欢迎访问ic37.com |
会员登录 免费注册
发布采购

ADSP-BF532SBBZ400 参数 Datasheet PDF下载

ADSP-BF532SBBZ400图片预览
型号: ADSP-BF532SBBZ400
PDF下载: 下载PDF文件 查看货源
内容描述: [400 MHz High Performance Blackfin Processor]
分类和应用: 时钟外围集成电路
文件页数/大小: 64 页 / 2252 K
品牌: AD [ ANALOG DEVICES ]
 浏览型号ADSP-BF532SBBZ400的Datasheet PDF文件第19页浏览型号ADSP-BF532SBBZ400的Datasheet PDF文件第20页浏览型号ADSP-BF532SBBZ400的Datasheet PDF文件第21页浏览型号ADSP-BF532SBBZ400的Datasheet PDF文件第22页浏览型号ADSP-BF532SBBZ400的Datasheet PDF文件第24页浏览型号ADSP-BF532SBBZ400的Datasheet PDF文件第25页浏览型号ADSP-BF532SBBZ400的Datasheet PDF文件第26页浏览型号ADSP-BF532SBBZ400的Datasheet PDF文件第27页  
5
6
Applies to JTAG input pins (TCK, TDI, TMS, TRST).
Absolute value.
7
Applies to three-statable pins.
8
Applies to all signal pins.
9
Guaranteed, but not tested.
10
See the
ADSP-BF533 Blackfin Processor Hardware Reference Manual
for definitions of sleep, deep sleep, and hibernate operating modes.
11
See
for the list of I
DDINT
power vectors covered by various Activity Scaling Factors (ASF).
System designers should refer to
Estimating Power for the
ADSP-BF531/BF532/BF533 Blackfin Processors (EE-229),
which
provides detailed information for optimizing designs for lowest
power. All topics discussed in this section are described in detail
in EE-229. Total power dissipation has two components:
1. Static, including leakage current
2. Dynamic, due to transistor switching characteristics
Many operating conditions can also affect power dissipation,
including temperature, voltage, operating frequency, and pro-
cessor activity.
shows the
current dissipation for internal circuitry (V
DDINT
). I
DDDEEPSLEEP
specifies static power dissipation as a function of voltage
(V
DDINT
) and temperature (see
or
and I
DDINT
specifies the total power specification for the listed test condi-
tions, including the dynamic component as a function of voltage
(V
DDINT
) and frequency (Table
The dynamic component is also subject to an Activity Scaling
Factor (ASF) which represents application code running on the
processor (Table
Table 14. Static Current–500 MHz, 533 MHz, and 600 MHz Speed Grade Devices (mA)
1
T
J
(°C)
2
–45
0
25
40
55
70
85
100
115
125
1
2
Voltage (V
DDINT
0.80 V 0.85 V 0.90 V 0.95 V 1.00 V 1.05 V 1.10 V 1.15 V 1.20 V
4.3
5.3
5.9
7.0
8.2
9.8
11.2
13.0
15.2
18.8
21.3
24.1
27.8
31.6
35.6
40.1
45.3
51.4
35.3
39.9
45.0
50.9
57.3
64.4
72.9
80.9
90.3
52.3
58.5
65.1
73.3
81.3
90.9
101.2 112.5 125.5
73.6
82.5
92.0
102.7 114.4 126.3 141.2 155.7 172.7
100.8 112.5 124.5 137.4 152.6 168.4 186.5 205.4 227.0
133.3 148.5 164.2 180.5 198.8 219.0 241.0 264.5 290.6
178.3 196.3 216.0 237.6 259.9 284.6 311.9 342.0 373.1
223.3 245.9 270.2 295.7 323.5 353.3 386.1 421.1 460.1
278.5 305.8 334.1 364.3 397.4 432.4 470.6 509.3 553.4
1.25 V
17.7
58.1
101.4
138.7
191.1
250.3
319.7
408.0
500.9
600.6
1.30 V
20.2
65.0
112.1
154.4
212.1
276.2
350.2
446.1
545.0
652.1
1.32 V
21.6
68.5
118.0
160.6
220.8
287.1
364.6
462.6
566.5
676.5
1.375 V
25.5
78.4
133.7
180.6
247.6
320.4
404.9
511.1
624.3
742.1
1.43 V
30.1
89.8
151.6
203.1
277.7
357.4
449.7
564.7
688.1
814.1
1.45 V
32.0
94.3
158.7
212.0
289.5
371.9
467.2
585.6
712.8
841.9
Values are guaranteed maximum I
DDDEEPSLEEP
specifications.
Valid temperature and voltage ranges are model-specific. See
Table 15. Static Current–400 MHz Speed Grade Devices (mA)
1
T
J
(°C)
2
–45
0
25
40
55
70
85
100
115
125
1
2
0.80 V
0.9
3.3
7.5
12.0
18.3
27.7
38.2
54.1
73.9
98.7
0.85 V
1.1
3.7
8.4
13.1
20.0
30.3
41.7
58.1
80.0
106.3
0.90 V
1.3
4.2
9.4
14.3
21.9
32.6
44.9
63.2
86.3
113.8
0.95 V
1.5
4.8
10.0
15.9
23.6
35.3
48.6
67.8
91.9
122.1
1.00 V
1.8
5.5
11.2
17.4
26.0
38.2
52.7
73.2
99.1
130.8
Voltage (V
DDINT
1.05 V
1.10 V
2.2
2.6
6.3
7.2
12.6
14.1
19.4
21.5
28.2
30.8
41.7
45.2
57.3
61.7
78.8
84.9
106.6
114.1
140.2
149.7
1.15 V
3.1
8.1
15.5
23.5
33.7
49.0
66.7
91.5
122.4
160.4
1.20 V
3.8
8.9
17.2
25.8
36.8
52.8
72.0
98.4
131.1
171.9
1.25 V
4.4
10.1
19.0
28.1
39.8
57.6
77.5
106.0
140.9
183.8
1.30 V
5.0
11.2
21.2
30.8
43.4
62.4
83.9
113.8
151.1
197.0
1.32 V
5.4
11.9
21.9
32.0
45.0
64.2
86.5
117.2
155.5
202.4
Values are guaranteed maximum I
DDDEEPSLEEP
specifications.
Valid temperature and voltage ranges are model-specific. See
Rev. I
|
Page 23 of 64 |
August 2013