1
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So when we're configuring an IP, so this is an IP that we have.

2
00:00:04,590 --> 00:00:09,300
So when we configure it, we see something called as an email configuration, right?

3
00:00:09,660 --> 00:00:14,910
So we already did ask this about the reliable ISP configuration block configuration.

4
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OK.

5
00:00:16,050 --> 00:00:20,670
But something which we do not focus is on it, my configuration.

6
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So we'll just go through an email configuration.

7
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OK, so what email means?

8
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And then if you just go ahead to one of the things that you could see, the other option that you have

9
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is an EMI, right?

10
00:00:32,850 --> 00:00:39,240
So we'll understand some of the fundamental reality to my e-mail and an actual example of how we use

11
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an e-mail could be covered in the next section when we discuss topics, right?

12
00:00:45,900 --> 00:00:49,040
So let's consider this simple blocked item, right?

13
00:00:49,050 --> 00:00:50,970
So you have a zinc processing system?

14
00:00:51,360 --> 00:00:54,840
OK, and then to easily interface and hide it.

15
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OK.

16
00:00:55,680 --> 00:01:05,000
So it may be a simple l'église or switches or you have and it are you UI or A.P. I interface, OK,

17
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you have a set of both APIs, which are provided with zinc processing system, right?

18
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So there's that by default, prison with an architecture.

19
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So you have a processing systems.

20
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OK.

21
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And then you have a set up of things that are library, which basically control the interfacing with

22
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the entire right now.

23
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You could see then we have a multiple number of and peripheral IP that basically allow us to use a multiple

24
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hard which vexing processing system and that we think processing system could be communicating within

25
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hard, right?

26
00:01:39,480 --> 00:01:41,970
But we could not afford to add.

27
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A dedicated pin for each and every resource and then connected to dedicated marathon, right, because

28
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each hardware will have a different configuration, different amount of hardware been pressing and connected

29
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to the crossing system.

30
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So what we do is instead of connecting each and every signal off of peripheral IP to an dedicated heart

31
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of it, we provide a multiplex input and output block in between the hardware and the zinc processing

32
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IP state.

33
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So you have an hardware, which is an output, but they we want to connect the signal granting processing

34
00:02:19,210 --> 00:02:26,050
system and then communication and communication has been handled by this Beidou satellite, which are

35
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dedicated to specific resources.

36
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So we do not provide each and every book that are present on an IP to an Heidemarie so sporadic bombing.

37
00:02:37,000 --> 00:02:40,280
We will be configuring which group to be connected to which.

38
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So we have a limited set of an email which are configurable, right?

39
00:02:45,250 --> 00:02:51,350
So you could decide which specific IP to be connected to and hydrographic.

40
00:02:51,400 --> 00:02:55,000
And this is what we refer to as an multiplexed IO site.

41
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So we have total fifty four signal, which could be rounded from zinc processing system two and heart

42
00:03:00,550 --> 00:03:08,140
rate two that basically constitute the toolbox that is Bank zero and Banquet OK, which could be used

43
00:03:08,140 --> 00:03:14,800
to connect object processing system to an army, but something if you build a complex application,

44
00:03:14,800 --> 00:03:17,410
this amount of pain may not be enough, right?

45
00:03:17,680 --> 00:03:25,060
So you are required to connect few of the peripheral eyepiece two and hardware, but the pin count is

46
00:03:25,060 --> 00:03:32,260
greater than 50, so we provided with two more banks that is Bank two and Bank three, which could be

47
00:03:32,260 --> 00:03:40,510
used to connect to our signals from a peripheral IP to an hardware utilizing the programmable logic,

48
00:03:40,540 --> 00:03:40,810
right?

49
00:03:41,020 --> 00:03:47,560
And when we do that, that is connecting the signals from our zinc to the hardware with the help of

50
00:03:47,560 --> 00:03:51,550
a programmable logic, then that is referred to as an extended.

51
00:03:51,850 --> 00:03:56,770
Am I right or EMI that we have basically two is one of the ways you.

52
00:03:58,180 --> 00:04:05,740
Take the signal, OK, from the Beirut very light and then be connected to any hardware utilizing mile.

53
00:04:06,070 --> 00:04:12,820
OK, so we need to specifically choose the pins that could be connected to the hardware.

54
00:04:12,850 --> 00:04:18,940
So when you have a multiple different that you want to utilize, you need to intelligently choose better.

55
00:04:19,840 --> 00:04:26,500
So when we transmit the signal from sync crossing system to anhydride, we have to possible be one of

56
00:04:26,530 --> 00:04:30,670
them is email, which consists of fifty four pence.

57
00:04:30,700 --> 00:04:35,170
OK, our 50 foot signal that could be lifted from the crossing system to half of it.

58
00:04:35,590 --> 00:04:40,420
The other way around that we have is if our application required a few more signal, we could route

59
00:04:40,420 --> 00:04:47,320
them utilizing the programmable logic fabric that we have so we could utilize the next big fabric route,

60
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the signal to any right.

61
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So these are the two possibilities that we have.

62
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The first method is referred to as an email and the second when we refer to as an EMI, right?

63
00:04:58,820 --> 00:05:02,650
So will be our understanding of how we utilize an email.

64
00:05:03,160 --> 00:05:03,640
OK.

65
00:05:03,760 --> 00:05:10,900
When we discuss or when we start discussing on an empty state are dubious in the next section, right?

66
00:05:11,910 --> 00:05:15,720
So the summary will be you have a pricing system then to.

67
00:05:16,740 --> 00:05:20,580
Ease the process of communicating with an outside hardware.

68
00:05:20,820 --> 00:05:23,210
Who can we provide with that benefit in life?

69
00:05:23,350 --> 00:05:30,840
So numerous peripheral APIs will be present along with the zinc processing system, and each IP will

70
00:05:30,840 --> 00:05:34,470
have a dedicated signal which we want to connect to expect to happen.

71
00:05:34,500 --> 00:05:38,250
For example, if you consider a nice square, see so you have.

72
00:05:39,160 --> 00:05:41,980
ACL amnesty, these are the true signal.

73
00:05:42,280 --> 00:05:46,580
OK, if we're going to today, spy, we have food signal similarly for you.

74
00:05:46,600 --> 00:05:48,160
What we have on multiple signal.

75
00:05:48,430 --> 00:05:53,440
So each IP will have its dedicated signal, which are required for communication, right?

76
00:05:53,860 --> 00:05:57,030
So instead of providing a direct connection between an.

77
00:05:58,440 --> 00:06:00,510
Same pricing system, too, and of it.

78
00:06:00,690 --> 00:06:07,500
We keep this American victory, okay, so depending on an application and IP or the industry or the

79
00:06:07,500 --> 00:06:12,330
paper that you want to connect to a processing system, you could configure an email.

80
00:06:13,320 --> 00:06:13,740
OK.

81
00:06:13,950 --> 00:06:20,360
And then this allows us to sing the zinc crossing system signal to the way.

82
00:06:20,490 --> 00:06:22,650
OK, but this £54.

83
00:06:23,940 --> 00:06:29,160
Will not be sufficient if you consider the complex application value required to interface multiple

84
00:06:29,550 --> 00:06:35,460
professions, so in that case, you could utilize programmable logic.

85
00:06:35,640 --> 00:06:41,400
OK, that is an FPGA fabric that is available with this and then draw out the signal from zinc processing

86
00:06:41,400 --> 00:06:42,810
system to an high rate.

87
00:06:42,810 --> 00:06:43,590
So this method?

88
00:06:44,580 --> 00:06:46,650
Is referred to as an e-mail.

89
00:06:46,890 --> 00:06:47,290
OK.

90
00:06:47,310 --> 00:06:50,880
Before we get an email, OK, so the easiest way?

91
00:06:51,900 --> 00:06:56,640
When you walk around with multiple peripherals to utilize that, you buy that you get.

92
00:06:57,650 --> 00:07:03,710
With a zinc processing system, for example, if you just go to a peripheral, you OK, so you get this

93
00:07:03,710 --> 00:07:04,640
July, right?

94
00:07:04,910 --> 00:07:13,280
So this will give you an idea about the benefits which have a support to any e-mail and Medicare which

95
00:07:13,400 --> 00:07:14,450
have support too.

96
00:07:14,780 --> 00:07:16,790
And am I right?

97
00:07:16,800 --> 00:07:19,670
So you could see the paper with support e-mail.

98
00:07:19,850 --> 00:07:22,400
You have this option been available, right?

99
00:07:22,400 --> 00:07:25,430
So there is a do you want to configure this one?

100
00:07:25,430 --> 00:07:31,850
That is, it connects you with my e-mail, so you just need to click on this one to click on this.

101
00:07:31,850 --> 00:07:38,950
This will turn green, and this interface now will be rounded from programmable logic to a high rate.

102
00:07:38,990 --> 00:07:40,260
So this is how you configure.

103
00:07:40,520 --> 00:07:43,550
Or you could just be selecting this one.

104
00:07:43,640 --> 00:07:50,120
So what this will do is this will disable e-mail and then now will be utilizing an email, OK to connect

105
00:07:50,120 --> 00:07:54,680
to the signals that we have with this benefit, it's to the right.

106
00:07:54,890 --> 00:08:00,020
So when you are planning on working with that multiple interfaces, the good idea will be to work with

107
00:08:00,200 --> 00:08:01,400
this interface, right?

108
00:08:01,430 --> 00:08:09,300
This help us easily choose the most efficient connection of utilizing Emeline.

109
00:08:09,740 --> 00:08:15,320
For example, you can see you are zero, could have a multiple email you have here, right?

110
00:08:15,350 --> 00:08:23,860
So if you go from zero to 15, OK, this represent your email because we have 54 signatures.

111
00:08:23,870 --> 00:08:25,100
So in an email.

112
00:08:25,520 --> 00:08:29,920
And then some of the benefits which support e-mail are this do the work here, right?

113
00:08:29,930 --> 00:08:38,480
So you could even utilize this interface to efficiently design which type of the routing to be utilized

114
00:08:38,480 --> 00:08:43,580
for debt, for sending the signal phone zinc processing system to any hardware?

115
00:08:43,700 --> 00:08:47,440
So this really helps in designing multiple interfaces, right?

116
00:08:47,450 --> 00:08:50,660
So you could efficiently choose so you like Xero?

117
00:08:50,660 --> 00:08:57,650
Have this two amigos or this to all this to say if you let you have nsp, I want.

118
00:08:57,720 --> 00:09:02,030
OK, so if you want to utilize this, so instead of configuring this, you are.

119
00:09:02,510 --> 00:09:09,110
Because if you can configure Zoom SBI, what if you first configure as you are zero?

120
00:09:09,170 --> 00:09:12,110
I know you want to utilize nsp, right?

121
00:09:12,110 --> 00:09:18,530
SBI but in that case, if you just configured it now, since we are already utilizing that, you have

122
00:09:18,530 --> 00:09:23,240
C2, OK, pin number 10 and 11 off an email.

123
00:09:23,510 --> 00:09:29,320
So this will give us a conflict because no multiple signals are utilizing the same memory, right?

124
00:09:29,660 --> 00:09:36,140
But now, once you know that you are have a more number of email which has been supported, OK, we

125
00:09:36,140 --> 00:09:38,600
could just keep this the I.

126
00:09:39,110 --> 00:09:39,470
OK?

127
00:09:39,650 --> 00:09:42,090
And then we could choose any different.

128
00:09:42,130 --> 00:09:43,580
Am I hoping that you want?

129
00:09:43,610 --> 00:09:43,910
Right?

130
00:09:44,720 --> 00:09:45,590
So this is help.

131
00:09:45,590 --> 00:09:49,780
For example, now here, since we have a Ethernet also enabled.

132
00:09:49,820 --> 00:09:52,940
OK, so we could choose different.

133
00:09:53,390 --> 00:09:54,500
Am I right?

134
00:09:54,740 --> 00:09:59,090
So this interface really helps when we are working with a multiple interviews.

135
00:09:59,090 --> 00:10:05,390
So this gives us the most easiest way to design or working with 10 different people.

136
00:10:05,600 --> 00:10:05,930
OK?

137
00:10:06,020 --> 00:10:11,870
Which type of interface to be utilized, whether email to utilize our e-mail to be utilized to, as

138
00:10:11,870 --> 00:10:19,040
we progress further, will be understanding more on this when we cover the GPI in the next section.

139
00:10:19,190 --> 00:10:19,490
Right.

140
00:10:20,150 --> 00:10:27,860
The takeaway should be that the default option that we get to send the signal from a processing system

141
00:10:28,370 --> 00:10:29,330
to the hardware.

142
00:10:29,450 --> 00:10:29,780
OK.

143
00:10:30,410 --> 00:10:31,700
So you have 54.

144
00:10:33,020 --> 00:10:39,800
Signals that could be saying promising grassing system went hard, but if you further want to extend

145
00:10:39,800 --> 00:10:44,150
the capability, you could consider sending the signal to appeal.

146
00:10:44,330 --> 00:10:49,900
OK, and then sending to an OK, and that method is rapid transit EMI.

147
00:10:50,780 --> 00:10:55,870
So there also we have a capability to sing 60 chord signals, right?

148
00:10:55,880 --> 00:11:00,620
So 50 for a with a smile and 60 for that the EMI.
