Current controlled switching power supply system

The current-controlled switching power supply system has three control modes: peak current control, average current control, and hysteresis current control. Figure 1 shows the block diagram of the current-mode controlled switching power supply system. It contains two negative feedback control loops: the inner loop is the current loop and the outer loop is the voltage loop. The output control signal ue of the voltage controller is used as a given signal of the current loop; the current loop is composed of current detection (such as DC current transformer), processing (IU conversion), and current controller; the detected current can be the inductor current iL It can also be the current iv of the main switch tube, and the detected current (iL or iv) is converted into the voltage iLRi or ivRi through the current detecting resistor Ri, and then compared with the current given signal ue, and the error obtained is obtained. After the signal is amplified by the current controller, it is modulated by the PWM pulse modulator to generate a duty cycle d to control the on/off of the main switching transistor V of the switching converter. For the sake of simplicity, this article only introduces continuous conduction mode (CCM).

Figure 1 Block diagram of current mode controlled switching power supply system

Figure 1 Block diagram of current mode controlled switching power supply system

The power system block diagram shown in Figure 2 is a block diagram of a current-mode controlled switching power supply system, that is, a frequency domain model of a switching power supply system. In the figure, kv(s) is the transfer function of the voltage controller (compensation network); ki(s) is the transfer function of the current controller (compensation network); Fv and Fm are the transfer functions of the voltage detecting element and the pulse width modulator respectively. ; Ri is the current sampling resistor.

Figure 2 Block diagram of current mode controlled switching power supply system

Figure 2 Block diagram of current mode controlled switching power supply system

Open Air Profile Disc Insulator is an assembly of one or more shells with metallic fittings, Glass Electrical Insulators have means for non-rigid supporting. In operation,  Profile Disc Glass Insulator is always connected to insulator string, Suspension Insulator set complete with the fittings is used to carry a line conductor or conductors at its lower end. U70BP-U120BP Profile Disc Toughened Glass Insulator comply with IEC, ANSI standard.

  MAIN DIMENSIONS AND STANDARD PARTICULARS
Currency Designation  U70BP/146M  U100BP/127M  U120BP/127M  U120BP/146M  U160BP/146M  U160BP/155M  U160BP/170M  U160BP/170M
Designation  LXAP1-160 LXAP-160 LXAP-210 LXAP-240
Diameter D,mm 380 380 380 380 420 420 420 420
Spacing H,mm 146 146 127 146 146 155 170 170
Creepage L,mm 365 365 365 365 380 380 380 380
Socket Soupling,mm 16 16 16 16 20 20 20 20
Mechanical Falling Load,KN 70 100 120 120 160 160 210 210
Mechanical Routine Test,KN 35 50 60 60 80 80 105 105
Wet Power Frequency withstand voltage,KV 45 45 45 45 50 50 50 50
Dry Lighting Impulse withstand voltage,KV 90 90 90 90 95 95 95 95
Impulse Puncture Voltage,PU 2.8 2.8 2.8 2.8 2.8 2.8 2.8 2.8
Power Frequency Puncture Voltage,KV 130 130 130 130 130 130 130 130
Radio Influence Voltage,μv 50 50 50 50 50 50 50 50
Corona Visual Test,KV 18/22 18/22 18/22 18/22 18/22 18/22 18/22 18/22
Power Frequency Electric arc voltage,KV 0.12s/20ka 0.12s/20ka 0.12s/20ka 0.12s/20ka 0.12s/20ka 0.12s/20ka 0.12s/20ka 0.12s/20ka
Net Weight per unit,KG 5.3 5.2 5.3 5.4 7.2 7.2 7.3 7.3

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