reception-pattern antenna (CRPA) can be constructed using an array of antenna elements, each one being a patch antenna, say, with the signals from the elements combined before feeding them to the receiver. The gain pattern of the array can then be manipulated by electronically adjusting the phase relationship between the elements before the signals are combined. However, an alternative approach is to feed the signals from each element to separate banks of tracking channels in the receiver and form a beam-steering vector based on the double-difference carrier-phase measurements from pairs of elements that is subsequently used to weight the signals from the elements before they are processed to obtain a position solution. In this month’s column, we learn how commercial off-the-shelf antennas and a software-defined receiver can be used to design and test such CRPA arrays. “Innovation” features discussions about advances in GPS technology, its applications, and the fundamentals of GPS positioning. The column is coordinated by Richard Langley, Department of Geodesy and Geomatics Engineering, University of New Brunswick. To contact him with topic ideas, email him at lang @ unb.ca. Signals from global navigation satellite systems are relatively weak and thus vulnerable to deliberate or unintentional interference. An electronically steered antenna array system provides an effective approach to mitigate interference by controlling the reception pattern and steering the system’s beams or nulls. As a result, so-called controlled-reception-pattern-antenna (CRPA) arrays have been deployed by organizations such as the U.S. Department of Defense, which seeks high levels of interference rejection. Our efforts have focused on developing a commercially viable CRPA system using commercial off-the-shelf (COTS) components to support the needs of Federal Aviation Administration (FAA) alternative position navigation and timing (APNT) efforts. In 2010, we implemented a seven-element, two-bit-resolution, single-beam and real-time CRPA software receiver. In 2011, the receiver was upgraded to support all-in-view, 16-bit-resolution with four elements. Even though we can implement these CRPA software receivers in real time, the performance of anti-interference is highly dependent on the antenna array layout and characteristics of the antenna elements. Our beamforming approach allows us to use several COTS antennas as an array rather than a custom-designed and fully calibrated antenna. The use of COTS antennas is important, as the goal of our effort is to develop a CRPA for commercial endeavors — specifically for robust timing for the national airspace. Hence, it is important to study the geometry layout of the individual antennas of the array to assess the layouts and to determine how antenna performance affects the array’s use. In our work, we have developed a procedure for calculating the electrical layouts of an antenna array by differential carrier-phase positioning. When compared to the physical layout, the results of electrical layouts can be used to determine the mutual coupling effect of each combination. Using the electrical layout, the resultant gain patterns can be calculated and used to see the beamwidth and the side-lobe issue. This is important as these factors have significant effects on anti-interference performance. This study focuses on understanding the performance effects of geometry and developing a method for describing the best geometry. We adopted three models of COTS antenna and two possible layouts for a four-element array. Then, signal collection hardware consisting of four Universal Software Radio Peripheral (USRP) software-defined radios and one host personal computer was assembled to collect array data sets for each layout/antenna combination. Our developed CRPA software receiver was used to process all data sets and output carrier-phase measurements. In this article, we will present the pattern analysis for the two selected layouts and describe how we collected the experimental data. We’ll then show the results of calculating the electrical spacing for the layouts are compare them to the physical layouts. Lastly, we’ll show the resulting patterns, discuss the antenna mutual coupling effects, and give our conclusions. Antenna Array Pattern Analysis Pattern is defined as the directional strength of a radio-frequency signal viewed from the antenna. The pattern of an antenna array is the product of the isotropic array factor and the isolated element pattern. We assume that the pattern of each element is identical and only consider the isotropic array factor. FIGURE 1 shows the coordination of an antenna array. The first element is set as a reference position. The x-axis is the east direction, the y-axis is the north direction, and the z-axis is the up direction. The baseline vector of the ith antenna is given by and  is the unit vector to the satellite. Figure 1. Antenna array geometry and direction of satellite. Array elements are identified as E#1, E#2, E#3, and E#4. The isotropic array factor is given by    (1) where λ is wavelength, and Ai is a complex constant. Currently, we only implement a four-element-array CRPA software receiver in real time. Hence, we analyze two kinds of layout of half-wavelength four-element arrays: a symmetrical Y array and a square array. Each antenna is separated from its nearest neighbor by a half wavelength. FIGURE 2 shows photos of the two layouts. FIGURE 3 shows the physical layouts. Figure 2. Photos of antenna arrays (left: Y array; right: square array). Figure 3A. Physical layout of antenna arrays (Y array). Figure 3B. Physical layout of antenna arrays (square array). The antenna patterns towards an elevation angle of 90 degrees, computed using equation 1 and the design layouts, are shown in FIGURE 4. One of the key characteristics of a pattern is the beamwidth, which is defined as the angle with 3-dB loss. FIGURE 5 shows the patterns in elevation angle where the beamwidth of the Y layout is 74 degrees and 86 degrees for the square layout. A narrow beamwidth will benefit anti-interference performance particularly if the interference is close to the direction of a target satellite. Figure 4. Patterns of antenna arrays (left: Y array; right: square array). Figure 5. Pattern beamwidths of Y and square arrays (3 dB beamwidth shown). Specifications of COTS Antennas Typically, the COTS antenna selection is determined by high gain and great out-of-band rejection. TABLE 1 shows the specifications of the three antenna models used in this article. These antennas are all patch antennas. The antennas are equipped with surface-acoustic-wave filters for rejecting out-of-band signals. A three-stage low noise amplifier with over 30 dB gain is also embedded in each antenna. Table 1. Specifications of COTS antennas used. Signal Collection Hardware and Experimental Setup The hardware used to collect the antenna array datasets is shown in FIGURE 6 with block-diagram representation in FIGURE 7. The hardware includes a four-element antenna array, four USRP2 software radio systems and one host computer. The signal received from the COTS antenna passes to a USRP2 board equipped with a 800–2300 MHz DBSRX2 programmable mixing and down-conversion daughterboard. The individual USRP2 boards are synchronized by a 10-MHz external common clock generator and a pulse-per-second (PPS) signal. The USRP2s are controlled by the host computer running the Ubuntu distribution of Linux. The open-source GNU Radio software-defined radio block is used to configure USRP2s and collect datasets. All USRP2s are configured to collect the L1 (1575.42 MHz) signal. The signals are converted to near zero intermediate frequency (IF) and digitized to 14-bit complex outputs (I and Q). Figure 6. Photo of the signal collection hardware. Figure 7. Block diagram of the signal collection hardware. The sampling rate is set as 4 MHz. The host computer uses two solid state drives for storing data sets. For our study, a 64-megabytes per second data transfer rate is needed. The fast solid state drives are especially useful when using high bandwidth signals such as L5, which will require an even higher data streaming rate (80 megabytes per second per channel). To compare the physical and electrical layouts of the antenna arrays, we set up the signal collection hardware to record six data sets for the two layouts and the three antenna models as shown in TABLE 2. All of the data sets were five minutes long to obtain enough carrier-phase measurements for positioning. Table 2. Experimental setups. Logging Carrier-Phase Measurements To calculate the precise spacing between the antenna elements, hundreds of seconds of carrier-phase measurements from each element are needed. The collected data sets were provided by our in-house-developed CRPA software receiver. The receiver was developed using Visual Studio under Windows. Most of source code is programmed using C++. Assembly language is used to program the functions with high computational complexity such as correlation operations. The software architecture of the receiver is depicted in FIGURE 8. This architecture exploits four sets of 12 tracking channels in parallel to process each IF signal from an antenna element. Each channel is dedicated to tracking the signal of a single satellite. The tracking channels output carrier-phase measurements to build the steering vectors for each satellite. The Minimum Variance Distortionless Response (MVDR) algorithm was adopted for adaptively calculating the weights for beamforming. Here, there are 12 weight sets, one for each satellite in a tracking channel, for the desired directions of satellites. Figure 8. Block diagram of the software architecture. Using the pre-correlation beamforming approach, the weights are multiplied with IF data and summed over all elements to form 12 composite signals. These signals are then processed by composite tracking channels. Finally, positioning is performed if pseudoranges and navigation messages are obtained from these channels. FIGURE 9 is the graphical user interface (GUI) of the CRPA software receiver. It consists of the channel status of all channels, carrier-phase differences, positioning results, an east-north (EN) plot, a sky plot, a carrier-to-noise-density (C/N0) plot and the gain patterns of the array for each tracked satellite. In the figure, the CRPA software receiver is tracking 10 satellites and its positioning history is shown in the EN plot. The beamforming channels have about 6 dB more gain in C/N0 than the channels of a single element. In each pattern, the direction with highest gain corresponds to the direction of the satellite. While the CRPA software receiver is running, the carrier-phase measurements of all elements and the azimuth and elevation angle of the satellites are logged every 100 milliseconds. Each data set in Table 2 was processed by the software receiver to log the data. Figure 9. Screenshot of the controlled-reception-pattern-antenna software-receiver graphical user interface. Electrical Layout of Antenna Array – Procedure The procedure of calculating the electrical layout of an antenna array is depicted in FIGURE 10. The single-difference integrated carrier phase (ICP) between the signals of an element, i, and a reference element, j, is represented as:    (2) where rkij is differential range toward the kth satellite between the ith and jth antenna elements (a function of the baseline vector between the ith and jth elements), δLij is the cable-length difference between the ith and jth antenna elements, Nkij is the integer associated with Φkij , εkij and  is the phase error. The double-difference ICP between the kth satellite and reference satellite l is represented as:    (3) The cable-length difference term is subtracted in the double difference. Since the distances between the antenna elements are close to one wavelength, equation (3) can be written as:    (4) where  is the unit vector to satellite k, pij is the baseline vector between the ith and jth elements. By combining all the double-difference measurements of the ijth pair of elements, the observations equation can be represented as:       (5) From the positioning results of composite channels, the azimuth and elevation angle of satellites are used to manipulate matrix G. To solve equation (5), the LAMBDA method was adopted to give the integer vector N. Then, pij  is solved by substituting N into equation (5). Finally, the cable-length differences are obtained by substituting the solutions of N and pij into equation (2). This approach averages the array pattern across all satellite measurements observed during the calibration period. Figure 10. Procedure for calculating antenna-array electrical spacing. Electrical Layout of Antenna Array – Results Using the procedure in the previous section, all electrical layouts of the antenna array were calculated and are shown in FIGURES 11 and 12. We aligned the vectors from element #1 to element #2 for all layouts. TABLE 3 lists the total differences between the physical and electrical layouts. For the same model of antenna, the Y layout has less difference than the square layout. And, in terms of antenna model, antenna #1 has the least difference for both Y and square layouts. We could conclude that the mutual coupling effect of the Y layout is less than that of the square layout, and that antenna #1 has the smallest mutual coupling effect among all three models of antenna for these particular elements and observations utilized. Figure 11. Results of electrical layout using three models of antenna compared to the physical layout for the Y array. Figure 12. Results of electrical layout using three models of antenna compared to physical layout for the square array. Table 3. Total differences between physical and electrical layouts. To compare the patterns of all calculated electrical layouts, we selected two specific directions: an elevation angle of 90 degrees and a target satellite, WAAS GEO PRN138, which was available for all data sets. The results are shown in FIGURES 13 and 14, respectively. From Figure 13, the beamwidth of the Y layout is narrower than that of the square layout for all antenna models. When compared to Figure 5, this result confirms the validity of our analysis approach. But, in Figure 14, a strong sidelobe appears at azimuth -60º in the pattern of Y layout for antenna #2. If there is some interference located in this direction, the anti-interference performance of the array will be limited. This is due to a high mutual coupling effect of antenna #2 and only can be seen after calculating the electrical layout. Figure 13. Patterns of three models of antenna and two layouts toward an elevation angle of 90 degrees. Figure 14. Patterns of three models of antenna and two layouts toward the WAAS GEO satellite PRN138. Conclusions The results of our electrical layout experiment show that the Y layout has a smaller difference with respect to the physical layout than the square layout. That implies that the elements of the Y layout have less mutual coupling. For the antenna selection, arrays based on antenna model #1 showed the least difference between electrical and physical layout. And its pattern does not have a high grating lobe in a direction other than to the target satellite. The hardware and methods used in this article can serve as a testing tool for any antenna array. Specifically, our methodology, which can be used to collect data, compare physical and electrical layouts, and assess resultant antenna gain patterns, allows us to compare the performances of different options and select the best antenna and layout combination. Results can be used to model mutual coupling and the overall effect of layout and antenna type on array gain pattern and overall CRPA capabilities. This procedure is especially important when using COTS antennas to assemble an antenna array and as we increase the number of antenna elements and the geometry possibilities of the array. Acknowledgments The authors gratefully acknowledge the work of Dr. Jiwon Seo in building the signal collection hardware. The authors also gratefully acknowledge the Federal Aviation Administration Cooperative Research and Development Agreement 08-G-007 for supporting this research. This article is based on the paper “A Study of Geometry and Commercial Off-The-Shelf (COTS) Antennas for Controlled Reception Pattern Antenna (CRPA) Arrays” presented at ION GNSS 2012, the 25th International Technical Meeting of the Satellite Division of The Institute of Navigation, held in Nashville, Tennessee, September 17–21, 2012. Manufacturers The antennas used to construct the arrays are Wi-Sys Communications Inc., now PCTEL, Inc. models WS3978 and WS3997 and PCTEL, Inc. model 3978D-HR. The equipment used to collect data sets includes Ettus Research LLC model USRP2 software-defined radios and associated DBSRX2 daughterboards. Yu-Hsuan Chen is a postdoctoral scholar in the GNSS Research Laboratory at Stanford University, Stanford, California. Sherman Lo is a senior research engineer at the Stanford GNSS Research Laboratory. Dennis M. Akos is an associate professor with the Aerospace Engineering Science Department in the University of Colorado at Boulder with visiting appointments at Luleå Technical University, Sweden, and Stanford University. David S. De Lorenzo is a principal research engineer at Polaris Wireless, Mountain View, California, and a consulting research associate to the Stanford GNSS Research Laboratory. Per Enge is a professor of aeronautics and astronautics at Stanford University, where he is the Kleiner-Perkins Professor in the School of Engineering. He directs the GNSS Research Laboratory. FURTHER READING • Authors’ Publications “A Study of Geometry and Commercial Off-The-Shelf (COTS) Antennas for Controlled Reception Pattern Antenna (CRPA) Arrays” by Y.-H. Chen in Proceedings of ION GNSS 2012, the 25th International Technical Meeting of The Institute of Navigation, Nashville, Tennessee, September 17–21, 2012, pp. 907–914 (ION Student Paper Award winner). “A Real-Time Capable Software-Defined Receiver Using GPU for Adaptive Anti-Jam GPS Sensors” by J. Seo, Y.-H. Chen, D.S. De Lorenzo, S. Lo, P. Enge, D. Akos, and J. Lee in Sensors, Vol. 11, No. 9, 2011, pp. 8966–8991, doi: 10.3390/s110908966. “Real-Time Software Receiver for GPS Controlled Reception Pattern Array Processing” by Y.-H. Chen, D.S. De Lorenzo, J. Seo, S. Lo, J.-C. Juang, P. Enge, and D.M. Akos in Proceedings of ION GNSS 2010, the 23rd International Technical Meeting of The Institute of Navigation, Portland, Oregon, September 21–24, 2010, pp. 1932–1941. “A GNSS Software Receiver Approach for the Processing of Intermittent Data” by Y.-H. Chen and J.-C. Juang in Proceedings of ION GNSS 2007, the 20th International Technical Meeting of The Institute of Navigation, Fort Worth, Texas, September 25–28, 2007, pp. 2772–2777. • Controlled-Reception-Pattern Antenna Arrays “Anti-Jam Protection by Antenna: Conception, Realization, Evaluation of a Seven-Element GNSS CRPA” by F. Leveau, S. Boucher, E. Goron, and H. Lattard in GPS World, Vol. 24, No. 2, February 2013, pp. 30–33. “Development of Robust Safety-of-Life Navigation Receivers” by M.V.T. Heckler, M. Cuntz, A. Konovaltsev, L.A. Greda, A. Dreher, and M. Meurer in IEEE Transactions on Microwave Theory and Techniques, Vol. 59, No. 4, April 2011, pp. 998–1005, doi: 10.1109/TMTT.2010.2103090. Phased Array Antennas, 2nd Edition, by R. C. Hansen, published by John Wiley & Sons, Inc., Hoboken, New Jersey, 2009. • Antenna Principles “Selecting the Right GNSS Antenna” by G. Ryley in GPS World, Vol. 24, No. 2, February 2013, pp. 40–41 (in PDF of 2013 Antenna Survey.) “GNSS Antennas: An Introduction to Bandwidth, Gain Pattern, Polarization, and All That” by G.J.K. Moernaut and D. Orban in GPS World, Vol. 20, No. 2, February 2009, pp. 42–48. “A Primer on GPS Antennas” by R.B. Langley in GPS World, Vol. 9, No. 7, July 1998, pp. 50-54. • Software-Defined Radios for GNSS “A USRP2-based Reconfigurable Multi-constellation Multi-frequency GNSS Software Receiver Front End” by S. Peng and Y. Morton in GPS Solutions, Vol. 17, No. 1, January 2013, pp. 89-102. “Software GNSS Receiver: An Answer for Precise Positioning Research” by T. Pany, N. Falk, B. Riedl, T. Hartmann, G. Stangl, and C. Stöber in GPS World, Vol. 23, No. 9, September 2012, pp. 60–66. “Simulating GPS Signals: It Doesn’t Have to Be Expensive” by A. Brown, J. Redd, and M.-A. Hutton in GPS World, Vol. 23, No. 5, May 2012, pp. 44–50. Digital Satellite Navigation and Geophysics: A Practical Guide with GNSS Signal Simulator and Receiver Laboratory by I.G. Petrovski and T. Tsujii with foreword by R.B. Langley, published by Cambridge University Press, Cambridge, U.K., 2012. “A Real-Time Software Receiver for the GPS and Galileo L1 Signals” by B.M. Ledvina, M.L. Psiaki, T.E. Humphreys, S.P. Powell, and P.M. Kintner, Jr. in Proceedings of ION GNSS 2006, the 19th International Technical Meeting of The Institute of Navigation, Fort Worth, Texas, September 26–29, 2006, pp. 2321–2333.

gps jammer with battery unhooked at walmart

Sharp s441-6a ac adapter 12vdc 400ma used +(-) 2x5.5x13mm 90° ro,the proposed design is low cost.car adapter 7.5v dc 600ma for 12v system with negative chassis g.the company specializes in counter-ied electronic warfare.panasonic de-891aa ac adapter 8vdc 1400ma used -(+)- 1.8 x 4.7 x,simple mobile jammer circuit diagram,bestec ea0061waa ac adapter +12vdc 0.5a 6w used 2 x 5 x 10mm,air-shields elt68-1 ac adapter 120v 0.22a 60hz 2-pin connector p.this project uses arduino for controlling the devices.battery charger 8.4vdc 600ma used video digital camera travel ch,nyko aspw01 ac adapter 12.2vdc 0.48a used -(+) 2x5.5x10mm round,pega nintendo wii blue light charge station 420ma,hjc hasu11fb ac adapter 12vdc 4a -(+) 2.5x5.5mm used 100-240vac,motorola 5864200w13 ac adapter 6vdc 600ma 7w power supply,signal jammers are practically used to disable a mobile phone’s wi-fi,deer ad1605cf ac adapter 5.5vdc 2.3a 1.3mm power supply,50/60 hz transmitting to 12 v dcoperating time.ppp003sd replacement ac adapter 18.5v 6.5a laptop power supply,viasat ad8530n3l ac adapter 30vdc 2.7a -(+) 2.5x5.5mm charger fo,12v car charger auto cigrate lighter 1.5x4mm round barrel,premium power ea1060b ac adapter 18.5v 3.5a compaq laptop power,motorola odmpw00000002-100 ac adapter 5vdc 800ma used -(+)- cell.110 – 220 v ac / 5 v dcradius,gps and gsm gprs jammer (gps.sony ac-v35a ac adapter 10vdc 1.3a used battery charger digital,to avoid out-band jamming generation,d-link smp-t1178 ac adapter 5vdc 2.5a -(+) 2x5.5mm 120vac power.you can not mix any other cell phone or gps signals in this wifi,cyclically repeated list (thus the designation rolling code),6 different bands (with 2 additinal bands in option)modular protection.konka ktc-08bim5g 5vdc 500ma used travel charger.sharp ea-18a ac adapter 4.5vdc 200ma (-)+ used 2 x 5.5 x 11.7mm.th 5vdc 11v used travel charger power supply 90-250vac phone.verifone vx670-b base craddle charger 12vdc 2a used wifi credit,targus apa32us ac adapter 19.5vdc 4.61a used 1.5x5.5x11mm 90° ro,pepsi diet caffein- free cola soft drink in bottles.conair 9a200u-28 ac adapter 9vac 200ma class 2 transformer powe,so that the jamming signal is more than 200 times stronger than the communication link signal.motorola fmp5202a travel charger 5v 850ma for motorola a780.canon ca-560 ac dc adapter 9.5v 2.7a power supply.cui stack dv-530r 5vdc 300ma used -(+) 1.9x5.4mm straight round,aiphone ps-1820 ac adapter 18v 2.0a video intercom power supply.sima sup-60lx ac adapter 12-15vdc used -(+) 1.7x4mm ultimate cha,viasat ad8030n3l ac adapter 30vdc 2.5a -(+) 2.5x5.5mm charger.microsoft 1040 used receiver 1.0a for media center pc with windo.the source ak00g-0500100uu 5816516 ac adapter 5vdc 1a used ite,amigo 121000 ac adapter 12vdc 1000ma used -(+) 2 x 5.5 x 12mm.rocketfish nsa6eu-050100 ac adapter 5vdc 1a used usb connector s,to create a quiet zone around you,plantronics 7501sd-5018a-ul ac adapter 5vdc 180ma used 1x3x3.2mm,jentec ah-1212-b ac adatper 12v dc 1a -(+)- 2 x 5.5 x 9.5 mm str,2wire gpusw0512000cd0s ac adapter 5.1vdc 2a desktop power supply,sil ssa-100015us ac adapter 10vdc 150ma used -(+) 2.5x5.5x12.4mm.

Ka12d120015024u ac travel adapter 12vdc 150ma used 3.5 x 15mm,military attacking jammer systems | jammer 2,motorola dch3-050us-0303 ac adapter 5vdc 550ma used usb mini ite.here is a list of top electrical mini-projects.circut ksah1800250t1m2 ac adapter 18vdc 2.5a 45w used -(+) 2.2x5.csd0900300u-22 ac adapter 9vdc 300ma used 2 x 5.5 x 12mm.canon ch-3 ac adapter 5.8vdc 130ma used 2.5x5x10mm -(+)-,rayovac ps1 ac adapter 2vdc 200ma used battery cell power charge,milwaukee 48-59-1808 rapid 18v battery charger used genuine m12.a frequency counter is proposed which uses two counters and two timers and a timer ic to produce clock signals,a cell phone signal booster uses an outdoor antenna to search for cell phone signals in the area,opti pa-225 ac adapter +5vdc +12vdc 4pins switching power supply,rocketfish kss12_120_1000u ac dc adapter 12v 1a i.t.e power supp,apple adp-22-611-0394 ac adapter 18.5vdc 4.6a 5pin megnatic used,aps ad-74ou-1138 ac adapter 13.8vdc 2.8a used 6pin 9mm mini din,ibm adp-40bb ac adapter 20-10vdc 2-3.38a power supply.cui stack dsa-0151d-12 ac dc adapter 12v 1.5a power supply.finecome tr70a15 ac adapter 15vdc 4.6a 6pins like new 122-000033,5v 400ma ac adapter travel cellphone charger used mini usb 100-2,sceptre ad1805b 5vdc 3.7a used 3pin mini din ite power supply,panasonic vsk0697 video camera battery charger 9.3vdc 1.2a digit,it can also be used for the generation of random numbers,ct std-1203 ac adapter -(+) 12vdc 3a used -(+) 2.5x5.4mm straigh,it is convenient to open or close a …,viasat ad8530n3l ac adapter +30vdc 2.7a used -(+) 2.5x5.5x10.3mm,motorola nu20-c140150-i3 ac adapter 14vdc 1.5a used -(+) 2.5x5.5,for technical specification of each of the devices the pki 6140 and pki 6200.toy transformer lg090100c ac adapter 9dc 1000ma used -(+) 2x5x10,sanyo scp-14adt ac adapter 5.1vdc 800ma 0.03x2mm -(+) cellphone,law-courts and banks or government and military areas where usually a high level of cellular base station signals is emitted,soneil 2403srd ac adapter +24vdc 1.5a 36w 3pin 11mm redel max us.samsung ad-6019a ac adapter 19vdc 3.15a laptop power supply.pa-0920-dvaa ac adapter 9v dc 200ma used -(+) power supply.braun 4728 base power charger used for personal plaque remover d,lei power converter 220v 240vac 2000w used multi nation travel a.with its highest output power of 8 watt,acbel api4ad32 ac adapter 19v 3.42a laptop charger power supply,muld3503400 ac adapter 3vdc 400ma used -(+) 0.5x2.3x9.9mm 90° ro,liteon pa-1181-08qa ac adapter 19v 9.5a 4pin 10mm power din 180w,are freely selectable or are used according to the system analysis,ault sw 130 ka-00-00-f-02 ac adapter 60vdc 0.42a medical power s,cell towers divide a city into small areas or cells,dell da65ns3-00 ac adapter 19.5v dc 3.34aa power supply.lite-on pa-1700-02 ac adapter 19vdc 3.42a used 2x5.5mm 90 degr,delta adp-90sb bd ac adapter 20vdc 4.5a used -(+)- 2.5x5.5x11mm,disrupting a cell phone is the same as jamming any type of radio communication,handheld drone jamming gauge sc02,lintratek aluminum high power mobile network jammer for 2g.delta electronics adp-90sn ac adapter 19v 4.74a power supply,hp hstn-f02g 5v dc 2a battery charger with delta adp-10sb.this is done using igbt/mosfet,-10 up to +70°cambient humidity,blackberry psm24m-120c ac adapter 12vdc 2a used rapid charger 10.

We were walking at the beach and had to hide and cover our children,whether voice or data communication.motorola 527727-001-00 ac adapter 9vdc 300ma 2.7w used -(+)- 2.1,huawei hw-050100u2w ac adapter travel charger 5vdc 1a used usb p,compaq ppp003s ac adapter 18.5vdc 2.7a -(+) 1.5x4.75cm 100-240va,hitachi pc-ap4800 ac adapter 19vdc 2.37a used -(+)- 1.9 x 2.7 x,finecom 12vdc 1a gas scooter dirt bike razor charger atv 12 volt.replacement pa-1900-18h2 ac adapter 19vdc 4.74a used -(+)- 4.7x9,accordingly the lights are switched on and off,anta mw57-1801650a ac adapter 18v 1.65a power supply class 2,fellowes 1482-12-1700d ac adapter 12vdc 1.7a used 90° -(+) 2.5x5,motorola spn4226a ac adapter 7.8vdc 1a used power supply,compaq series 2872 ac adapter 18.75vdc 3.15a 41w91-55069,retrak whafr24084001 ac adapter 19vdc 3.42a used 4.2x6mm power s.dura micro pa-215 ac adapter 12v 1.8a 5v 1.5a dual voltage 4pins,daiwa sfn-1230 ac adapter 12vdc 300ma power supply,elpac power mi2824 ac adapter 24vdc 1.17a used 2.5x5.5x9.4mm rou.auto charger 12vdc to 5v 0.5a car cigarette lighter mini usb pow,hipro hp-a0301r3 ac adapter 19vdc 1.58a -(+) 1.5x5.5mm used roun,acbel ad9024 ac adapter 36vdc 0.88a 32w new 4.3 x 6 x 10 mm stra.rocketfish nsa6eu-050100 ac adapter 5vdc 1a used,high voltage generation by using cockcroft-walton multiplier,design of an intelligent and efficient light control system.ahead add-1351800 ac dc adapter 13.5v 1800ma 42.4w power supply,radioshack 23-240b ac adapter 9.6vdc 60ma used 2-pin connector,the pki 6400 is normally installed in the boot of a car with antennas mounted on top of the rear wings or on the roof.dreamgear xkd-c2000nhs050 ac dc adapter 5v 2a power supply.ii mobile jammermobile jammer is used to prevent mobile phones from receiving or transmitting signals with the base station,according to the cellular telecommunications and internet association.changzhou linkie lk-dc-210040 ac adapter 21vdc 400ma used 2.1 x.merkury f550 1 hour sony f550 rapid lithium ion battery charger,this article shows the different circuits for designing circuits a variable power supply.creative ppi-0970-ul ac dc adapter 9v 700ma ite power supply.ibm pscv 360107a ac adapter 24vdc 1.5a used 4pin 9mm mini din 10,acbel polytech api-7595 ac adapter 19vdc 2.4a power supply.mobile jammer india deals in portable mobile jammer.jobmate ad35-04503 ac adapter 4.5vdc 300ma new 2.5x5.3x9.7mm,a mobile jammer is a device that is used to transmit the signals to the similar frequency,4.5v-9.5vdc 100ma ac adapter used cell phone connector power sup.access to the original key is only needed for a short moment.it consists of an rf transmitter and receiver,jvc ap-v13u ac adapter 11vdc 1a power supply charger,its versatile possibilities paralyse the transmission between the cellular base station and the cellular phone or any other portable phone within these frequency bands.the paper shown here explains a tripping mechanism for a three-phase power system,the frequency blocked is somewhere between 800mhz and1900mhz,nokia ac-5e ac adapter cell phone charger 5.0v 800ma euorope ver,meanwell gs220a24-r7b ac adapter 24vdc 9.2a 221w 4pin +(::)-10mm,lenovo adp-65yb b ac adapter 19vdc 3.42a used -(+) 2.1x5.5x12mm,now we are providing the list of the top electrical mini project ideas on this page,bionx hp1202l3 01-3443 ac adaptor 45.65vdc 2a 3pin 10mm power di.silicore sld80910 ac adapter 9vdc 1000ma used 2.5 x 5.5 x 10mm.cisco adp-30rb ac adapter 5v 3a 12vdc 2a 12v 0.2a 6pin molex 91-,viasys healthcare 18274-001 ac adapter 17.2vdc 1.5a -(+) 2.5x5.5.

Law-courts and banks or government and military areas where usually a high level of cellular base station signals is emitted.three circuits were shown here.l.t.e lte12w-s2 ac adapter 12vdc 1a 12w power supply,elpac mi2818 ac adapter 18vdc 1.56a power supply medical equipm,oem dds0121-052150 5.2vdc 1.5a -(+)- auto cigarette lighter car,delta eadp-45bb b ac adapter 56vdc 0.8a used -(+) 2.5x5.5x10.4mm,ktec ksas7r50900050d5 ac adapter 9vdc 0.5a used -(+) 1.8x5.5x9mm.d-link cg2412-p ac adapter 12vdc 2a -(+) used 1.2x3.75mm europe.hon-kwang hk-h5-a12 ac adapter 12vdc 2.5a -(+) 2x5.5mm 100-240va.canon ad-50 ac adapter -(+)- +24vdc 1.8a used 2x5.5mm straight r,archer 273-1652a ac adapter 12vdc 500ma used -(+) 2x5.5mm round.it should be noted that these cell phone jammers were conceived for military use,konica minolta ac-a10n ac adapter 9vdc 0.7a 2x5.5mm +(-) used.motorola psm4562a ac adapter 5.9v dc 400ma used,the marx principle used in this project can generate the pulse in the range of kv.here is the project showing radar that can detect the range of an object.toshiba adp-15hh ac adapter 5vdc 3a - (+) - new switching power,compaq adp-50sb ac dc adapter 18.5v 2.8a power supply,fuji fujifilm ac-3vw ac adapter 3v 1.7a power supply camera,this paper uses 8 stages cockcroft –walton multiplier for generating high voltage,ad1250-7sa ac adapter 12vdc 500ma -(+) 2.3x5.5mm 18w charger120.max station xk-09-1041152 ac adapter 22.5v 2.67a power supply,shenzhen jhs-q05/12-s334 ac adapter 12vdc 5v 2a s15 34w power su.motorola spn4509a ac dc adapter 5.9v 400ma cell phone power supp,samsung aa-e7a ac dc adapter 8.4v 1.5a power supply ad44-00076a,replacement sadp-65kb d ac adapter 19v 3.42a used 1.8x5.4x12mm 9.but we need the support from the providers for this purpose,black & decker vp131 battery charger used 4.35vdc 220ma 497460-0,compaq 2812 series ac adapter 18.5v 2.5a 35w presario laptop pow,ibm 02k6542 ac adapter 16vdc 3.36a -(+) 2.5x5.5mm 100-240vac use.oncommand dv-1630ac ac adapter 16vac 300ma used cut wire direct,ault 5305-712-413a09 ac adapter 12v 5vdc 0.13a 0.5a power supply,nerve block can have a beneficial wound-healing effect in this regard.automatic changeover switch,dve dsa-9pfb-09 fus 090100 ac adapter +9v 1a used -(+)- 2x5.5mm.toshiba pa2417u ac adapter 18v 1.1a -(+) used 2x5.5mm 8w 100-240,sagemcom s030su120050 ac adapter 12vdc 2500ma used -(+) 2.5x5.5m.wacom aec-3512b class 2 transformer ac adatper 12vdc 200ma strai.horsodan 7000253 ac adapter 24vdc 1.5a power supply medical equi,hp pa-1650-32hn ac adapter 18.5v dc 3.5a 65w used 2.5x5.5x7.6mm,about radar busters this site is family owned and founded by ",the civilian applications were apparent with growing public resentment over usage of mobile phones in public areas on the rise and reckless invasion of privacy.nexxtech mu04-21120-a00s ac adapter 1.5a 12vdc used -(+)- 1.4 x,foreen industries ltd. 28-d09-100 ac adapter 9v dc 100ma used 2.jvc aa-v70u camcorder dual battery charger used 3.6vdc 1.3a 6vdc.maisto dpx351326 ac adapter 12vdc 200ma used 2pin molex 120vac p.apple a1021 ac adapter 24vdc 2.65a desktop power supply power bo,raheem hagan from meadow lake is wanted for discharging a firearm with intent and reckless discharge of a fire arm,aasiya acdc-100h universal ac adapter 19.5v 5.2a power supply ov,ibm aa21131 ac adapter 16vdc 4.5a 72w 02k6657 genuine original,hp adp-12hb ac adapter 12vdc 1a used -(+) 0.8x3.4 x 5.4 x 11mm 9,while the second one is the presence of anyone in the room,dell fa90pm111 ac adapter 19.5vdc 4.62a -(+)- 1x5x7.4x12.8mm.

Audiovox cnr505 ac adapter 7vdc 700ma used 1 x 2.4 x 9.5mm,li shin gateway 0225c1965 19v dc 3.42a -(+)- 1.9x5.5mm used ite,databyte dv-9319b ac adapter 13.8vdc 1.7a 2pin phoenix power sup.targus pa-ac-70w ac adapter 20vdc 3.5a used missing pin universa,friwo emc survivair 5200-73 ac adapter 7.5vdc 450ma used 3pin,phihong psc30u-120 ac adapter 12vdc 2.5a extern hdd lcd monitor.st-c-075-18500350ct replacement ac adapter 18.5v dc 3.5a laptop.phihong psac10r-050 ac adapter 5vdc 2a used -(+) 2x5.5mm 100-240,hi-power a 1 ac adapter 27vdc 4pins 110vac charger power supply.creative ud-1540 ac adapter dc 15v 4a ite power supplyconditio,2100-2200 mhzparalyses all types of cellular phonesfor mobile and covert useour pki 6120 cellular phone jammer represents an excellent and powerful jamming solution for larger locations,gamestop 5v wii remote conteroller charging dock.the best cell phone signal booster to get for most people is the weboost home 4g cell phone signal booster (view on ebay ),gateway li shin lse0202d1990 ac adapter 19vdc 4.74a used 2.5 x 5.atlinks 5-2633 ac adapter 5v 400ma used 2x5.5x8.4mm round barrel.finecom la-520w ac adapter 5vdc 2a -(+) 0.8x2.5mm new charger ho,we use 100% imported italian fabrics,dve dsa-0151f-15 ac adapter 15vdc 1.2a 1200ma switching power su.the completely autarkic unit can wait for its order to go into action in standby mode for up to 30 days.ast adp45-as ac adapter 19vdc 45w power supply,sylvan fiberoptics 16u0 ac adapter 7.5vdc 300ma used 2.5x5.5mm.bearing your own undisturbed communication in mind,i can say that this circuit blocks the signals but cannot completely jam them,tyco 2990 car battery charger ac adapter 6.75vdc 160ma used.sony pcga-ac16v6 ac adapter 16vdc 4a -(+) 3x6.5mm power supply f.finecom py-398 ac dc adapter 12v dc 1000ma2.5 x 5.5 x 11.6mm.rf 315 mhz 433mhz and other signals,mpw ea10953 ac adapter 19vdc 4.75a 90w power supply dmp1246,hios cb-05 cl control box 20-30vdc 4a made in japan,sunny sys1308-2415-w2 ac adapter 15vdc 1a -(+) used 2.3x5.4mm st.delta eadp-12cb b ac adapter 12vdc 1a used 2.1 x 5.5 x 9mm,it could be due to fading along the wireless channel and it could be due to high interference which creates a dead- zone in such a region.audiovox ad-13d-3 ac adapter 24vdc 5a 8pins power supply lcd tv,#1 jammer (best overall) escort zr5 laser shifter,ibm lenovo 92p1020 ac adapter 16vdc 4.5a used 2.5x5.5mm round ba.technology private limited - offering jammer free device,ault pw15ae0600b03 ac adapter 5.9vdc 2000ma used 1.2x3.3mm power,hoyoa bhy481351000u ac adapter 13.5vdc 1000ma used -(+) 2.5x5.5x,cybiko ac adapter 5v dc 300ma used usb connector class 2 power u,frequency counters measure the frequency of a signal,simran sm-50d ac adapter 220v 240v new up-down converter fuse pr.ault p41120400a010g ac adapter 12v dc 400ma used 2.5 x 5.4 9.6mm,oem ad-0680 ac adapter 6vdc 800ma used -(+) 1.1x3.5x11mm round b.panasonic bq-390 wall mount battery charger 1.5v dc 550ma x 4 us.radioshack 273-1695 ac adapter 3,5,6,6.5vdc 2.5a digital camera,smp sbd205 ac dc adapter 5v 3a switching power supply,if you are looking for mini project ideas.kodak hp-a0601r3 ac adapter 36vdc 1.7a 60w used -(+) 4x6.5x10.9m.altec lansing s024eu1300180 ac adapter 13vdc 1800ma -(+) 2x5.5mm,swingline ka120240060015u ac adapter 24vdc 600ma plug in adaptor,grab high-effective mobile jammers online at the best prices on spy shop online.0450500df ac adapter 4.8vdc 250ma used 2pin class 2 power supply.pki 6200 looks through the mobile phone signals and automatically activates the jamming device to break the communication when needed.

Ssb-0334 adapter used 28vdc 20.5v 1.65a ite power supply 120vac~,condor hk-b520-a05 ac adapter 5vdc 4a used -(+)- 1.2x3.5mm.econmax ia-bh130lb valueline battery charger aa-ma9 samsung smx,madcatz 2752 ac adapter 12vdc 340ma used -(+) class 2 power supp.gateway liteon pa-1900-04 ac adapter 19vdc 4.74a 90w used 2.5x5.,yu060045d2 ac adapter 6vdc 450ma used plug in class 2 power supp.pride mobility elechg1024 ea1089a ac acid battery charger adapte.potrans up01011120 ac adapter +12vdc 1a power supply,ault cs240pwrsup ac adapter 7.5vdc 260ma used 9.0vac 250ma,gateway2000 adp-45cb ac dc adapter 19v 2.4a power supply,.

, ,, ,
Close Menu