S9S12GN32F1CTJ Product Information|NXP

Buy Options

S9S12GN32F1CTJ

End of Life

12NC: 935321766574

Details

Order

Order from distributors

S9S12GN32F1CTJR

End of Life

12NC: 935321766534

Details

Order

Order from distributors

Operating Features

ParameterValue
Flash (kB)
32
RAM (kB)
2
EEPROM (kB)
1
Operating Frequency [Max] (MHz)
25
SPI
1
ParameterValue
Supply Voltage [max] (V)
5.5
Supply Voltage [min] (V)
3.13
Ambient Operating Temperature (Min to Max) (℃)
-40 to 85
GPIO
14

Environmental

Part/12NCPbFreeEU RoHSHalogen FreeRHF Indicator2nd Level InterconnectREACH SVHCWeight (mg)
S9S12GN32F1CTJ(935321766574)
Yes
Yes
Certificate Of Analysis (CoA)
Yes
D
e3
REACH SVHC
81.4
S9S12GN32F1CTJR(935321766534)
Yes
Yes
Certificate Of Analysis (CoA)
Yes
D
e3
REACH SVHC
81.4

Quality

Part/12NCSafe Assure Functional SafetyMoisture Sensitivity Level (MSL)Peak Package Body Temperature (PPT) (C°)Maximum Time at Peak Temperatures (s)
Lead Free SolderingLead Free SolderingLead Free Soldering
S9S12GN32F1CTJ
(935321766574)
No
3
260
40
S9S12GN32F1CTJR
(935321766534)
No
3
260
40

Shipping

Part/12NCHarmonized Tariff (US)DisclaimerExport Control Classification Number (US)FootprintCapture Symbol
S9S12GN32F1CTJ
(935321766574)
854231
3A991A2
 PDF | Cadence Allegro(dra) PDF | Orcad Capture 16.3(olb)
S9S12GN32F1CTJR
(935321766534)
854231
3A991A2
 PDF | Cadence Allegro(dra) PDF | Orcad Capture 16.3(olb)

Product Change Notice

Part/12NCIssue DateEffective DatePCNTitle
S9S12GN32F1CTJ
(935321766574)
2020-12-152020-12-16202011011INXP Will Add a Sealed Date to the Product Label
S9S12GN32F1CTJR
(935321766534)
S9S12GN32F1CTJ
(935321766574)
2017-12-202018-01-03201710023INew PQ Label Input for Non-MPQ Shipments
S9S12GN32F1CTJR
(935321766534)

More about S12G

The S12G is an optimized, 16-bit microcontroller product line focused on low cost, high performance and low pin count. The S12G is suited for generic automotive and industrial applications requiring CAN or LIN/SAE J2602 communication.

The S12G delivers all the advantages and efficiencies of a 16-bit MCU while retaining the cost effectiveness, power consumption, EMC and code-size efficiency advantages currently enjoyed by users of our existing 8-bit and 16-bit MCU families.