PCA9515D Product Information|NXP

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PCA9515D,112

No Longer Manufactured

12NC: 935268651112

Details

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Operating Features

ParameterValue
Operating Temperature (°C)
-40~85
I2C-bus (kHz)
400
Operating voltage (VDC)
3.0~3.6_tolerant_to_5.5 VDC
ParameterValue
Inputs
1
Outputs
1

Environmental

Part/12NCPbFreeEU RoHSHalogen FreeRHF IndicatorREACH SVHCWeight (mg)
PCA9515D,112(935268651112)
Yes
Yes
Yes
DREACH SVHC
69.6436999999998
PCA9515D,118(935268651118)
Yes
Yes
Yes
DREACH SVHC
69.6436999999998

Quality

Part/12NCSafe Assure Functional SafetyMoisture Sensitivity Level (MSL)Peak Package Body Temperature (PPT) (C°)FITMTBFIR
Lead SolderingLead Free SolderingLead SolderingLead Free Soldering
PCA9515D,112
(935268651112)
No
1
1
240
260
3.0
3.33333333333333E8
0.0
PCA9515D,118
(935268651118)
No
1
1
240
260
3.0
3.33333333333333E8
0.0

Shipping

Part/12NCHarmonized Tariff (US)Disclaimer
PCA9515D,112
(935268651112)
854239
PCA9515D,118
(935268651118)
854239

Discontinued and Replacement Part Data

Part/12NCDiscontinuance NoticeReplacement
PCA9515D,112
(935268651112)
-
PCA9515AD,118
(935276766118)
PCA9515D,118
(935268651118)
--

More about PCA9515

The PCA9515 is a BiCMOS integrated circuit intended for application in I2C-bus and SMBus systems.

While retaining all the operating modes and features of the I2C-bus system, it permits extension of the I2C-bus by buffering both the data (SDAn) and the clock (SCLn) lines, thus enabling two buses of 400 pF.

The I2C-bus capacitance limit of 400 pF restricts the number of devices and bus length. Using the PCA9515 enables the system designer to isolate two halves of a bus, thus more devices or longer length can be accommodated. It can also be used to run two buses, one at 5 V and the other at 3.3 V or a 400 kHz and 100 kHz bus, where the 100 kHz bus is isolated when 400 kHz operation of the other is required.

Two or more PCA9515's cannot be put in series. The PCA9515 design does not allow this configuration. Since there is no direction pin, slightly different 'legal' low voltage levels are used to avoid lock-up conditions between the input and the output. A 'regular low' applied at the input of a PCA9515 will be propagated as a 'buffered low' with a slightly higher value. When this 'buffered low' is applied to another PCA9515, PCA9516A, or PCA9518A in series, the second PCA9515, PCA9516A, or PCA9518A will not recognize it as a 'regular low' and will not propagate it as a 'buffered low' again. The PCA9510A/9511A/9513A/9514A and PCA9512A cannot be used in series with the PCA9515, PCA9516A, or PCA9518A but can be used in series with themselves since they use shifting instead of static offsets to avoid lock-up conditions.

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