Electronic Table

  
  1. Electronic Table Top Air Hockey
  2. Electronic Tablet
  3. Electronic Tabletop Drum Set

Our legacy i-Table product created a new gaming experience that captured the excitement of live game play with electronic betting, right at the table. Using six touchscreens embedded in a standard size table, the i-Table united an intuitive electronic betting interface with a live dealer who deals the selected game from the card reading shoe.

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Welcome to MahJong Shopping. We are North America’s largest online shopping site for MahJong, Mah-Jong, MJ and Automatic Mah-Jong tables. The exclusive distributor of Treyo Automatic MahJong tables in the U.S.A.

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Electronic Table Top Air Hockey

Rentals are also available, please call to request.

Electronic tablets

Warranty:
One year parts warranty from date of purchase

24V input adjustable output 1.5-22V DC converterPower SuppliesTrailer controllers, interface 12V and 24V vehicles and trailersPrecision Spot Welders

AWG Wire Sizes (see chart below)

AWG: In the American Wire Gauge (AWG) system, wire size diameters can be calculated by applying the formula D(AWG)=.005·92((36-AWG)/39) inch. For the 00, 000, 0000 etc. gauges you use -1, -2, -3, which makes more sense mathematically than 'double nought.' This means that in American wire gage every 6 gauge decrease gives a doubling of the wire diameter, and every 3 gauge decrease doubles the wire cross sectional area. Similar to dB in signal and power levels. An approximate but accurate enough form of this formula contributed by Mario Rodriguez is D = .460 * (57/64)(awg +3) or D = .460 * (0.890625)(awg +3).

Metric Wire Gauges (see table below)

Metric Gauge: In the Metric Gauge scale, the gauge is 10 times the diameter in millimeters, so a 50 gauge metric wire would be 5 mm in diameter. Note that in AWG the diameter goes up as the gauge goes down, but for metric gauges it is the opposite. Probably because of this confusion, most of the time metric sized wire is specified in millimeters rather than metric gauges.

Load Carrying Capacities (see table below)

Definition: ampacity is the current carrying capability of a wire. In other words, how many amps can it transmit? The following chart is a guideline of ampacity or copper wire current carrying capacity following the Handbook of Electronic Tables and Formulas for American Wire Gauge. As you might guess, the rated ampacities are just a rule of thumb. In careful engineering the voltage drop, insulation temperature limit, thickness, thermal conductivity, and air convection and temperature should all be taken into account. The Maximum Amps for Power Transmission uses the 700 circular mils per amp rule, which is very very conservative. The Maximum Amps for Chassis Wiring is also a conservative rating, but is meant for wiring in air, and not in a bundle. For short lengths of wire, such as is used in battery packs you should trade off the resistance and load with size, weight, and flexibility. NOTE: For installations that need to conform to the National Electrical Code, you must use their guidelines. Contact your local electrician to find out what is legal!

Electronic Tablet

Maximum Frequency for 100% Skin Depth Chart

Electronic Tabletop Drum Set

This data is useful for high frequency AC engineering. When high frequency AC is conducted by a wire there is a tendency for the current to flow along the outside of the wire. This increases the effective resistance. The frequency listed in the table shows the frequency at which the calculated skin depth is equal to the radius of the wire, and is an indication that above this frequency you should start considering the skin effect when calculating the wire's resistance.

Breaking Force for Copper Wire

This estimate is based on nick-free soft annealed Cu wire having a tensile strength of 37000 pounds per square inch.

AWG gaugeConductor
Diameter Inches
Conductor
Diameter mm
Conductor cross section in mm2Ohms per 1000 ft.Ohms per kmMaximum amps for chassis wiringMaximum amps for
power transmission
Maximum frequency for
100% skin depth for solid conductor copper
Breaking force Soft Annealed Cu 37000 PSI
00000.4611.6841070.0490.16072380302125 Hz6120 lbs
0000.409610.4038484.90.06180.202704328239160 Hz4860 lbs
000.36489.2659267.40.07790.255512283190200 Hz3860 lbs
00.32498.2524653.50.09830.322424245150250 Hz3060 lbs
10.28937.3482242.40.12390.406392211119325 Hz2430 lbs
20.25766.5430433.60.15630.51266418194410 Hz1930 lbs
30.22945.8267626.70.1970.6461615875500 Hz1530 lbs
40.20435.1892221.10.24850.8150813560650 Hz1210 lbs
50.18194.6202616.80.31331.02762411847810 Hz960 lbs
60.1624.114813.30.39511.295928101371100 Hz760 lbs
70.14433.6652210.60.49821.63409689301300 Hz605 lbs
80.12853.26398.370.62822.06049673241650 Hz480 lbs
90.11442.905766.630.79212.59808864192050 Hz380 lbs
100.10192.588265.260.99893.27639255152600 Hz314 lbs
110.09072.303784.171.264.132847123200 Hz249 lbs
120.08082.052323.311.5885.20864419.34150 Hz197 lbs
130.0721.82882.632.0036.56984357.45300 Hz150 lbs
140.06411.628142.082.5258.282325.96700 Hz119 lbs
150.05711.450341.653.18410.44352284.78250 Hz94 lbs
160.05081.290321.314.01613.17248223.711 k Hz75 lbs
170.04531.150621.045.06416.60992192.913 k Hz59 lbs
180.04031.023620.8236.38520.9428162.317 kHz47 lbs
190.03590.911860.6538.05126.40728141.821 kHz37 lbs
200.0320.81280.51910.1533.292111.527 kHz29 lbs
210.02850.72390.41212.841.98491.233 kHz23 lbs
220.02530.645160.32716.1452.939270.9242 kHz18 lbs
230.02260.574040.25920.3666.78084.70.72953 kHz14.5 lbs
240.02010.510540.20525.6784.19763.50.57768 kHz11.5 lbs
250.01790.454660.16232.37106.17362.70.45785 kHz9 lbs
260.01590.403860.12840.81133.85682.20.361107 kHz7.2 lbs
270.01420.360680.10251.47168.82161.70.288130 kHz5.5 lbs
280.01260.320040.08064.9212.8721.40.226170 kHz4.5 lbs
290.01130.287020.064781.83268.40241.20.182210 kHz3.6 lbs
300.010.2540.0507103.2338.4960.860.142270 kHz2.75 lbs
310.00890.226060.0401130.1426.7280.70.113340 kHz2.25 lbs
320.0080.20320.0324164.1538.2480.530.091430 kHz1.8 lbs
Metric 2.00.007870.2000.0314169.39555.610.510.088440 kHz
330.00710.180340.0255206.9678.6320.430.072540 kHz1.3 lbs
Metric 1.80.007090.1800.0254207.5680.550.430.072540 kHz
340.00630.160020.0201260.9855.7520.330.056690 kHz1.1 lbs
Metric 1.60.00630.160020.0201260.9855.7520.330.056690 kHz
350.00560.142240.01593291079.120.270.044870 kHz0.92 lbs
Metric 1.4.00551.1400.015433911140.260.043900 kHz
360.0050.1270.0127414.813600.210.0351100 kHz0.72 lbs
Metric 1.25.004920.1250.0123428.214040.200.0341150 kHz
370.00450.11430.0103523.117150.170.02891350 kHz0.57 lbs
Metric 1.12.004410.1120.00985533.817500.1630.02771400 kHz
380.0040.10160.00811659.621630.130.02281750 kHz0.45 lbs
Metric 1.003940.10000.00785 670.221980.1260.02251750 kHz
390.00350.08890.00621831.827280.110.01752250 kHz0.36 lbs
400.00310.078740.00487104934400.090.01372900 kHz0.29 lbs
Voltage Drop Calculator by Gerald Newton http://www.electrician2.com

The following calculator calculates the voltage drop, and voltage at the end of the wire for American Wire Gauge from 4/0 AWG to 30 AWG, aluminum or copper wire. (Note: It just calculates the voltage drop, consult the above table for rules-of-thumb, or your local or national electrical code or your electrician to decide what is legal!) Note that the voltage drop does not depend on the input voltage, just on the resistance of the wire and the load in amps.

This chart of American Wire Gauge (AWG) wire sizes and rated ampacities is data intended for the pleasure of our readers only. Typographical errors, etc. are probable, since the typist is not a professional (our CEO). Please point out errors. The data listed are incomplete and should be used as a guideline only. Please contact manufacturers for the latest data.

We hope that this information is helpful. Now go out and design something that needs a charger, power supply, or battery pack!