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ZLR16300P2801G Datasheet(PDF) 9 Page - Zilog, Inc. |
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ZLR16300P2801G Datasheet(HTML) 9 Page - Zilog, Inc. |
9 / 94 page CrimzonTMZLR16300 Product Specification PS021413-1205 General Description 2 • Mask options – Port 0: 0–3 pull-ups – Port 0: 4–7 pull-ups – Port 2: 0–7 pull-ups – Port 3: 0–3 pull-ups – Watch-Dog Timer at Power On Reset General Description The CrimzonTM ZLR16300 is a ROM-based member of the MCU family of general purpose microcontrollers. With 1KB to 16KB of program memory and 237B of general purpose RAM, ZiLOG®’s CMOS microcontrollers offer fast-executing, efficient use of memory, sophisticated interrupts, input/output bit manipulation capabilities, automated pulse generation/reception, and internal key-scan pull-up transistors. The CrimzonTM ZLR16300 architecture (Figures 1 and 2) is based on ZiLOG®’s 8-bit microcontroller core with an Expanded Register File allowing access to regis- ter-mapped peripherals, input/output (I/O) circuits, and powerful counter/timer cir- cuitry. The Z8® core offers a flexible I/O scheme, an efficient register and address space structure, and a number of ancillary features that are useful in many con- sumer, automotive, computer peripheral, and battery-operated hand-held applica- tions. There are three basic address spaces available to support a wide range of config- urations: Program Memory, Register File and Expanded Register File. The regis- ter file is composed of 256B of RAM. It includes three I/O port registers, 16 control and status registers, and 237 general-purpose registers. The Expanded Register File consists of two additional register groups (F and D). To unburden the program from coping with such real-time problems as generating complex waveforms or receiving and demodulating complex waveform/pulses, the CrimzonTM ZLR16300 offers a new intelligent counter/timer architecture with 8-bit and 16-bit counter/timers (see Figure 2). Also included are a large number of user-selectable modes and two on-board comparators to process analog signals with separate reference voltages. Power connections use the conventional descriptions listed in Table 3. Table 3. Power Connections Connection Circuit Device Power VCC VDD Ground GND VSS |
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