生命周期终止
The NLSX5002 is a 2-bit configurable dualsupply autosensing bidirectional level translator that does not require a direction control pin. The I/O VCC and I/O VLports are designed to track two different power supply rails, VCC and VL respectively. Both the VCC and the VL supply rails are configurable from 0.9 V to 4.5 V. This allows a logic signal on the VL side to be translated to either a higher or a lower logic signal voltage on the VCC side, and vice versa. The NLSX5002 offers the feature that the values of the VCC and VL supplies are independent.Design flexibility is maximized because VL can be set to a value either greater than or less than the VCC supply. In contrast, the majority of competitive auto sense translators have a restriction that the value of the VL supply must be equal to less than VCC0.4 V. The NLSX5002 has high output current capability, which allows the translator to drive high capacitive loads such as most high frequency EMI filters. Another feature of the NLSX5002 is that each I/O_VLn and I/O_VCCn channel can function as either an input or an output.An Output Enable (EN) input is available to reduce the power consumption. The EN pin can be used to disable both I/O ports by putting them in 3-state which significantly reduces the supply current from both VCC and VL. The EN signal is referenced to the VL supply.
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VCCA Min (V)
VCCA Max (V)
VCCB Min (V)
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ICC Max (μA)
tpd Max (ns)
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参考价格
生命周期终止
Pb
A
H
P
UQFN-8
1
260
REEL
3000
No
Autosense
2
CMOS
0.9
4.5
0.9
4.5
0.02
2.5
13
140
-55
125
$0.1656
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可靠性数据
Die Related Summary Data
Device: NLSX5002BMUTCG
Equivalent to wafer fab process: CMOS SUB
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
CMOS SUB
3
7566029322
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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.)