Electrical characteristics
STUSB06E
Table 5.
Symbol
DC electrical characteristics (power supply, digital I/O pins)
(VCC_IO = 1.8 V, VREG = 3.3 V unless otherwise noted; TA = 25 °C, specifications over
temperature, -40 to 85 °C)
Parameter
Test conditions
Min. Typ. Max. Unit
VREG supply current (suspend
mode)
D+, D- are idle, VREG=3.0-3.6V,
VCC_IO=1.6-3.6V. Suspend Mode
(See Table 6)
10 µA
VREG supply current (disable
mode)
VREG supply current (HighZ
Mode)
VREG supply current (FS
receiving mode)
D+, D- are idle, VREG=3.0-3.6V,
VCC_IO=GND or floating
D+, D- are idle, VREG=3.0-3.6V,
VCC_IO=1.8V, HIGHZ=”1”
D+, D- are idle, VREG=3.0-
3.6V SPEED# = 0,
OE#=1
SUSPEND = 0
5 µA
5 µA
6.0 mA
VREG supply current (FS
transmit mode)
OE#=0
6.0 mA
IREG
VREG supply current (LS
receiving mode)
VREG supply current (LS
transmit mode)
D+, D- are idle, VREG=3.0-
3.6V, SPEED# = 1,
OE#=1
SUSPEND = 0
OE#=0
4.0 mA
4.0 mA
VREG supply current (receiving
mode 12 Mbps)
D+, D- are active,
VREG=3.0-3.6V, CLOAD =
50pF, SPEED# = 0,
SUSPEND = 0
OE#=1
5.5 mA
VREG supply current (transmit
mode 12 Mbps)
OE#=0
8.5 mA
VREG supply current
(receiving mode 1.5 Mbps)
D+, D- are active,
VREG=3.0-3.6V, CLOAD =
600pF, SPEED# = 1,
SUSPEND = 0
OE#=1
4 mA
VREG supply current
(transmit mode 1.5 Mbps)
OE#=0
7 mA
IVPULEAK VPU leakage current
IVCC_IOLEAK VCC_IO leakage current
VPU
Pull-Up output voltage
VPU = 0V
VCC_IO = 3.6V, VREG = 0V
ITERM = 200µA, VREG=3.0-3.6V
-5
-5
VREG-
5.0mV
5 µA
5 µA
V
RSW VPU internal switch resistance
VTHREG VREG comparator threshold
ITERM = 10mA, VREG = 3.0-3.6V
Supply present
Supply lost
6
9
11 Ω
2.4
V
0.8 V
VTHIF
VCC_IO comparator threshold
Supply present
Supply lost
1.4
V
0.25 V
VHYS
VCC_IO and VREG supply voltage
detection hysteresis
VCC_IO = 1.8V, VREG = 3.0-3.6V
100
mV
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