Traction System definition
Examples of Traction System in a sentence
The electrical isolation (Ri) is calculated according to the following formula: Ri = Ro*Ub*(1/U1' – 1/U1) Figure 5 Measurement of U1’ Electrical Chassis Energy Conversion System Assembly REESS High Voltage Bus + + Energy Conversion System REESS - U1’ R0 Traction System Electrical Chassis If U2 is greater than U1, insert a standard known resistance (Ro) between the positive side of the high voltage bus and the electrical chassis.
The electrical isolation (Ri) is calculated according to the following formula: Ri = Ro*Ub*(1/U1' – 1/U1) Figure 5 Measurement of U1’ Electrical Chassis Energy Conversion System Assembly REESS High Voltage Bus + + Energy Conversion System - U1’ R0 Traction System Electrical Chassis If U2 is greater than U1, insert a standard known resistance (Ro) between the positive side of the high voltage bus and the electrical chassis.
Calculate the electrical isolation (Ri) according to the following formula: Ri = Ro*Ub*(1/U1’ – 1/U1) Figure 2 Measurement of U1’ Electrical Chassis Energy Conversion System Assembly REESS Assembly High Voltage Bus + + Energy Conversion System - REESS Ub - U1´ Ro Traction System Electrical Chassis If U2 is greater than U1, insert a standard known resistance (Ro) between the positive side of the high voltage bus and the electrical chassis.
The electrical isolation (Ri) is calculated according to the following formula: Ri = Ro*Ub*(1/U1' – 1/U1) Figure 5 Measurement of U1’ Electrical Chassis Energy Conversion System Assembly REESS High Voltage Bus + + Ene Conve SS - U1’ R0 Traction System REE rgy rsion tem Electrical Chassis If U2 is greater than U1, insert a standard known resistance (Ro) between the positive side of the high voltage bus and the electrical chassis.
The electrical isolation (Ri) is calculated according to the following formula: Ri = Ro*Ub*(1/U1' ±1/U1) Figure 5 Measurement of U1’ Electrical Chassis Energy Conversion System Assembly REESS High Voltage Bus + + Energy Conversion System REESS - U1¶ R0 Traction System Electrical Chassis If U2 is greater than U1, insert a standard known resistance (Ro) between the positive side of the high voltage bus and the electrical chassis.
Non-conductive Barriers within 3 feet of live parts shall be supported by or attached to a Grounded frame and interconnected with the Traction System Ground, preferably at not less than two locations.
The electrical isolation (Ri) is calculated according to the following formula: Ri = Ro*Ub*(1/U1' – 1/U1) Figure 5 Measurement of U1’ I R0 Traction System - + - + U1’ REESS Assembly High Voltage Bus Electrical Chassis Electrical Chassis f U2 is greater than U1, insert a standard known resistance (Ro) between the positive side of the high voltage bus and the electrical chassis.
The Traction System Ground consists of the Running Rails, the Static Wires and conductive parts connected thereto and which are connected to ground.
Calculate the electrical isolation (Ri) according to the following formula: Ri = Ro*(Vb/V1’ – Vb/V1) or Ri = Ro*Vb*(1/V1’ – 1/V1) Figure 2 Electrical Chassis Energy Conversion System Assembly REESS Assembly High Voltage Bus + + Energy Conversion System - SS Vb - V1´ Ro Traction System REE Electrical Chassis If V2 is greater than V1, insert a standard known resistance (Ro) between the positive side of the high voltage bus and the electrical chassis.
The electrical isolation (Ri) is calculated according to the following formula: Ri = Ro*Ub*(1/U1' – 1/U1) Figure 5 Measurement of U1’ Electrical Chassis Energy Conversion System Assembly REESS High Voltage Bus + + Energy Conversion System U1’ R0 Traction System Electrical Chassis If U2 is greater than U1, insert a standard known resistance (Ro) between the positive side of the high voltage bus and the electrical chassis.