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The NCV4299C is a family of precision micropower voltage regulators with an output current capability of 150 mA. It is available in 5.0 V or 3.3 V output voltage.The output voltage is accurate within ±2% with a maximum dropout voltage of 0.5 V at 100 mA. Low Quiescent current is a feature drawing only 80 µA with a 100 µA load. This part is ideal forany and all battery operated microprocessor equipment.The device features microprocessor interfaces including an adjustable reset output and adjustable system monitor to provide shutdown early warning. An inhibit function is available. With inhibit active, the regulator turns off and the device consumes less than 1.0 µA of quiescent current.The part can withstand load dump transients making it suitable for use in automotive environments.
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Output
Polarity
VO (V)
IO Typ (A)
VI Min (V)
VI Max (V)
VDO Typ (V)
Iq Typ (mA)
PSRR (dB)
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Reference Price
NCV4299CD133R2G
Pb
A
H
P
SOIC-8
1
260
REEL
2500
N
Single
Positive
3.3
0.15
-40
45
0.26
0.08
66
-
Yes
Yes
Automotive
Price N/A
More Details
NCV4299CD150R2G
Pb
A
H
P
SOIC-8
1
260
REEL
2500
N
Single
Positive
5
0.15
-40
45
0.26
0.08
66
-
Yes
Yes
Automotive
Price N/A
More Details
NCV4299CD233R2G
Pb
A
H
P
SOIC-14
1
260
REEL
2500
N
Single
Positive
3.3
0.15
-40
45
0.26
0.08
66
-
Yes
Yes
Automotive
Price N/A
More Details
NCV4299CD250R2G
Active
Pb
A
H
P
SOIC-14
1
260
REEL
2500
Y
Single
Positive
5
0.15
-40
45
0.26
0.08
66
-
Yes
Yes
Automotive
$0.8189
More Details
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可靠性数据
Die Related Summary Data
Device: NCV4299CD133R2G
Equivalent to wafer fab process: BP STD LINEAR
产品技术
产品技术
等效器件小时
平均故障间隔时间/平均无故障时间(按小时计算)
FITS
BP STD LINEAR
10
12120914040
More Details
Re-calculate Data
Data is based on the following assumptions.
Note: The temperature and confidence level may be adjusted to your requirements.
Disclaimer: A reliability FIT rate calculated using this tool shall not be used for any functional safety purpose. In case a raw FIT rate needs to be estimated for a component which is targeted to be used in a safety critical application (i.e. compliant to ISO 26262 standard) it should be calculated according to generic safety standards (IEC62380, IEC61709, SN29500, FIDES, etc.)