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LPC2921 Folha de dados(PDF) 9 Page - NXP Semiconductors |
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LPC2921 Folha de dados(HTML) 9 Page - NXP Semiconductors |
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9 / 81 page ![]() LPC2921_2923_2925_0 © NXP B.V. 2008. All rights reserved. Preliminary data sheet Rev. 00.01 — 24 October 2008 9 of 81 NXP Semiconductors LPC2921/2923/2925 ARM9 microcontroller with CAN and LIN [1] Bidirectional Pad; Analog Port; Plain Input; 3state Output; Slew Rate Control; 5V Tolerant; TTL with Hysteresis; Programmable Pull Up / Pull Down / Repeater. [2] USB pad, <tbd>. [3] Analog Pad; Analog Input Output. [4] Analog I/O pad, <tbd>. 6. Functional description 6.1 Architectural overview The LPC2921/2923/2925 consists of: • An ARM968E-S processor with real-time emulation support • An AMBA multilayer Advanced High-performance Bus (AHB) for interfacing to the on-chip memory controllers • Two DTL buses (an universal NXP interface) for interfacing to the interrupt controller and the Power, Clock and Reset Control cluster (also called subsystem). • Three ARM Peripheral Buses (APB - a compatible super set of ARM's AMBA advanced peripheral bus) for connection to on-chip peripherals clustered in subsystems. • One ARM Peripheral Bus for event router and system control. The LPC2921/2923/2925 configures the ARM968E-S processor in little-endian byte order. All peripherals run at their own clock frequency to optimize the total system power consumption. The AHB2APB bridge used in the subsystems contains a write-ahead buffer one transaction deep. This implies that when the ARM968E-S issues a buffered write action to a register located on the APB side of the bridge, it continues even though the actual write may not yet have taken place. Completion of a second write to the same subsystem will not be executed until the first write is finished. 6.2 ARM968E-S processor The ARM968E-S is a general purpose 32-bit RISC processor, which offers high performance and very low power consumption. The ARM architecture is based on Reduced Instruction Set Computer (RISC) principles, and the instruction set and related decode mechanism are much simpler than those of microprogrammed Complex Instruction Set Computers (CISC). This simplicity results in a high instruction throughput and impressive real-time interrupt response from a small and cost-effective controller core. Amongst the most compelling features of the ARM968E-S are: • Separate directly connected instruction and data Tightly Coupled Memory (TCM) interfaces P0[23]/IN2[7]/ PMAT2[5]/A19 99[4] GPIO 0, pin 23 ADC2 IN7 PWM2 MAT5 - TDI 100[1] IEEE 1149.1 data in, pulled up internally Table 3. LQFP100 pin assignment …continued Pin name Pin Description Function 0 (default) Function 1 Function 2 Function 3 |
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