S9S12ZVL32F0MLF

NXP Semiconductors
841-S9S12ZVL32F0MLF
S9S12ZVL32F0MLF

Gam.:

Aprašymas:
16 bitų mikrovaldikliai - MCU MagniV 16-bit MCU S12Z core,32KB,25MHz

ECAD modelis:
Atsisiųskite nemokamą Library Loader, kad galėtumėte konvertuoti šį failą darbui su ECAD įrankiu. Sužinokite daugiau apie ECAD Modelį.

Prieinamumas: 371

Turime sandėlyje:
371 Galime išsiųsti iš karto
Gamintojo numatytas pristatymo laikas
16 Savaičių Apytikriai apskaičiuotas gamybos laikas gamykloje, jei dalių kiekis didesnis nei nurodyta.
Min. 1   Užsakoma po 1
Vieneto kaina:
-,-- €
Plėt. Kaina:
-,-- €
Numatomas Įkainis:

Kainodara (EUR)

Qty. Vieneto kaina
Plėt. Kaina
5,04 € 5,04 €
3,65 € 36,50 €
3,40 € 85,00 €
2,98 € 298,00 €
2,82 € 705,00 €
2,54 € 1 270,00 €
2,34 € 2 340,00 €
2,28 € 5 700,00 €
2,26 € 11 300,00 €

Produkto Požymis Atributo vertė Pasirinkite Požymį
NXP
Gaminio kategorija: 16 bitų mikrovaldikliai - MCU
RoHS:  
S12Z
32 kB
1 kB
LQFP-48
32 MHz
10 bit
34 I/O
5.5 V
18 V
SMD/SMT
16 bit
- 40 C
+ 125 C
S12ZVL
AEC-Q100
Tray
Analoginė maitinimo įtampa: 3.13 V to 5.5 V
Prekės Ženklas: NXP Semiconductors
Dac skiriamoji geba: 8 bit
Duomenų RAM type: RAM
Duomenų ROM dydis: 128 B
Duomenų ROM type: EEPROM
Įvesties / išvesties įtampa: 3.13 V to 5.5 V
Interface Type: I2C, SCI, SPI
Jautrus drėgmei: Yes
ADC kanalų skaičius: 8 Channel
Laikmačių / skaitiklių: 2 Timer
Darbinė Maitinimo Įtampa: 5.5 V to 40 V
Procesoriaus serija: S12Z
Gaminys: MCUs
Gaminio tipas: 16-bit Microcontrollers - MCU
Programos atminties tipas: Flash
Gamyklinės pakuotės kiekis: 250
Subkategorija: Microcontrollers - MCU
Prekinis pavadinimas: MagniV
Laikmačiai Watchdog: Watchdog Timer
Dalies Nr., kitokios klasifikacijos numeriai: 935312221557
Vieneto Svoris: 178,250 mg
Rasta produktų:
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Pasirinkti atributai: 0

TARIC:
8542319000
CNHTS:
8542319092
CAHTS:
8542310000
USHTS:
8542310020
JPHTS:
854231032
KRHTS:
8542311000
MXHTS:
8542310302
ECCN:
3A991.a.2

SafeAssure™ Program for Functional Safety

NXP Semiconductors SafeAssure™ is a comprehensive program for fast time to market and scalability. NXP continues to design for safe and securely connected mobility, enabling carmakers to develop smarter solutions for assisted and autonomous driving, connectivity, and electrification challenges. NXP safety products are compliant with ISO 26262 and are created through the development process BCAM7, which complies with ISO 26262 and is certified by TÜV SÜD. NXP safety products are designed as SEooC, prepared to fit into a range of systems. The SafeAssure program at NXP implements Vision Zero, zero accidents on the road. Safety does not evolve overnight, but it is achievable with organizations committed to growing their safety expertise and competency.

S12 MagniV® Mixed-Signal Microcontrollers

NXP Semiconductors S12 MagniV® Family of Mixed-Signal Microcontrollers includes single-die solutions designed to provide a comprehensive system-in-package (SiP) built on proven S12 technology. With the integration of high-voltage (HV) analog features into a standard automotive MCU, the S12 MagniV family simplifies system design by helping to improve manufacturing efficiency and reduce bill of materials costs.

S12ZVL MagniV® Mixed-Signal Microcontrollers

NXP Semiconductors S12ZVL MagniV Mixed-Signal Microcontrollers are an automotive 16-bit MCU family using the 180nm NVM + UHV technology that offers the capability to integrate 40V analog components. This family reuses many features from the existing S12 portfolio. The particular differentiating features of this family are the enhanced S12Z core and the integration of "high-voltage" analog modules, including the voltage regulator (VREG) and a Local Interconnect Network (LIN) physical layer. The S12ZVL-Family includes an error correction code (ECC) on RAM, FLASH, and EEPROM for diagnostic or data storage, a fast analog-to-digital converter (ADC), and a frequency modulated phase-locked loop (IPLL) that improves the EMC performance. The NXP S12ZVL-Family delivers an optimized solution with the integration of several key system components into a single device, optimizing system architecture and achieving significant space savings.