Allicdata Part #: | ZA9L106DNW2CSGA434-ND |
Manufacturer Part#: |
ZA9L106DNW2CSGA434 |
Price: | $ 0.00 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Maxim Integrated |
Short Description: | IC MCU 32BIT EXT MEM 256LFBGA |
More Detail: | ARM9® Zatara® Microcontroller IC 32-Bit 192MHz Ex... |
DataSheet: | ZA9L106DNW2CSGA434 Datasheet/PDF |
Quantity: | 1000 |
1 +: | 0.00000 |
Series: | Zatara® |
Part Status: | Last Time Buy |
Core Processor: | ARM9® |
Core Size: | 32-Bit |
Speed: | 192MHz |
Connectivity: | EBI/EMI, SmartCard, SPI, UART/USART, USB OTG |
Peripherals: | DMA, LCD, Magnetic Card Reader, POR, PWM, WDT |
Number of I/O: | 76 |
Program Memory Size: | -- |
Program Memory Type: | External Program Memory |
EEPROM Size: | -- |
RAM Size: | 64K x 8 |
Voltage - Supply (Vcc/Vdd): | 1.8V, 3.3V |
Data Converters: | A/D 4x10b |
Oscillator Type: | External |
Operating Temperature: | -40°C ~ 85°C (TA) |
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Embedded technology covers many areas, among which microcontrollers are some of the most popular. Microcontrollers are computer processors designed to operate in both embedded systems, and standalone applications. One example is the ZA9L106DNW2CSGA434 (ZA9L), a 16-bit CMOS microcontroller. Designed around Harvard architecture, the ZA9L contains both separate RAM and ROM memory blocs as well as internal clock and interrupt control. This microcontroller provides up to 16 Kbyte ROM and up to 8 Kbyte RAM, with respectable performance and low clock requirements.
Due to its impressive internal architecture, the ZA9L is suitable for use in a number of different applications. From programmable alarm systems and robots, to laboratory automation and instrumentation the ZA9L can provide the required functional capability in a small, efficient package. Furthermore, its high performance capabilities make it suitable for high speed control applications, and even for use as a micro-controller in industrial process control.
Aside from being a powerful choice for a number of applications, the ZA9L is also reliable. Its operating temperature range is between -40 and +85 C, with important integrated peripheral functions such as battery-backed RAM, an A/D converter, and an on-chip analog comparator. Furthermore, the ZA9L also features an On-Chip Debug Mode, allowing for real-time debugging, and providing a significant advantage to engineers in the field.
In terms of its working principle, the ZA9L is based on the Harvard Architecture. This architecture divides the processor\'s memory into two distinct memory components: one part contains program instructions, while the other is designed to store data. With this division, the processor can switch from one task to another quickly and efficiently, making it suitable for fast-acting embedded systems and controllers.
The ZA9L is capable of operation in both single-cycle and multi-cycle mode, depending of the type of operation required. In single-cycle mode, a single instruction can be processed at a time, with each subsequent instruction requiring a separate clock cycle. Multi-cycle mode allows the processor to process multiple instructions at once, at an increased rate.
Another important feature of this microcontroller is its built-in interrupt control capability. Interrupts specify certain events that cause the processor to suspend its current task and switch to a higher priority one. The ZA9L contains a three-level interrupt controller system, which can be used to trigger events such as data transfer, program jumps, and other related tasks.
In addition to its impressive performance and functional capabilities, the ZA9L also offers great flexibility in terms of system design. It is possible to program the controller to execute 8-bit and 16-bit instructions, as well as a variety of data transfer modes. Furthermore, the ZA9L accepts up to sixteen different byte and word instructions, which can be customized according to application-specific needs.
The ZA9L106DNW2CSGA434 is a 16-bit CMOS microcontroller that is suitable for a variety of embedded applications, from alarm systems to industrial process control. Its impressive memory and I/O capabilities, as well as its impressive architecture and flexibility, makes the ZA9L an efficient and reliable choice for designers who want a high-performance, low-cost solution.
The specific data is subject to PDF, and the above content is for reference
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