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TNETE100 数据表(PDF) 9 Page - Texas Instruments |
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TNETE100 数据表(HTML) 9 Page - Texas Instruments |
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9 / 26 page ![]() ThunderLAN ™ TNETE100 PCI ETHERNET ™ CONTROLLER SINGLE-CHIP 10 BASE-T WITH MII FOR 100 BASE-T/100VG-AnyLAN ™ SPWS017B – APRIL 1995 – REVISED AUGUST 1996 9 POST OFFICE BOX 1443 • HOUSTON, TEXAS 77251–1443 Pin Functions (Continued) PIN TYPE† DESCRIPTION NAME NO. TYPE† DESCRIPTION POWER VDDI 6, 14, 34, 48, 122, 136, 142 PWR PCI VDD pins. VDDI pins provide power for the PCI I/O pin drivers. Connect VDDI pins to a 5-V power supply when using 5-V signals on the PCI bus. Connect VDDI pins to a 3-V power supply when using 3-V signals on the PCI bus VDDL 22, 37, 58, 70, 79, 84, 94, 130 PWR Logic VDD pins (5 V). VDDL pins provide power for internal TNETE100 logic, and they should always be connected to a 5-V power supply. VDDOSC 115 PWR Analog power pin. VDDOSC is the 5-V power for the crystal oscillator circuit. VDDR 104 107 PWR Analog power pin. VDDR is the 5-V power for the receiver circuitry. VDDT 96 PWR Analog power pin. VDDT is the 5-V power for the transmitter circuitry. VDDVCO 117 PWR Analog power pin. VDDVCO is the 5-V power for the voltage controller oscillator (VCO) and filter input. VSSI 3, 10, 26, 31, 40, 52, 67, 88, 127, 139 PWR PCI I / O ground pins VSSL 18, 44, 63, 75, 92, 133 PWR Logic ground pins VSSOSC 112 PWR Analog power pin. Ground for crystal oscillator circuit VSSR 102 110 PWR Analog power pin. Ground for receiver circuitry VSST 101 PWR Analog power pin. Ground for transmitter circuitry VSSVCO 119 PWR Analog power pin. Ground for VCO and filter input † PWR = power architecture The major blocks of the TNETE100 include the PCI interface (PCIIF), protocol handler (PH), physical layer (PHY), FIFO pointer registers (FPREGS), FIFO SRAM (FSRAM), and a test-access port (TAP). The functionality of these blocks is described in the following sections. PCI interface (PCIIF) The TNETE100 PCIIF contains a byte-aligning DMA controller that allows frames to be fragmented into any byte length and transferred to any byte address while supporting 32-bit data streaming. For multipriority networks, it can provide multiple data channels, each with separate lists, commands, and status. Data for the channels is passed to and from the PH by way of circular buffer FIFOs in the SRAM, controlled through FIFO registers. The configuration EEPROM interface, BIOS ROM /LED driver interface, configuration and I / O memory registers, and DMA controller are subblocks of the PCIIF. The features of these subblocks are described in the following subsections. configuration EEPROM interface (CEI) The CEI provides a means for autoconfiguration of the PCI configuration registers. Certain registers in the PCI configuration space can be loaded using the CEI. Autoconfiguration allows builders of TNETE100-based systems to customize the contents of these registers to identify their own system, rather than to use the TI defaults. The EEPROM is read at power up and can then be read from, and written to, under program control. |
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