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напряжение 6V емкость 2400mAh тип Li-MnO2 размеры 46.00 x 34.50 x 35.8 мм. мм партномер : FanucA98L-0031-0025A98L00310025BR-2/3AGCT4ABR2/3AGCT4AGEA06B-6114-K504A98L-0031-0025BR-2/3AGCT4ABR2/3AGCT4ABR-2/3A4F совместимость:Fanuc18-T series programmable logic controllersRobot controllersALPHA iSV CNC system amplifiersBETA iSV CNC system amplifiersBETA iSVSP CNC system amplifiers
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Protect your house and office with the Oshtraco Assorted Fuse Pack. Made from high-quality material, these fuses are long-lasting and showcase excellent resistance to corrosion. They also feature flame retardant material that can prevent the electrical circuit board from getting damaged. Extremely efficient, these fuses have a voltage rating of 250 volts. This assorted fuse pack features ten fuses of 5 Amps, 13 Amps, and 15 Amps that can be used for your electrical needs in the house or office. (1) Prevents damage to the circuit board. (2) Pack contains ten fuses of 5 Amps, 13 Amps, and 15 Amps. (3) Apt for both your house and office. (4) Long-lasting and resistant to corrosion. (5) Fuses have a voltage rating of 250 volts.
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940 Руб.
802.11ac Wave 2 Wi-Fi — up to 1300 Mbit\/s at 5 GHz and up to 600 Mbit\/s at 2.4 GHz. MIMO 3x3 technology — sending and receiving data in three streams for perfect operation with 3x3 devices. Improved Wi-Fi coverage – thanks to Beamforming technology. MU-MIMO — optimal device performance by optimizing connections. Enhanced security – thanks to parental control, guest network and access control. Smart Connection — The Smart Connect feature switches customers to a less busy channel, and Airtime Fairness optimizes the use of airtime. WPA3 — supports the latest encryption standard that improves security and provides protection against brute force attacks. OneMesh Support — Use OneMesh amplifiers to create coverage throughout the house and not lose signal when moving. EasyMesh technology — will allow you to create a single Mesh network of devices from different manufacturers that support this technology.
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The electrodynamic, electromagnetic and electrohydropulsive accelerating systems of objects are considered. The electrodynamic accelerators of electroconducting bodies are described. Their principle of action is based on the interaction of pulse magnetic field with currents induced in the accelerated body. To increase the pulse magnetic field we use the principle of electromagnetic cumulation of the initial magnetic field created by a superconducting coil. We give the concept of an electric acceleration of large objects having a weight of about 1000 kg till the speeds which are approaching to the space speeds. It is based on the combination of the conduction and induction principles of accelerating objects. It is shown that to increase the efficiency of a railgun we should divide the rail into separate electrically not connected segments and regenerate the energy of the magnetic field of a rail. We noticed in order to reduce losses in a rail it is reasonable to use the multilayered conductive mediums in the devices of current collection. For the induction accelerators with a continuous and step changing of the synchronous speed we consider a question about the control of inductor voltage at which the accelerator gets ideal properties. We investigated the question of the minimizing the length of a segmented accelerator. We consider the question of using the power characteristics of a spark discharge in liquid to accelerate the object.
648 Руб.
The electrodynamic, electromagnetic and electrohydropulsive accelerating systems of objects are considered. The electrodynamic accelerators of electroconducting bodies are described. Their principle of action is based on the interaction of pulse magnetic field with currents induced in the accelerated body. To increase the pulse magnetic field we use the principle of electromagnetic cumulation of the initial magnetic field created by a superconducting coil. We give the concept of an electric acceleration of large objects having a weight of about 1000 kg till the speeds which are approaching to the space speeds. It is based on the combination of the conduction and induction principles of accelerating objects. It is shown that to increase the efficiency of a railgun we should divide the rail into separate electrically not connected segments and regenerate the energy of the magnetic field of a rail. We noticed in order to reduce losses in a rail it is reasonable to use the multilayered conductive mediums in the devices of current collection. For the induction accelerators with a continuous and step changing of the synchronous speed we consider a question about the control of inductor voltage at which the accelerator gets ideal properties. We investigated the question of the minimizing the length of a segmented accelerator. We consider the question of using the power characteristics of a spark discharge in liquid to accelerate the object.
648 Руб.
The electrodynamic, electromagnetic and electrohydropulsive accelerating systems of objects are considered. The electrodynamic accelerators of electroconducting bodies are described. Their principle of action is based on the interaction of pulse magnetic field with currents induced in the accelerated body. To increase the pulse magnetic field we use the principle of electromagnetic cumulation of the initial magnetic field created by a superconducting coil. We give the concept of an electric acceleration of large objects having a weight of about 1000 kg till the speeds which are approaching to the space speeds. It is based on the combination of the conduction and induction principles of accelerating objects. It is shown that to increase the efficiency of a railgun we should divide the rail into separate electrically not connected segments and regenerate the energy of the magnetic field of a rail. We noticed in order to reduce losses in a rail it is reasonable to use the multilayered conductive mediums in the devices of current collection. For the induction accelerators with a continuous and step changing of the synchronous speed we consider a question about the control of inductor voltage at which the accelerator gets ideal properties. We investigated the question of the minimizing the length of a segmented accelerator. We consider the question of using the power characteristics of a spark discharge in liquid to accelerate the object.
648 Руб.
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