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FPGA可编程逻辑器件芯片XC7Z020-1CLG484I中文规格书 (1) fpga开发.pdf
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FPGA可编程逻辑器件芯片XC7Z020-1CLG484I中文规格书 (1) fpga开发.pdf
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FPGA可编程逻辑器件芯⽚可编程逻辑器件芯⽚ XC7Z020-1CLG484I中⽂规格书中⽂规格书
Introduction
The Zynq?-7000 SoCs are available in -3, -2, -1, and -1LI speed grades, with -3 having the highest performance. The -1LI devices can
operate at either of two programmable logic (PL) V CCINT/V CCBRAM voltages, 0.95V and 1.0V, and are screened for lower maximum
static power. The speed specification of a -1LI device is the same as the -1 speed grade. When operated at PL V CCINT/V CCBRAM =
0.95V, the -1LI static and dynamic power is reduced. Zynq-7000 device DC and AC characteristics are specified in commercial,
extended, industrial and expanded (Q-temp) temperature ranges. Except for the operating temperature range or unless otherwise noted,
all the DC and AC electrical parameters are the same for a particular speed grade (that is, the timing characteristics of a -1 speed grade
industrial device are the same as for a -1 speed grade commercial device). However, only selected speed grades and/or devices are
available in the commercial, extended, industrial, or Q-temp temperature ranges.
All supply voltage and junction temperature specifications are representative of worst-case conditions. The parameters included are
common to popular designs and typical applications.
The available device/package combinations are outlined in:?Zynq-7000SoC Overview (DS190)
?XA Zynq-7000SoC Overview (DS188)
?Defense-grade Zynq-7000Q SoC Overview (DS196)
DC Characteristics
Zynq-7000SoC (Z-7007S, Z-7012S, Z-7014S, Z-7010, Z-7015, and Z-7020):
DC and AC Switching Characteristics
DS187 (v1.20.1) July 2, 2018Product Specification
Table 1:Absolute Maximum Ratings(1)
Symbol Description Min Max Units Processing System (PS)
V CCPINT PS internal logic supply voltage–0.5 1.1V
V CCPAUX PS auxiliary supply voltage–0.5 2.0V
V CCPLL PS PLL supply–0.5 2.0V
V CCO_DDR PS DDR I/O supply voltage–0.5 2.0V
V CCO_MIO(2)PS MIO I/O supply voltage–0.5 3.6V
V PREF PS input reference voltage–0.5 2.0V
V PIN(2)(3)(4)(5)PS MIO I/O input voltage–0.40V CCO_MIO+0.55V PS DDR I/O input voltage–0.55V CCO_DDR+0.55V
Programmable Logic (PL)
V CCINT PL internal supply voltage–0.5 1.1V V CCAUX PL auxiliary supply voltage–0.5 2.0V V CCBRAM PL supply voltage for the
block RAM memories–0.5 1.1V V CCO PL supply voltage for HR I/O banks–0.5 3.6V V REF Input reference voltage–0.5 2.0V
PL I/O Levels
Table 10:SelectIO DC Input and Output Levels(1)(2)
I/O Standard
V IL V IH V OL V OH I OL I OH V, Min V, Max V, Min V, Max V, Max V, Min mA mA
HSTL_I–0.300V REF–0.100V REF+0.100V CCO+0.3000.400V CCO–0.4008.00–8.00 HSTL_I_18–0.300V REF–0.100V REF+0.100V
CCO+0.3000.400V CCO–0.4008.00–8.00 HSTL_II–0.300V REF–0.100V REF+0.100V CCO+0.3000.400V CCO–0.40016.00–16.00
HSTL_II_18–0.300V REF–0.100V REF+0.100V CCO+0.3000.400V CCO–0.40016.00–16.00 HSUL_12–0.300V REF–0.130V
REF+0.130V CCO+0.30020%V CCO80%V CCO0.10–0.10 LVCMOS12–0.30035% V CCO65% V CCO V CCO+0.3000.400V CCO–
0.400Note3Note3 LVCMOS15–0.30035% V CCO65% V CCO V CCO+0.30025%V CCO75%V CCO Note4Note4 LVCMOS18–
0.30035% V CCO65% V CCO V CCO+0.3000.450V CCO–0.450Note5Note5 LVCMOS25–0.3000.7 1.700V CCO+0.3000.400V CCO–
0.400Note4Note4 LVCMOS33–0.3000.8 2.000 3.4500.400V CCO–0.400Note4Note4 LVTTL–0.3000.8 2.000 3.4500.400
2.400Note5Note5 MOBILE_DDR–0.30020% V CCO80% V CCO V CCO+0.30010%V CCO90%V CCO0.10–0.10 PCI33_3–0.40030% V
CCO50% V CCO V CCO+0.50010%V CCO90%V CCO 1.50–0.50 SSTL135–0.300V REF–0.090V REF+0.090V CCO+0.300V CCO/2–
0.150V CCO/2+0.15013.00–13.00 SSTL135_R–0.300V REF–0.090V REF+0.090V CCO+0.300V CCO/2–0.150V CCO/2+0.1508.90–
8.90 SSTL15–0.300V REF–0.100V REF+0.100V CCO+0.300V CCO/2–0.175V CCO/2+0.17513.00–13.00 SSTL15_R–0.300V REF–
0.100V REF+0.100V CCO+0.300V CCO/2–0.175V CCO/2+0.1758.90–8.90 SSTL18_I–0.300V REF–0.125V REF+0.125V CCO+0.300V
资源评论
- 堕落鸠摩智2023-11-09资源简直太好了,完美解决了当下遇到的难题,这样的资源很难不支持~
- weixin_496122202023-03-15感谢资源主的分享,很值得参考学习,资源价值较高,支持!
- weixin_422216012022-11-06资源内容详实,描述详尽,解决了我的问题,受益匪浅,学到了。
- m0_734762242022-10-21非常有用的资源,有一定的参考价值,受益匪浅,值得下载。
- dingruhao2023-07-28资源中能够借鉴的内容很多,值得学习的地方也很多,大家一起进步!
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