Datasheet TCR5RG (Toshiba) - 5

HerstellerToshiba
BeschreibungUltra high Ripple rejection ratio, 500 mA CMOS Low Dropout Regulator in ultra small package
Seiten / Seite10 / 5 — TCR5RG series. 8. Electrical Characteristics
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DokumentenspracheEnglisch

TCR5RG series. 8. Electrical Characteristics

TCR5RG series 8 Electrical Characteristics

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TCR5RG series 8. Electrical Characteristics (Unless otherwise specified, VIN = VOUT+0.5V (VOUT > 1.5 V), VIN = 2.0 V (VOUT ≤ 1.5 V), CIN = COUT = 1 μF)
T T j = -40 to 85°C j = 25°C (Note 6) Characteristics Symbol Test Condition Unit Min Typ. Max Min Max VOUT < 1.8 V ― ― ― -36 +36 mV I 1.8 V ≤ V Output voltage accuracy V OUT = 1 to 500 mA OUT OUT ― ― ― -1.5 +1.5 (Note 3) ≤ 2.8 V % 2.8 V < VOUT -1.8 +1.8 Line regulation Reg・line IOUT = 1 mA (Note 3) ― 0.5 ― ― ― mV Load regulation Reg・load 1 mA ≤ IOUT ≤ 500 mA ― 3 ― ― ― mV Quiescent current IB(ON) IOUT = 0 mA (Note 5) ― 7 ― ― 13 μA Stand-by current IB (OFF) VCT = 0 V ― 0.08 ― ― 1.0 μA Control pull down current ICT ― ― 0.08 ― ― 1.0 μA VOUT = 1.8 V ― 235 ― ― 290 mV Drop-out voltage (Note 7) VDO IOUT = 500 mA VOUT = 2.8 V ― 150 ― ― 210 mV IOUT = 10 mA 10 Hz ≤ f ≤ 100 kHz (Note 4) ― 5 ― ― 15 Output noise voltage VNO μVrms IOUT = 250 mA 10 Hz ≤ f ≤ 100 kHz (Note 4) ― 5 ― ― 15 f = 1 kHz ― 100 ― ― ― dB IOUT = 10 mA, f = 10 kHz ― 93 ― ― ― dB Ripple rejection ratio R.R. VIN = VOUT + 1 V VRipple = 200 mVp-p, f = 100 kHz ― 67 ― ― ― dB (Note 4) f = 1 MHz ― 59 ― ― ― dB IOUT = 1 mA  500 mA ― -40 ― ― ― mV Load transient response ⊿VOUT IOUT = 500 mA  1 mA ― +40 ― ― ― mV Output voltage slew rate VOUTSR ― ― 30 ― ― ― mV/μs Startup time tss from CONTROL rising edge to 95% VOUT (Note 4) ― 160 ― ― ― μs Output current limit ICL ― ― 700 ― 600 850 mA TSDH TJ rising ― 160 ― ― ― °C Thermal shutdown threshold TSDL TJ falling ― 140 ― ― ― °C Control voltage (ON) VCT (ON) ― ― ― ― 0.9 5.0 V Control voltage (OFF) VCT (OFF) ― ― ― ― 0 0.5 V Discharge on resistance RSD (Note4) ― 30 ― ― ― Ω Note 3: stable state with fixed IOUT condition ((VOUT + 0.5 V) or 2 V whichever is greater) ≤ VIN ≤ 5.5 V Note 4: VOUT = 2.8 V Note 5: except Control pull down current (ICT) Note 6: This parameter is warranted by design. Note 7: VDO = VIN1 - (VOUT1 x 0.97) VOUT1 is the nominal output voltage. VIN1 is the input voltage at which the output voltage becomes 97% of VOUT1 after gradual y decreasing the input voltage. © 2020 2020-12-18 Toshiba Electronic Devices & Storage Corporation