主题中讨论的其他部件:Alp.
大家好,
为了验证余量,我们在同轴电缆的端口0和串行器输出端口1中使用了6dB衰减器。
在6dB处,反序列化器无法使用序列化器锁定。 请查找屏幕截图。

但我们在GUI中选中了"禁用远程EDID加载"框
之后,链路打开,并显示6dB衰减器上的反序列化器和更多值。

这是我的寄存器转储,具有6dB衰减器工作和非工作状态。
请指出这背后的原因是什么,为什么利润率会增加?
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大家好,
为了验证余量,我们在同轴电缆的端口0和串行器输出端口1中使用了6dB衰减器。
在6dB处,反序列化器无法使用序列化器锁定。 请查找屏幕截图。

但我们在GUI中选中了"禁用远程EDID加载"框
之后,链路打开,并显示6dB衰减器上的反序列化器和更多值。

这是我的寄存器转储,具有6dB衰减器工作和非工作状态。
请指出这背后的原因是什么,为什么利润率会增加?
[REGISTERS] Device = ALP Nano 1 - DS90UB949, Connector 1 Comments = "cid register dump with 6db att with issue condition" Date = 03/17/2022 Time = 18:02:52 Reg = 0,0x0000,0x18 Reg = 0,0x0001,0x00 Reg = 0,0x0003,0xDA Reg = 0,0x0004,0x80 Reg = 0,0x0005,0x00 Reg = 0,0x0006,0x00 Reg = 0,0x0007,0x00 Reg = 0,0x0008,0x00 Reg = 0,0x0009,0x00 Reg = 0,0x000A,0x00 Reg = 0,0x000B,0x00 Reg = 0,0x000C,0x00 Reg = 0,0x000D,0x25 Reg = 0,0x000E,0x33 Reg = 0,0x000F,0x03 Reg = 0,0x0010,0x00 Reg = 0,0x0011,0x00 Reg = 0,0x0012,0x00 Reg = 0,0x0013,0xA8 Reg = 0,0x0014,0x00 Reg = 0,0x0015,0x01 Reg = 0,0x0016,0x02 Reg = 0,0x0017,0x9E Reg = 0,0x0018,0x7F Reg = 0,0x0019,0x7F Reg = 0,0x001A,0x01 Reg = 0,0x001B,0x00 Reg = 0,0x001C,0x0E Reg = 0,0x001D,0x00 Reg = 0,0x001E,0x05 Reg = 0,0x001F,0xFB Reg = 0,0x0020,0x00 Reg = 0,0x0021,0x00 Reg = 0,0x0022,0x25 Reg = 0,0x0023,0x00 Reg = 0,0x0024,0x00 Reg = 0,0x0025,0x00 Reg = 0,0x0026,0x00 Reg = 0,0x0027,0x00 Reg = 0,0x0028,0x01 Reg = 0,0x0029,0x20 Reg = 0,0x002A,0x20 Reg = 0,0x002B,0xA0 Reg = 0,0x002C,0x00 Reg = 0,0x0030,0x00 Reg = 0,0x0031,0x00 Reg = 0,0x0032,0x00 Reg = 0,0x0033,0x00 Reg = 0,0x0034,0x00 Reg = 0,0x0035,0x00 Reg = 0,0x0036,0x00 Reg = 0,0x0037,0x00 Reg = 0,0x0038,0x00 Reg = 0,0x0039,0x00 Reg = 0,0x003A,0x00 Reg = 0,0x003B,0x00 Reg = 0,0x003C,0x00 Reg = 0,0x003D,0x00 Reg = 0,0x003E,0x00 Reg = 0,0x003F,0x00 Reg = 0,0x0040,0x14 Reg = 0,0x0041,0x5C Reg = 0,0x0042,0x00 Reg = 0,0x0043,0x00 Reg = 0,0x0044,0x80 Reg = 0,0x0045,0x00 Reg = 0,0x0046,0x00 Reg = 0,0x0047,0x00 Reg = 0,0x0048,0x01 Reg = 0,0x0049,0x68 Reg = 0,0x004A,0x01 Reg = 0,0x004B,0x00 Reg = 0,0x004C,0x00 Reg = 0,0x004D,0x00 Reg = 0,0x004E,0x00 Reg = 0,0x004F,0x00 Reg = 0,0x0050,0x97 Reg = 0,0x0051,0xA1 Reg = 0,0x0052,0x1E Reg = 0,0x0053,0x00 Reg = 0,0x0054,0x28 Reg = 0,0x0055,0x0C Reg = 0,0x0056,0x00 Reg = 0,0x0057,0x00 Reg = 0,0x0058,0x00 Reg = 0,0x0059,0x00 Reg = 0,0x005A,0x02 Reg = 0,0x005B,0x80 Reg = 0,0x005C,0x02 Reg = 0,0x005D,0x06 Reg = 0,0x005E,0x44 Reg = 0,0x005F,0x00 Reg = 0,0x0060,0x22 Reg = 0,0x0061,0x02 Reg = 0,0x0062,0x00 Reg = 0,0x0064,0x10 Reg = 0,0x0065,0x00 Reg = 0,0x0066,0x00 Reg = 0,0x0067,0x00 Reg = 0,0x0068,0x00 Reg = 0,0x0069,0x00 Reg = 0,0x006A,0x00 Reg = 0,0x006B,0x00 Reg = 0,0x006C,0x00 Reg = 0,0x0070,0x00 Reg = 0,0x0071,0x00 Reg = 0,0x0072,0x00 Reg = 0,0x0073,0x00 Reg = 0,0x0074,0x00 Reg = 0,0x0075,0x00 Reg = 0,0x0076,0x00 Reg = 0,0x0077,0x00 Reg = 0,0x0078,0x00 Reg = 0,0x0079,0x00 Reg = 0,0x007A,0x00 Reg = 0,0x007B,0x00 Reg = 0,0x007C,0x00 Reg = 0,0x007D,0x00 Reg = 0,0x0080,0x00 Reg = 0,0x0081,0x00 Reg = 0,0x0082,0x00 Reg = 0,0x0083,0x00 Reg = 0,0x0084,0x00 Reg = 0,0x0090,0x00 Reg = 0,0x0091,0x00 Reg = 0,0x0092,0x00 Reg = 0,0x0093,0x00 Reg = 0,0x0094,0x00 Reg = 0,0x0098,0x00 Reg = 0,0x0099,0x00 Reg = 0,0x009A,0x00 Reg = 0,0x009B,0x00 Reg = 0,0x009C,0x00 Reg = 0,0x009D,0x00 Reg = 0,0x009E,0x00 Reg = 0,0x009F,0x00 Reg = 0,0x00A0,0x00 Reg = 0,0x00A1,0x00 Reg = 0,0x00A2,0x00 Reg = 0,0x00A3,0x00 Reg = 0,0x00C0,0x00 Reg = 0,0x00C1,0x00 Reg = 0,0x00C2,0xA8 Reg = 0,0x00C3,0x00 Reg = 0,0x00C4,0x40 Reg = 0,0x00C5,0x38 Reg = 0,0x00C6,0x00 Reg = 0,0x00C7,0x00 Reg = 0,0x00C8,0xC0 Reg = 0,0x00C9,0x00 Reg = 0,0x00CA,0x00 Reg = 0,0x00CB,0x00 Reg = 0,0x00CC,0x00 Reg = 0,0x00CE,0xFF Reg = 0,0x00D0,0x00 Reg = 0,0x00D1,0x00 Reg = 0,0x00D2,0x00 Reg = 0,0x00D3,0x00 Reg = 0,0x00E0,0x00 Reg = 0,0x00E1,0x00 Reg = 0,0x00E2,0xA8 Reg = 0,0x00E3,0x00 Reg = 0,0x00E4,0x40 Reg = 0,0x00E5,0x38 Reg = 0,0x00E6,0x00 Reg = 0,0x00E7,0x00 Reg = 0,0x00F0,0x5F Reg = 0,0x00F1,0x55 Reg = 0,0x00F2,0x42 Reg = 0,0x00F3,0x39 Reg = 0,0x00F4,0x34 Reg = 0,0x00F5,0x39 Reg = 0,0x00F6,0x00 Reg = 0,0x00F8,0x00 Reg = 0,0x00F9,0x00
[REGISTERS] Device = ALP Nano 1 - DS90UB949, Connector 1 Comments = "cid-0db-att-working condition" Date = 03/17/2022 Time = 18:42:14 Reg = 0,0x0000,0x18 Reg = 0,0x0001,0x00 Reg = 0,0x0003,0xDA Reg = 0,0x0004,0x80 Reg = 0,0x0005,0x00 Reg = 0,0x0006,0x68 Reg = 0,0x0007,0xA0 Reg = 0,0x0008,0xB0 Reg = 0,0x0009,0x00 Reg = 0,0x000A,0x1A Reg = 0,0x000B,0x00 Reg = 0,0x000C,0x07 Reg = 0,0x000D,0x25 Reg = 0,0x000E,0x33 Reg = 0,0x000F,0x03 Reg = 0,0x0010,0x00 Reg = 0,0x0011,0x00 Reg = 0,0x0012,0x00 Reg = 0,0x0013,0xA8 Reg = 0,0x0014,0x00 Reg = 0,0x0015,0x01 Reg = 0,0x0016,0x02 Reg = 0,0x0017,0x9E Reg = 0,0x0018,0x7F Reg = 0,0x0019,0x7F Reg = 0,0x001A,0x01 Reg = 0,0x001B,0x00 Reg = 0,0x001C,0x0E Reg = 0,0x001D,0x00 Reg = 0,0x001E,0x05 Reg = 0,0x001F,0xF3 Reg = 0,0x0020,0x0B Reg = 0,0x0021,0x00 Reg = 0,0x0022,0x25 Reg = 0,0x0023,0x00 Reg = 0,0x0024,0x00 Reg = 0,0x0025,0x00 Reg = 0,0x0026,0x00 Reg = 0,0x0027,0x00 Reg = 0,0x0028,0x01 Reg = 0,0x0029,0x20 Reg = 0,0x002A,0x20 Reg = 0,0x002B,0xA0 Reg = 0,0x002C,0x00 Reg = 0,0x0030,0x00 Reg = 0,0x0031,0x00 Reg = 0,0x0032,0x00 Reg = 0,0x0033,0x00 Reg = 0,0x0034,0x00 Reg = 0,0x0035,0x00 Reg = 0,0x0036,0x00 Reg = 0,0x0037,0x00 Reg = 0,0x0038,0x00 Reg = 0,0x0039,0x00 Reg = 0,0x003A,0x00 Reg = 0,0x003B,0x00 Reg = 0,0x003C,0x00 Reg = 0,0x003D,0x00 Reg = 0,0x003E,0x00 Reg = 0,0x003F,0x00 Reg = 0,0x0040,0x14 Reg = 0,0x0041,0x49 Reg = 0,0x0042,0x00 Reg = 0,0x0043,0x00 Reg = 0,0x0044,0x80 Reg = 0,0x0045,0x00 Reg = 0,0x0046,0x00 Reg = 0,0x0047,0x00 Reg = 0,0x0048,0x01 Reg = 0,0x0049,0x68 Reg = 0,0x004A,0x01 Reg = 0,0x004B,0x56 Reg = 0,0x004C,0x06 Reg = 0,0x004D,0x00 Reg = 0,0x004E,0x00 Reg = 0,0x004F,0x00 Reg = 0,0x0050,0x97 Reg = 0,0x0051,0xA1 Reg = 0,0x0052,0x1E Reg = 0,0x0053,0x00 Reg = 0,0x0054,0x28 Reg = 0,0x0055,0x0C Reg = 0,0x0056,0x00 Reg = 0,0x0057,0x00 Reg = 0,0x0058,0x00 Reg = 0,0x0059,0x00 Reg = 0,0x005A,0xCD Reg = 0,0x005B,0x80 Reg = 0,0x005C,0x02 Reg = 0,0x005D,0x06 Reg = 0,0x005E,0x44 Reg = 0,0x005F,0x8D Reg = 0,0x0060,0x22 Reg = 0,0x0061,0x02 Reg = 0,0x0062,0x00 Reg = 0,0x0064,0x10 Reg = 0,0x0065,0x00 Reg = 0,0x0066,0x00 Reg = 0,0x0067,0x00 Reg = 0,0x0068,0x00 Reg = 0,0x0069,0x00 Reg = 0,0x006A,0x00 Reg = 0,0x006B,0x00 Reg = 0,0x006C,0x00 Reg = 0,0x0070,0x00 Reg = 0,0x0071,0x00 Reg = 0,0x0072,0x00 Reg = 0,0x0073,0x00 Reg = 0,0x0074,0x00 Reg = 0,0x0075,0x00 Reg = 0,0x0076,0x00 Reg = 0,0x0077,0x00 Reg = 0,0x0078,0x00 Reg = 0,0x0079,0x00 Reg = 0,0x007A,0x00 Reg = 0,0x007B,0x00 Reg = 0,0x007C,0x00 Reg = 0,0x007D,0x00 Reg = 0,0x0080,0x00 Reg = 0,0x0081,0x00 Reg = 0,0x0082,0x00 Reg = 0,0x0083,0x00 Reg = 0,0x0084,0x00 Reg = 0,0x0090,0x00 Reg = 0,0x0091,0x00 Reg = 0,0x0092,0x00 Reg = 0,0x0093,0x00 Reg = 0,0x0094,0x00 Reg = 0,0x0098,0x00 Reg = 0,0x0099,0x00 Reg = 0,0x009A,0x00 Reg = 0,0x009B,0x00 Reg = 0,0x009C,0x00 Reg = 0,0x009D,0x00 Reg = 0,0x009E,0x00 Reg = 0,0x009F,0x00 Reg = 0,0x00A0,0x00 Reg = 0,0x00A1,0x00 Reg = 0,0x00A2,0x00 Reg = 0,0x00A3,0x00 Reg = 0,0x00C0,0x00 Reg = 0,0x00C1,0x00 Reg = 0,0x00C2,0xA8 Reg = 0,0x00C3,0x00 Reg = 0,0x00C4,0x68 Reg = 0,0x00C5,0x38 Reg = 0,0x00C6,0x00 Reg = 0,0x00C7,0x00 Reg = 0,0x00C8,0xC0 Reg = 0,0x00C9,0x00 Reg = 0,0x00CA,0x00 Reg = 0,0x00CB,0x00 Reg = 0,0x00CC,0x00 Reg = 0,0x00CE,0xFF Reg = 0,0x00D0,0x00 Reg = 0,0x00D1,0x00 Reg = 0,0x00D2,0x00 Reg = 0,0x00D3,0x00 Reg = 0,0x00E0,0x00 Reg = 0,0x00E1,0x00 Reg = 0,0x00E2,0xA8 Reg = 0,0x00E3,0x00 Reg = 0,0x00E4,0x68 Reg = 0,0x00E5,0x38 Reg = 0,0x00E6,0x00 Reg = 0,0x00E7,0x00 Reg = 0,0x00F0,0x5F Reg = 0,0x00F1,0x55 Reg = 0,0x00F2,0x42 Reg = 0,0x00F3,0x39 Reg = 0,0x00F4,0x34 Reg = 0,0x00F5,0x39 Reg = 0,0x00F6,0x00 Reg = 0,0x00F8,0x00 Reg = 0,0x00F9,0x00
# 6dB attenuator - "Disable EDID_checked condition" [REGISTERS] Device = ALP Nano 1 - DS90UB949, Connector 1 Comments = "cid-6db-att-working condition" Date = 03/17/2022 Time = 18:55:18 Reg = 0,0x0000,0x18 Reg = 0,0x0001,0x00 Reg = 0,0x0003,0xDA Reg = 0,0x0004,0x80 Reg = 0,0x0005,0x00 Reg = 0,0x0006,0x68 Reg = 0,0x0007,0x00 Reg = 0,0x0008,0x00 Reg = 0,0x0009,0x00 Reg = 0,0x000A,0x0E Reg = 0,0x000B,0x00 Reg = 0,0x000C,0x07 Reg = 0,0x000D,0x25 Reg = 0,0x000E,0x33 Reg = 0,0x000F,0x03 Reg = 0,0x0010,0x00 Reg = 0,0x0011,0x00 Reg = 0,0x0012,0x00 Reg = 0,0x0013,0xA8 Reg = 0,0x0014,0x00 Reg = 0,0x0015,0x01 Reg = 0,0x0016,0x02 Reg = 0,0x0017,0x9E Reg = 0,0x0018,0x7F Reg = 0,0x0019,0x7F Reg = 0,0x001A,0x01 Reg = 0,0x001B,0x00 Reg = 0,0x001C,0x0E Reg = 0,0x001D,0x00 Reg = 0,0x001E,0x05 Reg = 0,0x001F,0xF3 Reg = 0,0x0020,0x0B Reg = 0,0x0021,0x00 Reg = 0,0x0022,0x25 Reg = 0,0x0023,0x00 Reg = 0,0x0024,0x00 Reg = 0,0x0025,0x00 Reg = 0,0x0026,0x00 Reg = 0,0x0027,0x00 Reg = 0,0x0028,0x01 Reg = 0,0x0029,0x20 Reg = 0,0x002A,0x20 Reg = 0,0x002B,0xA0 Reg = 0,0x002C,0x00 Reg = 0,0x0030,0x00 Reg = 0,0x0031,0x00 Reg = 0,0x0032,0x00 Reg = 0,0x0033,0x00 Reg = 0,0x0034,0x00 Reg = 0,0x0035,0x00 Reg = 0,0x0036,0x00 Reg = 0,0x0037,0x00 Reg = 0,0x0038,0x00 Reg = 0,0x0039,0x00 Reg = 0,0x003A,0x00 Reg = 0,0x003B,0x00 Reg = 0,0x003C,0x00 Reg = 0,0x003D,0x00 Reg = 0,0x003E,0x00 Reg = 0,0x003F,0x00 Reg = 0,0x0040,0x14 Reg = 0,0x0041,0x4E Reg = 0,0x0042,0x00 Reg = 0,0x0043,0x00 Reg = 0,0x0044,0x80 Reg = 0,0x0045,0x00 Reg = 0,0x0046,0x00 Reg = 0,0x0047,0x00 Reg = 0,0x0048,0x01 Reg = 0,0x0049,0x68 Reg = 0,0x004A,0x01 Reg = 0,0x004B,0x56 Reg = 0,0x004C,0x06 Reg = 0,0x004D,0x00 Reg = 0,0x004E,0x00 Reg = 0,0x004F,0x00 Reg = 0,0x0050,0x97 Reg = 0,0x0051,0xA1 Reg = 0,0x0052,0x1E Reg = 0,0x0053,0x00 Reg = 0,0x0054,0x20 Reg = 0,0x0055,0x0C Reg = 0,0x0056,0x00 Reg = 0,0x0057,0x00 Reg = 0,0x0058,0x00 Reg = 0,0x0059,0x00 Reg = 0,0x005A,0xCD Reg = 0,0x005B,0x00 Reg = 0,0x005C,0x02 Reg = 0,0x005D,0x06 Reg = 0,0x005E,0x44 Reg = 0,0x005F,0x8D Reg = 0,0x0060,0x22 Reg = 0,0x0061,0x02 Reg = 0,0x0062,0x00 Reg = 0,0x0064,0x10 Reg = 0,0x0065,0x00 Reg = 0,0x0066,0x00 Reg = 0,0x0067,0x00 Reg = 0,0x0068,0x00 Reg = 0,0x0069,0x00 Reg = 0,0x006A,0x00 Reg = 0,0x006B,0x00 Reg = 0,0x006C,0x00 Reg = 0,0x0070,0x00 Reg = 0,0x0071,0x00 Reg = 0,0x0072,0x00 Reg = 0,0x0073,0x00 Reg = 0,0x0074,0x00 Reg = 0,0x0075,0x00 Reg = 0,0x0076,0x00 Reg = 0,0x0077,0x00 Reg = 0,0x0078,0x00 Reg = 0,0x0079,0x00 Reg = 0,0x007A,0x00 Reg = 0,0x007B,0x00 Reg = 0,0x007C,0x00 Reg = 0,0x007D,0x00 Reg = 0,0x0080,0x00 Reg = 0,0x0081,0x00 Reg = 0,0x0082,0x00 Reg = 0,0x0083,0x00 Reg = 0,0x0084,0x00 Reg = 0,0x0090,0x00 Reg = 0,0x0091,0x00 Reg = 0,0x0092,0x00 Reg = 0,0x0093,0x00 Reg = 0,0x0094,0x00 Reg = 0,0x0098,0x00 Reg = 0,0x0099,0x00 Reg = 0,0x009A,0x00 Reg = 0,0x009B,0x00 Reg = 0,0x009C,0x00 Reg = 0,0x009D,0x00 Reg = 0,0x009E,0x00 Reg = 0,0x009F,0x00 Reg = 0,0x00A0,0x00 Reg = 0,0x00A1,0x00 Reg = 0,0x00A2,0x00 Reg = 0,0x00A3,0x00 Reg = 0,0x00C0,0x05 Reg = 0,0x00C1,0x00 Reg = 0,0x00C2,0x88 Reg = 0,0x00C3,0x00 Reg = 0,0x00C4,0x28 Reg = 0,0x00C5,0x38 Reg = 0,0x00C6,0x00 Reg = 0,0x00C7,0x00 Reg = 0,0x00C8,0xC0 Reg = 0,0x00C9,0x00 Reg = 0,0x00CA,0x00 Reg = 0,0x00CB,0x00 Reg = 0,0x00CC,0x00 Reg = 0,0x00CE,0xFF Reg = 0,0x00D0,0x10 Reg = 0,0x00D1,0x00 Reg = 0,0x00D2,0x00 Reg = 0,0x00D3,0x00 Reg = 0,0x00E0,0x05 Reg = 0,0x00E1,0x00 Reg = 0,0x00E2,0x88 Reg = 0,0x00E3,0x00 Reg = 0,0x00E4,0x28 Reg = 0,0x00E5,0x38 Reg = 0,0x00E6,0x00 Reg = 0,0x00E7,0x00 Reg = 0,0x00F0,0x5F Reg = 0,0x00F1,0x55 Reg = 0,0x00F2,0x42 Reg = 0,0x00F3,0x39 Reg = 0,0x00F4,0x34 Reg = 0,0x00F5,0x39 Reg = 0,0x00F6,0x00 Reg = 0,0x00F8,0x00 Reg = 0,0x00F9,0x00
你好,Selva,
在默认情况下,949是否与同轴电缆或双绞线绑定? 我正在检查,但我非常怀疑禁用远程EDID会影响同轴电缆/STP绑定模式。 您是否可以在检查/取消检查时捕获I2C日志以查看其是否发生变化?
我想知道当它等待远程EDID初始化而不报告锁定时,这是否会中断反信道/I2C通信。 您能否同时提供DES reg转储以查看它是否显示为已锁定?
此致,
Logan
您好,Logan,
在默认情况下,949是否与同轴电缆或双绞线绑定? 我正在检查,但我非常怀疑禁用远程EDID会影响同轴电缆/STP绑定模式。 您是否可以在检查/取消检查时捕获I2C日志以查看其是否发生变化?
默认模式为同轴:请参阅对齐

已发布带有/不带禁用EDID寄存器转储的串行器端。 (检查/取消检查)

我想知道当它等待远程EDID初始化而不报告锁定时,这是否会中断反信道/I2C通信。
是的,我也是这样想的。 我想这只是在发生。
您能否同时提供DES reg转储以查看它是否已锁定?
我可以在锁定条件下共享DES reg转储。 让我检查一下。
谢谢!
Selva s
您好,Logan,
我的理解是在6dB后的反向通道受影响,因此EDID检查功能通过错误状态。由于该错误状态,像素时钟不会由串行器释放。
如果我们禁用了EDID,则解串器和CDR锁定接收的像素时钟将发生,即使其大小为6dB或更高。
然后正在进行初始化。 请与evkit核对,并确认是否相同?
注意:禁用EDID也会影响到STP的同轴位。
我不知道为什么会发生这种情况,
在947中,串行器没有这种检查,因此它对我们的作用超过12dB衰减,没有任何问题。
谢谢!
塞尔瓦
您好,Selva,
您是否有一个逻辑分析器来探测I2C总线以查看在禁用EDID复选框操作期间实际写入的寄存器? 如果直接写入同轴电缆/STP模式寄存器作为该复选框的影响,我会感到非常惊讶。
最终,我认为整个6dB调查与此复选框没有真正的关联。 例如,尝试移除6dB衰减...复选框是否仍会影响ALP中锁定/识别DES的能力?
长而短,请保持选中远程EDID加载,因为您的应用程序中未使用此功能。
此致,
Logan
请在EDID禁用和启用条件期间查找序列化器和反序列化器活动,Excel包含序列化器总线活动。 串行器地址0Ce2e.ti.com/.../949ser_5F00_no_5F00_edid_5F00_disable.txte2e.ti.com/.../949ser_5F00_edid_5F00_disable.txte2e.ti.com/.../948des_5F00_edid_5F00_disable.txte2e.ti.com/.../948des_5F00_no_5F00_edid_5F00_disable.txt
您好,Selva,
我看到现在的情况...从较高的层面来看,您看到不同利润结果的原因在于同轴电缆与STP模式。
它与EDID强制本身的选择无关,但当您点击"应用设置"时,所发生的情况是该选项卡中的其他设置将覆盖同轴带选择。 一天结束时,您只需将该部件固定到正确的模式,或直接使用寄存器更新设置。
即使您未取消选中"Disable remote EDID"(禁用远程EDID),也按"Apply settings"(应用设置)时,同轴电缆模式仍将更改为STP模式。
此致,
Logan
e2e.ti.com/.../2185.Register_5F00_dump_5F00_comparision.xlsx
您好,Logan,
感谢您努力从日志中查找此信息。 因此,与同轴电缆相比,我对STP模式的理解使链路的利润更好?
那么,让链路变得更好的原因是什么? 如您所知,与同轴模式相比,振幅也较小。 您还有其他建议或想法吗?
寄存器转储比较显示,21个寄存器由于“应用设置”而受到影响,因此哪一个寄存器使我的链接更好。 我不确定仅STP就能改善我的链路。

您能否进行交叉核对?
解串器Reg比较:8个寄存器在解串器端受到影响

谢谢
Selva S
您好,Logan,
将带式电阻器更改为STP后,链路预算高达12dB,但由于一侧STP和另一侧同轴电缆配置,无法显示。 请参阅所连接的配置。
e2e.ti.com/.../949ser_5F00_STP_5F00_12db_5F00_edid_5F00_disable.txte2e.ti.com/.../949ser_5F00_STP_5F00_12db_5F00_no_5F00_edid_5F00_disable.txte2e.ti.com/.../948des_5F00_STP-_5F00_12db_5F00_edid_5F00_disable.txte2e.ti.com/.../948des_5F00_STP_5F00_12db_5F00_no_5F00_edid_5F00_disable.txt
您好,Logan,
我正在澄清我的意见,以便更好地理解。
949和947在印刷电路板中具有相同的插入损耗和返回损耗。
电缆损耗可忽略不计。
除PCB损耗和电缆损耗外,电缆外部添加的947至948链路最大为12dB。
949和948链路最多只存在6 dB。 我们最初尝试使用12dB,但链路未建立。
我们慢慢地降低了该值,我们看到墨水连接小于或等于6dB
这里的问题是这两个都在同轴电缆中,为什么与949的链路的利润较小?
谢谢!
塞尔瓦
您好,Selva,
</s>403.7873万IL/RL预算:
我们测量了IL / RL电缆+板+解串器侧,它也在限制范围内。
[/引述]请提供电缆/板/印刷电路板的完整插入/返回损耗结果(带有或不带有增加的6dB损耗)。 我们的信道规格不是简单的"12db",而是实际取决于频率。 如果您不是以全1.84GHz运行,则其电缆预算将低于-12dB (例如-8.5dB @ 1.00GHz)。
如果您提供了I/R损耗数据,我们可以将其与信道要求进行比较。
此致,
Logan
你好,Logan
请找到949和948的IL /RL。 从串行器端的交流电压盖到反串行器端的交流电压盖,包括印刷电路板跟踪/连接器/电缆等
| S11 / S22 DOUT 0- 串行器(SMA -盖垫-跟踪->连接器)-同轴->(连接器-跟踪-盖垫- SMA)解串器 | ||||||||
| 频率 | 5MHz | 10MHz | 20MHz | 100MHz | 500MHz | 1GHz | 1.5GHz | 1.84GHz |
| 测量值-串行器- S11 | -16.23 | -17.7 | -20.69 | -25.7 | -23.55 | -11.76 | -13.5 | -13.6 |
| 测量值为-解串器- S22 | -17.505 | -18.8 | -23.5 | -30.1 | -25.84 | -12.75 | -24.5 | -16.99 |
| Dout 1 - 串行器(SMA -盖垫-跟踪->连接器)-同轴电缆->(连接器-跟踪-盖垫- SMA)解串器 | ||||||||
| 频率 | 5MHz | 10MHz | 20MHz | 100MHz | 500MHz | 1GHz | 1.5GHz | 1.84GHz |
| 测量值-串行器- S11 | -16.1 | -17.55 | -20.69 | -25.9 | -30.1 | -11.43 | -15.62 | -10.2 |
| 测量值为-解串器- S22 | -17.32 | -18.58 | -23.66 | -29.23 | -22.82 | -11.59 | -23.6 | -10.78 |
| Dout 0- 串行器(SMA -盖垫-跟踪->连接器)-同轴->(连接器-跟踪-盖垫- SMA)解串器 | ||||||||
| 频率 | 5MHz | 10MHz | 20MHz | 100MHz | 500MHz | 1GHz | 1.5GHz | 1.84GHz |
| 测量位置-串行器至解串器 - S12 | -0.0618 | -0.108 | -0.214 | -0.689 | -1.806 | -3.063 | -4.22 | -5.089 |
| Dout 1 - 串行器(SMA -盖垫-跟踪->连接器)-同轴电缆->(连接器-跟踪-盖垫- SMA)解串器 | ||||||||
| 频率 | 5MHz | 10MHz | 20MHz | 100MHz | 500MHz | 1GHz | 1.5GHz | 1.84GHz |
| 测量值为-串行器至解串器-S12 | -0.06 | -0.118 | -0.233 | -0.731 | -0.183 | -3.268 | -4.13 | -5.594 |
插入损耗< 6dB。 回波损耗几乎相似。 我没有发现任何偏离要求的情况。
谢谢!
Selva S
您好,Selva,
您还需要获取 包含6dB的数据,以了解总损失是什么(可能它影响的程度超过附加适配器/连接器等仅影响6dB),因为这是您看到问题的地方。
此外,如前所述,12dB实际上仅在1.8GHz时,在较低频率时会更低。 例如,1GHz需要-8.5dB (仅电缆)。 总之,当您添加6dB损耗时,可能违反了同轴特定信道规范(低于STP模式)。 如果在947/949之间有不同的结果,则可能是特定于设备的差异,正如Casey在另一线程中指出的那样。
我们的完整渠道规范仅限于NDA,我建议联系您当地的FAE,他们可以帮助您访问该信息。
此致,
Logan