MSP430FR6928IPM

Texas Instruments
595-MSP430FR6928IPM
MSP430FR6928IPM

Tillverk:

Beskrivning:
16-bitars mikrokontroller - MCU Ultra low power MCU A 595-MSP430FR6928IP A 595-MSP430FR6928IPMR

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

På lager: 116

Lager:
116 Kan skickas omedelbart
Fabrikens ledtid:
18 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
101,37 kr 101,37 kr
78,26 kr 782,60 kr
74,67 kr 1.866,75 kr
63,98 kr 6.398,00 kr
53,08 kr 13.270,00 kr
52,97 kr 25.425,60 kr
51,99 kr 58.228,80 kr
2 560 Beräkning

Produktattribut Attributvärde Välj attribut
Texas Instruments
Produktkategori: 16-bitars mikrokontroller - MCU
RoHS-direktivet:  
MSP430
96 kB
2 kB
LQFP-64
16 MHz
12 bit
52 I/O
1.8 V
3.6 V
SMD/SMT
16 bit
- 40 C
+ 85 C
MSP430FR6928
Tray
Analog matningsspänning: 3.6 V
Märke: Texas Instruments
DataRAM-typ: RAM
Gränssnittstyp: I2C, SPI, UART
Fuktkänsliga: Yes
Antal ADC-kanaler: 16 Channel
Produkt: MCUs
Produkttyp: 16-bit Microcontrollers - MCU
Programminnestyp: FRAM
Fabriksförpackningskvantitet: 160
Underkategori: Microcontrollers - MCU
Handelsnamn: MSP430
Övervakningstimers: No Watchdog Timer
Del # Alias: MSP430FR6989IPZR
Enhetens vikt: 342,700 mg
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Attribut som valts: 0

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TARIC:
8542319000
CNHTS:
8542319090
CAHTS:
8542310000
USHTS:
8542310020
JPHTS:
854231032
KRHTS:
8542311000
MXHTS:
8542310302
ECCN:
5A992.C

MSP430FRx Ultra Low-Power FRAM MCUs

Texas Instruments MSP430FRx Ultra Low-Power FRAM Microcontrollers (MCUs) consist of embedded FRAM non-volatile memory plus an ultra-low-power 16-bit MSP430 CPU, and different peripherals targeted for various applications. These MCUs feature seven low-power modes that are optimized to achieve extended battery life in portable and wireless sensing applications. With FRAM non-volatile memory, it combines the speed, flexibility, and endurance of SRAM with the stability and reliability of flash with lower total power consumption. These devices include a variety of peripherals, including a 10-bit ADCs, 16-channel comparator, and hysteresis capabilities, three enhanced serial channels capable of I2C, SPI, or UART protocols, internal DMA, hardware multiplier, real-time clock, five 16-bit timers, and more. These devices are ideal for use in cold chain applications because they allow the engineer to write quickly to save power. By using flexible non-volatile FRAM you can store applications, data, or both. By using FRAM, it also allows the highest reliability by being able to log data continuously with a 1015 write endurance and proven 10-year data retention at 85ºC. The MSP430FRx-EP devices have gold bond wires, a temperature range of –55 to +105°C, and include an SnPb lead finish.

MSP430™ Microcontrollers

Texas Instruments MSP430™ Family of Ultra-Low Power Microcontrollers (MCUs) includes several devices featuring different sets of peripherals for various applications. TI's MSP430 features a powerful 16-bit RISC CPU, 16-bit registers, and constant generators that attribute to maximum code efficiency. The digitally controlled oscillator allows wakeup from a low-power mode to active mode in less than 6µS. The MSP430 16-bit microcontroller platform of ultra-low power RISC mixed-signal microprocessors from Texas Instruments provides the ultimate solution for a wide range of low power and portable applications. TI provides robust design support for the MSP430 16-bit MCU, including technical documents, training, tools, and software.

Processors

Texas Instruments Processors provide a comprehensive portfolio, proven software, and worldwide support, enabling industry-leading automotive and industrial solutions. TI is dedicated to advancing and optimizing today’s processors to meet tomorrow’s intelligence, performance, and cost requirements in automotive and industrial applications. Scalable hardware and software platforms with common code allow designers to seamlessly reuse and migrate across devices to protect future investment.