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CAT6217 Ver la hoja de datos (PDF) - ON Semiconductor

Número de pieza
componentes Descripción
Fabricante
CAT6217
ON-Semiconductor
ON Semiconductor ON-Semiconductor
CAT6217 Datasheet PDF : 9 Pages
1 2 3 4 5 6 7 8 9
CAT6217
Table 3. ELECTRICAL OPERATING CHARACTERISTICS (Note 3)
(VIN = VOUT + 1.0 V, VEN = High, IOUT = 100 mA, CIN = COUT = 1 mF, ambient temperature of 25°C (over recommended operating
conditions unless specified otherwise). Bold numbers apply for the entire junction temperature range.)
Symbol
Parameter
Conditions
Min Typ Max
Unit
VOUTACC Output Voltage Accuracy
Initial accuracy for VOUT 2.0 V
(Note 6)
1.0
2.0
+1.0
%
+2.0
TCOUT
VRLINE
Output Voltage Temp. Coefficient
Line Regulation
VIN = VOUT + 1.0 V to 5.5 V
40
0.2 ±0.1 +0.2
0.4
+0.4
ppm/°C
%/V
VRLOAD Load Regulation
IOUT = 100 mA to 150 mA
0.6
1.0
%
1.3
VDROP Dropout Voltage (Note 4)
IOUT = 150 mA
90
125
mV
150
IGND
Ground Current
IOUT = 0 mA
55
75
mA
90
IGNDSD Shutdown Ground Current
IOUT = 150 mA
VEN < 0.4 V
80
1
mA
2
PSRR Power Supply Rejection Ratio
ISC
TON
eN
ROUTSH
REN
VUVLO
Output short circuit current limit
TurnOn Time
Output Noise Voltage (Note 5)
Shutdown Switch Resistance
Enable pulldown resistor
Undervoltage lock out (UVLO)
threshold
f = 1 kHz, CBYP = 10 nF
f = 20 kHz, CBYP = 10 nF
VOUT = 0 V
CBYP = 10 nF
BW = 10 Hz to 100 kHz
64
dB
54
350
mA
150
ms
45
mVrms
250
W
2.5
MW
2.1
V
ESR
COUT equivalent series resistance
ENABLE INPUT
5
500
mW
VHI
Logic High Level
VIN = 2.3 to 5.5 V
1.8
V
VIN = 2.3 to 5.5 V, 0°C to +125°C
1.6
junction temperature
VLO
Logic Low Level
IEN
Enable Input Current
THERMAL PROTECTION
VIN = 2.3 to 5.5 V
VEN = 0.4 V
VEN = VIN
0.4
V
0.15
1
mA
1.5
4
TSD
Thermal Shutdown
160
°C
THYS
Thermal Hysteresis
10
°C
3. Specification for 2.80 V output version unless specified otherwise.
4. Dropout voltage is defined as the inputtooutput differential at which the output voltage drops 2% below its nominal value. During test, the
input voltage stays always above the minimum 2.3 V.
5. Specification for 1.8 V output version.
6. For VOUT < 2.0 V, the initial accuracy is ±2% and across temperature ±3%.
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