MKL13Z64VLK4

NXP Semiconductors
841-MKL13Z64VLK4
MKL13Z64VLK4

Tillverk:

Beskrivning:
ARM-mikrokontroller - MCU 64KB Flash 48MHz LQFP 80

ECAD-modell:
Ladda ned den kostnadsfria Libary Loader för att omvandla denna fil för ditt ECAD-verktyg. Läs mer om ECAD-modellen.

På lager: 700

Lager:
700
Kan skickas omedelbart
På beställningen:
480
Förväntad 2026-09-11
Fabrikens ledtid:
16
Veckor Uppskattad tillverkningstid i fabriken för kvantiteter som är större än vad som visas.
Minst: 1   Flera: 1
Enhetspris:
-,-- kr
Ext. pris:
-,-- kr
Est. Pris:

Prissättning (SEK)

Antal Enhetspris
Ext. pris
54,59 kr 54,59 kr
45,79 kr 457,90 kr
38,37 kr 959,25 kr
36,89 kr 3 689,00 kr
36,15 kr 9 037,50 kr
29,04 kr 13 939,20 kr
27,77 kr 26 659,20 kr
27,14 kr 78 163,20 kr

Produktattribut Attributvärde Välj attribut
NXP
Produktkategori: ARM-mikrokontroller - MCU
RoHS-direktivet:  
KL1x
SMD/SMT
LQFP-80
ARM Cortex M0+
64 kB
32 bit
16 bit
48 MHz
70 I/O
8 kB
1.71 V
3.6 V
- 40 C
+ 105 C
Tray
Analog matningsspänning: 1.71 V to 3.6 V
Märke: NXP Semiconductors
DAC-upplösning: 12 bit
DataRAM-typ: SRAM
DataROM-storlek: 8 kB
DataROM-typ: ROM
Gränssnittstyp: I2C, SPI, UART
Fuktkänsliga: Yes
Antal ADC-kanaler: 24 Channel
Produkt: MCUs
Produkttyp: ARM Microcontrollers - MCU
Programminnestyp: Flash
Fabriksförpackningskvantitet: 480
Underkategori: Microcontrollers - MCU
Handelsnamn: Kinetis
Övervakningstimers: Watchdog Timer
Del # Alias: 935315483557
Enhetens vikt: 491 mg
Hittade produkter:
Markera minst en kryssruta för att visa liknande produkter
Markera minst en kryssruta ovan för att visa liknande produkter i denna kategori.
Attribut som valts: 0

Efterlevnadskoder
TARIC:
8542319000
CNHTS:
8542319092
CAHTS:
8542310000
USHTS:
8542310025
KRHTS:
8542311000
MXHTS:
8542310302
ECCN:
3A991.a.2
Ursprungsklassificeringar
Ursprungsland:
Kina
Monteringsland:
Kina
Distributionsland:
Singapore
Landet kan komma att ändras vid leveranstillfället.

Kinetis L Series Arm Cortex-M0+ MCUs

NXP Semiconductors Kinetis L Series Arm Cortex-M0+ Microcontrollers are an entry-level 32-bit MCU family built on the Arm Cortex-M0+ core. The Kinetis L Series combines exceptional energy efficiency and ease-of-use with the performance, peripheral sets, enablement and scalability of the Kinetis 32-bit MCU portfolio, while leveraging the inherent low-power and high-performance features of the Arm Cortex architecture. Manufactured using NXP's low-leakage, 90nm thin film storage (TFS) process technology, the Kinetis L series frees power-critical designs from 8- and 16-bit MCU limitations by combining excellent dynamic and stop currents with superior processing performance. A broad selection of on-chip flash memory densities and extensive analog, connectivity and HMI peripheral options enable increased energy efficiency and intelligence for a range of applications, including battery-operated devices, medical systems, smart meters and motor control systems.

Kinetis 32-Bit Arm® Cortex®-M Microcontrollers

NXP Semiconductors Kinetis 32-Bit Arm® Cortex®-M Microcontrollers consists of multiple hardware- and software-compatible ARM Cortex-M0+ and ARM Cortex-M4 MCU families with exceptional low-power performance, memory scalability, and feature integration. Families range from the entry-level ARM Cortex-M0+ Kinetis L Series to the high-performance, feature-rich ARM Cortex-M4 Kinetis K and include a wide selection of analog, communication, HMI, connectivity and security features. All Kinetis MCUs are supported by a comprehensive NXP and third-party hardware and software enablement system, reducing development costs and market time.

Kinetis KL1x Microcontrollers

NXP Semiconductors Kinetis KL1x Microcontrollers, based on the Arm® Cortex®-M0+ core, combine ultra-low-power performance with a rich suite of analog, communication, timing, and control peripherals. Kinetis KL1x MCUs start from 32KB of flash in a small 3.5mm x 3.5mm XFBGA-32 package, extending up to 256KB in an LQFP-80 package. The NXP KL1x MCU family is compatible with the Cortex M4-based Kinetis K10 MCU family, offering a migration path to higher performance and feature integration.