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MAX14850ASE+ Datasheet(PDF) 3 Page - Maxim Integrated Products

Part # MAX14850ASE+
Description  Six-Channel Digital Isolator
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Manufacturer  MAXIM [Maxim Integrated Products]
Direct Link  https://www.maximintegrated.com/en.html
Logo MAXIM - Maxim Integrated Products

MAX14850ASE+ Datasheet(HTML) 3 Page - Maxim Integrated Products

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MAX14850
Six-Channel Digital Isolator
ELECTRICAL CHARACTERISTICS (continued)
(VCCA – VGNDA = 3.0V to 5.5V, VCCB – VGNDB = 3.0V to 5.5V, TA = -40°C to +125°C, unless otherwise noted. Typical values are at
VCCA – VGNDA = 3.3V, VCCB – VGNDB = 3.3V, and TA = +25°C.) (Note 2)
PARAMETER
SYMBOL
CONDITIONS
MIN
TYP
MAX
UNIT
ISOLATION CHARACTERISTICS
Isolation Voltage
VISO
t = 60s (Note 5)
600
VRMS
Working Isolation
Voltage
VIOWM
VGNDB - VGNDA continuous (Note 3), 50-year life
expectancy (Figure 4)
200
VRMS
ESD Protection
All pins
±2.5
kV
LOGIC INPUTS AND OUTPUTS
Input Threshold Voltage
VIT
I/OA1, I/OA2, relative to GNDA
0.5
0.7
V
Input Logic-High Voltage
VIH
INA1, INA2, relative to GNDA
0.7 x VCCA
V
INB1, INB2, relative to GNDB
0.7 x VCCB
I/OA1, I/OA2, relative to GNDA
0.7
I/OB1, I/OB2, relative to GNDB
0.7 x VCCB
Input Logic-Low Voltage
VIL
INA1, INA2, relative to GNDA
0.8
V
INB1, INB2, relative to GNDB
0.8
I/OA1, I/OA2, relative to GNDA
0.5
I/OB1, I/OB2, relative to GNDB
0.3 x VCCB
Output Logic-High
Voltage
VOH
OUTA1, OUTA2, relative to GNDA,
source current = 4mA
VCCA - 0.4
V
OUTB1, OUTB2, relative to GNDB,
source current = 4mA
VCCB - 0.4
Output Logic-Low
Voltage
VOL
OUTA1, OUTA2, relative to GNDA,
sink current = 4mA
0.8
V
OUTB1, OUTB2, relative to GNDB,
sink current = 4mA
0.8
I/OA1, I/OA2, relative to GNDA,
sink current = 10mA
0.6
0.9
I/OA1, I/OA2, relative to GNDA,
sink current = 0.5mA
0.6
0.85
I/OB1, I/OB2, relative to GNDB,
sink current = 30mA
0.4
Input/Output Logic-Low
Threshold Difference
D
VTOL
I/OA1, I/OA2 (Note 6)
50
mV
Input Capacitance
CIN
INA1, INA2, INB1, INB2, f = 1MHz
2
pF
DYNAMIC SWITCHING CHARACTERISTICS
Common-Mode
Transient Immunity
dVISO/dt
VIN = VCC_ or VGND_ (Notes 3, 7)
1.5
kV/Fs


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