Cobra C-5340-20 160Kv Motor Propeller Data
Magnets Motor Wind Motor Kv No-Load Current Motor Resistance I Max P Max (12S)
14-Pole 20-Turn Delta 160 RPM/Volt Io = 1.63 Amps @ 20v Rm =  0.035 Ohms 54 Amps 2400 W
 
Stator Outside Diameter Body Length Total Shaft Length Shaft Diameter Motor Weight
12-Slot  63.0 mm,  2.48 in. 71.0 mm,  2.80 in. 102.4 mm,  4.03 in. 8.00 mm,  0.315 in. 818 grams, 28.85 oz.
 
Test Data From Input 16.0 V 20.0 V 24.0V 28.0V Measured Kv value Measured Rm Value
Sample Motor Io Value 1.463 A 1.630 A 1.760 A 1.942 A 165.8 RPM/Volt @ 20V 0.0355 Ohms
 
Prop Prop Li-Po Input Motor Input Prop Pitch Speed Thrust  Thrust Thrust Eff.
Manf. Size Cells Voltage Amps Watts RPM in MPH Grams Ounces Grams/W
APC 17x12-E 10 37.0 24.66 912.5 5,708 64.9 3,813 134.50 4.18
APC 18x10-E 10 37.0 22.12 818.4 5,753 54.5 4,420 155.91 5.40
APC 18x12-E 10 37.0 31.94 1181.6 5,600 63.6 4,570 161.20 3.87
APC 19x8-E 10 37.0 26.16 967.8 5,684 43.1 5,174 182.51 5.35
APC 19x10-E 10 37.0 26.00 961.8 5,700 54.0 5,303 187.06 5.51
APC 19x12-E 10 37.0 31.07 1149.7 5,614 63.8 5,684 200.50 4.94
APC 20x8-E 10 37.0 26.98 998.2 5,669 42.9 5,779 203.85 5.79
APC 20x10-E 10 37.0 32.48 1201.6 5,596 53.0 6,334 223.42 5.27
APC 20x11-E 10 37.0 35.56 1315.6 5,550 57.8 6,376 224.90 4.85
APC 20x13-E 10 37.0 37.89 1401.9 5,511 67.8 6,605 232.98 4.71
APC 20x15-E 10 37.0 47.14 1744.2 5,442 77.3 6,225 219.58 3.57
APC 21x12W-E 10 37.0 44.92 1662.0 5,412 61.5 7,972 281.20 4.80
APC 21x14-E 10 37.0 42.36 1567.5 5,450 72.3 7,673 270.65 4.90
APC 22x10-E 10 37.0 42.66 1578.3 5,441 51.5 8,064 284.45 5.11
APC 22x12-E 10 37.0 52.90 1957.2 5,300 60.2 8,642 304.83 4.42
 
Prop Prop Li-Po Input Motor Input Prop Pitch Speed Thrust  Thrust Thrust Eff.
Manf. Size Cells Voltage Amps Watts RPM in MPH Grams Ounces Grams/W
APC 16x8-E 12 44.4 22.58 1002.6 6,893 52.2 4,332 152.81 4.32
APC 16x10-E 12 44.4 25.37 1126.3 6,852 64.9 4,459 157.28 3.96
APC 16x12-E 12 44.4 30.87 1370.8 6,781 77.1 4,157 146.63 3.03
APC 17x8-E 12 44.4 24.77 1099.8 6,861 52.0 4,946 174.46 4.50
APC 17x10-E 12 44.4 30.51 1354.7 6,759 64.0 5,323 187.76 3.93
APC 17x12-E 12 44.4 34.82 1545.8 6,700 76.1 5,261 185.57 3.40
APC 18x8-E 12 44.4 25.45 1130.2 6,855 51.9 5,871 207.09 5.19
APC 18x10-E 12 44.4 31.29 1389.3 6,754 64.0 6,193 218.45 4.46
APC 18x12-E 12 44.4 44.88 1992.5 6,556 74.5 6,331 223.32 3.18
APC 19x8-E 12 44.4 38.37 1703.6 6,677 50.6 7,264 256.23 4.26
APC 19x10-E 12 44.4 36.81 1634.3 6,648 63.0 7,324 258.34 4.48
APC 19x12-E 12 44.4 44.46 1974.0 6,554 74.5 7,789 274.75 3.95
APC 20x8-E 12 44.4 38.85 1725.0 6,637 50.3 8,096 285.58 4.69
APC 20x10-E 12 44.4 46.97 2085.5 6,522 61.8 8,709 307.20 4.18
APC 20x11-E 12 44.4 50.23 2230.0 6,513 67.8 8,701 306.92 3.90
APC 20x13-E 12 44.4 53.85 2390.8 6,498 80.0 8,955 315.88 3.75
APC 20x15-E 12 44.4 62.66 2782.1 6,347 90.2 8,411 296.69 3.02
APC 21x12W-E 12 44.4 63.03 2798.5 6,271 71.3 10,671 376.40 3.81
APC 22x10-E 12 44.4 61.24 2719.1 6,287 59.5 10,802 381.03 3.97
XOAR 22x10-W 12 44.4 59.46 2640.0 6,453 61.1 10,888 384.06 4.12
Propeller Chart Color Code Explanation
   The prop is to small to get good performance from the motor. (Less than 50% power)
   The prop is sized right to get good power from the motor. (50 to 80% power)
   The prop can be used, but full throttle should be kept to short bursts. (80 to 100% power)
   The prop is too big for the motor and should not be used. (Over 100% power)
PLEASE NOTE:
The Data contained in this Prop Chart is based on actual measurements, taken in a controlled test environment, at an altitude of
512 feet above sea level.  The test voltages used are based on the standard output of a Li-Po battery under load, which is 3.70 volts
per cell.  If you are using a battery that is larger in capacity than normal, or has a very high C-rating, then your actual voltages will
be higher than those shown in the chart, and this will result in a higher current and power value for every prop used.  You should
always test your actual power system with a watt meter before flying your model to make sure that you are not exceeding the 
recommended current and power ratings of the motor being used.  The prop recommendations in this chart assume that the motor
receives adequate cooling throughout its operation.  If your motor is being used inside a cowl or fuselage, you must ensure that
the motor receives sufficient airflow, and does not get too hot during operation.  It is always best to use a prop size that pulls no
more than 80% of the motors maximum recommended current value to ensure safe operation under all conditions.