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ADIN1111CCPZ-R7 数据表(PDF) 23 Page - Analog Devices |
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ADIN1111CCPZ-R7 数据表(HTML) 23 Page - Analog Devices |
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23 / 109 page ![]() Data Sheet ADIN1111 ON-CHIP DIAGNOSTICS analog.com Rev. A | 23 of 109 TEST MODES The ADIN1111 provides several test modes for each PHY as descri- bed in Subclause 146.5.2 from the IEEE 802.3cg-2019 standard that allows testing of the transmitter waveform, distortion, jitter, and droop. These test modes change only the data symbols provided to the transmitter circuitry and do not alter the electrical and jitter characteristics of the transmitter and receiver from the normal operation. Additionally, the ADIN1111 supports the transmit disable mode as described in Subclause 45.2.1.186a.2. Table 18. ADIN1111 Test Modes Summary Test Mode Description PMA Test Modes (Subclause 146.5.2) Test Mode 1 Transmitter output voltage and timing jitter test mode. When this mode is selected, the ADIN1111 repeatedly transmits the data symbol sequence (+1, –1). Test Mode 2 Transmitter output droop test mode. In this mode, the ADIN1111 transmits ten +1 symbols followed by ten −1 symbols. This sequence is repeated indefinitely. Test Mode 3 Normal operation in idle mode test mode. In this mode, the ADIN1111 transmits as in a nontest opera- tion and in the leader data mode with the data set to normal interframe idle signals. Transmit Disable Mode (Subclause 45.2.1.186a.2) Both transmit and receive paths act like in normal operation mode, but only transmit 0 symbols. This mode can be used to measure the MDI return loss specified in Subclause 146.8.3. Enable the PMA Test Mode 1 to Test Mode 3 Each of the ADIN1111 PHYs can be configured in one of the PMA test modes (Test Mode 1 to Test Mode 3) using the following procedure: 1. Enter software power-down mode by writing a 1 to the CRSM_SFT_PD bit in the software power-down control register (CRSM_SFT_PD_CNTRL). 2. Check that the ADIN1111 has entered software power-down mode by reading the CRSM_SFT_PD_RDY bit in the system status register (CRSM_STAT). 3. Disable autonegotiation by writing a 0 to the AN_EN bit in the BASE-T1 autonegotiation control register (AN_CONTROL). 4. Set autonegotiation forced mode by writing a 1 to the AN_FRC_MODE_EN bit in the autonegotiation force mode ena- ble register (AN_FRC_MODE_EN). 5. Select the desired test mode by writing the appropriate value to the B10L_TX_TEST_MODE bits in the 10BASE-T1L test mode control register (B10L_TEST_MODE_CNTRL). 6. Exit software power-down mode by writing 0 to the CRSM_SFT_PD bit in the software power-down control register (CRSM_SFT_PD_CNTRL). Table 19. PMA Test Modes Configuration PMA Test Mode B10L_TX_TEST_MODE, Bits[15:13] (Binary) Test Mode 1 001 Test Mode 2 010 Test Mode 3 011 Enable Transmit Disable Mode Each of the ADIN1111 PHYs can be configured in transmit disable mode using the following procedure: 1. Enter software power-down mode by writing a 1 to the CRSM_SFT_PD bit in the software power-down control register (CRSM_SFT_PD_CNTRL). 2. Check that the ADIN1111 has entered the software power-down mode by reading the CRSM_SFT_PD_RDY bit in the system status register (CRSM_STAT). 3. Disable autonegotiation by writing a 0 to the AN_EN bit in the BASE-T1 autonegotiation control register (AN_CONTROL). 4. Set autonegotiation forced mode by writing a 1 to the AN_FRC_MODE_EN bit in the autonegotiation force mode ena- ble register (AN_FRC_MODE_EN). 5. Set the transmit disable mode by writing a 1 to the B10L_TX_DIS_MODE_EN bit in the 10BASE-T1L PMA control register (B10L_PMA_CNTRL). 6. Exit software power-down mode by writing 0 to the CRSM_SFT_PD bit in the software power-down control register (CRSM_SFT_PD_CNTRL). TIME DOMAIN REFLECTOMETRY (TDR) Given that the 10BASE-T1L compliant PHY enables communication over long cables, debugging a faulty cable can become costly and difficult without the right tools. To help with this, Analog Devices 10BASE-T1L products provide a TDR engine that enables cable fault detection, distance to fault, and cable length estimation. The diagnostics solution is the combination of a highly accurate on-chip TDR engine and a set of algorithms that run on a host microcontroller, allowing maximum flexibility for a wide variety of cables and more advanced cable diagnostic capabilities. Figure 15. ADIN1111 TDR Engine |
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