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L4923 Arkusz danych(PDF) 3 Page - STMicroelectronics |
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L4923 Arkusz danych(HTML) 3 Page - STMicroelectronics |
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3 / 6 page ![]() ELECTRICAL CHARACTERISTICS (Vi = 14. 4V, – 40 °C ≤ TJ ≤ + 125°C unless otherwise specified) Symbol Parameter Test Conditions Min. Typ. Max. Unit Vi Operating Input Voltage (*) Note 1 6 26 V Vo Output Voltage Io = 0mA to 1A TJ =25 °C 4.8 4.9 5.2 5.1 V V ∆VLine Line Regulation Vi = 6 to 26V; IO = 10mA 5 25 mV SVR Supply Voltage Rejection Io = 700mA f = 120Hz; Co =47 µF Vi = 12Vdc +5Vpp 55 dB ∆VLOAD Load Regulation Io = 10mA to 1A 15 50 mV Vi –Vo Dropout Voltage TJ =25 °C, IO =1A 0.45 0.70 V Over Full T, Io = 1A 0.90 V Iq Quiescent Current Io = 10mA Io =1A Active High Inhibit 7 25 0.30 12 70 0.65 mA mA mA ISC Short Circuit Current 1.8 A SVR Supply Volt. Rej. Io = 350mA ; f = 120Hz Co = 100 µF; Vi = 12V ± 5Vpp 50 60 dB VR Rset Output Saturation Voltage 1.5V < VO <VRT (off),IR = 1.6mA 3V < VO <VRT (off),IR =8mA 0.40 0.40 V V VRT peak Power On-Off Reset out Peak Voltage 1K Ω Reset Pull-up to VO 0.65 1.0 V IR Reset Output Leakage Current (high level) Vo in Regul. VR =5V 50 µA tD Reset Pulse Delay Time CD = 100nF 20 ms VRthOFF Power OFF Vo Threshold Vo @ Reset out H to L Transition; TJ =25 °C –40 °C ≤ TJ ≤ + 125°C 4.75 4.7 Vo –0.15 V V IC6 Delay Capacitor Charging Current (current generator) V6 =3V 20 µA VRthON Power ON Vo Threshold Vo @ Reset out L to H Transition VrthOFF + 0.03V Vo – 0.04V V V6 Delay Comparator Threshold Reset out = ”1” H to L Transition 3.2 3.8 V Reset out = ”0” L to H Transition 3.7 4 4.4 V V6H Delay Comparator Hysteresis 500 mV VInhL Low Inhibit Voltage 0.5 V VInhH High Inhibit Voltage 2.0 V IInhL Low Level Inhibit Current VInh L = 0.4V – 40 – 10 µA (*) Note 1 : The device is not operating within the range : 26 V < Vi <37 V. EXTERNAL COMPENSATION Since the purpose of a voltageregulatoris to supply a fixed output voltage in spite of supply and load variations, the open loop gain of the regulator must be very high at low frequencies.This may cause in- stability as a result of the various poles present in the loop. To avoid this instability dominant pole compensationis used to reduce phase shifts due to other poles at the unity gain frequency. The lower the frequency of theseother poles, the greatermust be the capacitor used to create the dominant pole for the same DC gain. Where the output transistor is a lateral PNP type there is a pole in the regulation loop at a frequency too low to be compensatedby a capacitor wich can be integrated. An external compensation is there- fore necessary so a very high value capacitor must be connectedfrom the output to ground. The parassiticequivalentseries resistance of theca- pacitor used adds a zero to the regulationloop. This zero may compromise the stability of the system since its effect tends to cancel the effect of the pole added. In regulators this ESR must be less than 3 Ω and the minimum capacitor value is 47 µF. L4923 3/6 |
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