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CY8CKIT-059 数据表(PDF) 46 Page - Infineon Technologies AG |
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CY8CKIT-059 数据表(HTML) 46 Page - Infineon Technologies AG |
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46 / 140 page ![]() Document Number: 001-84932 Rev. *N Page 45 of 139 PSoC® 5LP: CY8C58LP Family Datasheet 7.3 UDB Array Description Figure 7-7 shows an example of a 16 UDB array. In addition to the array core, there are a DSI routing interfaces at the top and bottom of the array. Other interfaces that are not explicitly shown include the system interfaces for bus and clock distribution. The UDB array includes multiple horizontal and vertical routing channels each comprised of 96 wires. The wire connections to UDBs, at horizontal/vertical intersection and at the DSI interface are highly permutable providing efficient automatic routing in PSoC Creator. Additionally the routing allows wire by wire segmentation along the vertical and horizontal routing to further increase routing flexibility and capability. Figure 7-7. Digital System Interface Structure 7.3.1 UDB Array Programmable Resources Figure 7-8 shows an example of how functions are mapped into a bank of 16 UDBs. The primary programmable resources of the UDB are two PLDs, one datapath and one status/control register. These resources are allocated independently, because they have independently selectable clocks, and therefore unused blocks are allocated to other unrelated functions. An example of this is the 8-bit Timer in the upper left corner of the array. This function only requires one datapath in the UDB, and therefore the PLD resources may be allocated to another function. A function such as a Quadrature Decoder may require more PLD logic than one UDB can supply and in this case can utilize the unused PLD blocks in the 8-bit Timer UDB. Programmable resources in the UDB array are generally homogeneous so functions can be mapped to arbitrary boundaries in the array. Figure 7-8. Function Mapping Example in a Bank of UDBs 7.4 DSI Routing Interface Description The DSI routing interface is a continuation of the horizontal and vertical routing channels at the top and bottom of the UDB array core. It provides general purpose programmable routing between device peripherals, including UDBs, I/Os, analog peripherals, interrupts, DMA and fixed function peripherals. Figure 7-9 illustrates the concept of the digital system interconnect, which connects the UDB array routing matrix with other device peripherals. Any digital core or fixed function peripheral that needs programmable routing is connected to this interface. Signals in this category include: Interrupt requests from all digital peripherals in the system. DMA requests from all digital peripherals in the system. Digital peripheral data signals that need flexible routing to I/Os. Digital peripheral data signals that need connections to UDBs. Connections to the interrupt and DMA controllers. Connection to I/O pins. Connection to analog system digital signals. UDB UDB HV B UDB UDB HV A UDB UDB HV B HV A UDB UDB HV A UDB UDB HV B UDB UDB HV A HV B HV B HV A HV B HV A HV A HV B HV A HV B UDB UDB UDB UDB System Connections System Connections UDB UDB HV B UDB UDB HV A UDB UDB HV B HV A UDB HV A UDB HV B UDB HV A HV B UDB UDB UDB UDB UDB UDB UART Logic 12-Bit PWM I2C Slave 8-Bit SPI 12-Bit SPI Logic 8-Bit Timer 16-Bit PYRS UDB 8-Bit Timer Quadrature Decoder 16-Bit PWM |
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