전자부품 데이터시트 검색엔진 |
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ACEX1K 데이터시트(PDF) 5 Page - Altera Corporation |
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ACEX1K 데이터시트(HTML) 5 Page - Altera Corporation |
5 / 86 page Altera Corporation 5 ACEX 1K Programmable Logic Device Family Data Sheet 13 Table 5 shows ACEX 1K device performance for more complex designs. These designs are available as Altera MegaCoreTM functions. Each ACEX 1K device contains an embedded array and a logic array. The embedded array is used to implement a variety of memory functions or complex logic functions, such as digital signal processing (DSP), wide data-path manipulation, microcontroller applications, and data- transformation functions. The logic array performs the same function as the sea-of-gates in the gate array and is used to implement general logic such as counters, adders, state machines, and multiplexers. The combination of embedded and logic arrays provides the high performance and high density of embedded gate arrays, enabling designers to implement an entire system on a single device. ACEX 1K devices are configured at system power-up with data stored in an Altera serial configuration device or provided by a system controller. Altera offers EPC16, EPC2, EPC1, and EPC1441 configuration devices, which configure ACEX 1K devices via a serial data stream. Configuration data can also be downloaded from system RAM or via the Altera MasterBlasterTM, ByteBlasterMVTM, or BitBlasterTM download cables. After an ACEX 1K device has been configured, it can be reconfigured in-circuit by resetting the device and loading new data. Because reconfiguration requires less than 40 ms, real-time changes can be made during system operation. ACEX 1K devices contain an interface that permits microprocessors to configure ACEX 1K devices serially or in parallel, and synchronously or asynchronously. The interface also enables microprocessors to treat an ACEX 1K device as memory and configure it by writing to a virtual memory location, simplifying device reconfiguration. Table 5. ACEX 1K Device Performance for Complex Designs Application LEs Used Performance Speed Grade Units -1 -2 -3 16-bit, 8-tap parallel finite impulse response (FIR) filter 597 192 156 116 MSPS 8-bit, 512-point Fast Fourier transform (FFT) function 1,854 23.4 28.7 38.9 µs 113 92 68 MHz a16450 universal asynchronous receiver/transmitter (UART) 342 36 28 20.5 MHz |
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