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5X00501G01模块备件

型号: 5X00501G01  分类: foxboro
  • 5X00501G01
  • 5X00501G01
  • 5X00501G01
  • 5X00501G01
  • 5X00501G01


 

5X00501G01

Acc时间是电机加速所需的时间
从0Hz到大频率(如F0.04所述),
参见图5-4中的t1。
Dec时间是电机减速所需的时间
从大频率(F0.05)到0Hz,参见图中的t2。
5-4.
EV2000系列驱动器定义了4种Acc/Dec
时间此处仅定义了Acc/Dec时间1,以及Acc/Dec
时间2~4将在F3.17~F3.22中定义,请参考
5.4节。
注:
1.Acc/Dec时间1~4的单位(秒/分钟)取决于
设置为F9.09,默认单位为秒。
2.对于30kW或以上的驱动,出厂设置为
Acc/Dec时间为20.0s。
F0.12上限
频率
范围:频率下限
~大输出频率【50.00Hz】
F0.13的下限
频率
范围:0~频率上限
【0.00Hz】
F0.12和F0.13定义了
频率,如图5-2所示,分别为fH和
佛罗里达州。
笔记:
实际输出频率可能超过±2.5Hz in
总线电压控制过程。
F0.14 V/F曲线设置范围:0~3【0】
F0.15 V/F频率值F3范围:F0.17~F0.06
【0.00Hz】
F0.16 V/F电压值V3范围:F0.18~100.0%
【0.0%】
F0.17 V/F频率值F2范围:F0.19~F0.15
【0.00Hz】
F0.18 V/F电压值V2范围:F0.20~F0.16
【0.0%】
F0.19 V/F频率值F1范围:0~F0.17
【0.00Hz】
F0.20 V/F电压值V1范围:0~F0.18【0.0%】
这组参数定义了V/F设置模式
以满足不同的要求
荷载。3条预设曲线和一条自定义曲线可以
根据F0.14的设置进行选择。
如果将F0.14设置为1,则选择2阶曲线,如图所示
在图5-5中为曲线1;
如果F0.14设置为2,则选择1.7阶曲线,如下所示
如图5-5中的曲线2所示;
如果F0.14设置为3,则选择1.2阶曲线,如
如图5-5中的曲线3所示;
上述曲线适用于可变扭矩
风机和泵等负载。您可以选择曲线
根据实际负荷,以达到佳
节能效果。
0
1.
输出电压(V)
输出频率(Hz)
3 2
f
:大输出电压(F0.07)
:基本工作频率(F0.06)
0
Vmax
Vmax
f和b
b
图5-5扭矩减小曲线
如果F0.14设置为0,则可以通过以下方式定义V/F曲线:
F0.15~F0.20,如图5-6所示。V/F曲线可以
通过连接(V1、F1)、(V2、F2)的3个点来定义
以及(V3、F3)以适应特殊负载特性。
出厂设置的默认V/F曲线为直线,如图所示
在图5-5中为曲线0。
电压(%)
Fb频率Hz
100%
V1
V2
F1和F2
V3
F3
V1~V3:1~3段电压
F1~F3:1~3段频率
Fb:F0.06的基本工作频率
图5-6用户定义的V/F曲线
465章参数介绍
EV2000系列通用变速驱动用户手册
F0.21用于
手动扭矩提升范围:0~50%【10.0%】
F0.21定义了用于
手动扭矩提升至基本操作
频率(由F0.06定义),如图5-3所示,为fz。
该截止频率适用于定义的任何V/F曲线
通过F0.14。
5.2参考频率参数
(F1组)
F1.00参考频率
曲线选择范围:000~111【000】
F1.01参考增益
频率选择器
范围:0.00~9.99
【1.00】
F1.02参考常数
滤器
范围:0.01~50.00s
【0.50秒】
F1.03大输入脉冲频率范围:0.1~50.0kHz
【10.0kHz】
F1.04曲线1的小参考范围:0.0%~100.0%
【0.0%】
F1.05对应频率
至曲线1的小参考
范围:0.0~650.0Hz
【0.00Hz】
F1.06曲线1的大参考范围:0.0%~100.0%
【100.0%】
F1.07频率对应
至曲线1的大参考
范围:0.0~650.0Hz
【50.00Hz】
F1.08曲线2的小参考范围:0.0%~100.0%
【0.0%】
F1.09对应频率
至曲线2的小参考
范围:0.0~650.0Hz
【0.00Hz】
F1.10曲线2的大参考范围:0.0%~100.0%
【100.0%】
F1.11对应频率
至曲线2的大参考
范围:0.0~650.0Hz
【50.00Hz】
当选择VCI或CCI或脉冲输入(pulse)时
参考和预设频率之间的关系
如下所示:
预设频率
裁判。
选择
F0.00
放大
F1.01
滤器
F1.02
设定频率曲线
或选择F1.00
A.
P
图5-7参考和预设之间的关系
频率
对参考频率信号进行滤波和放大,以及
则其与预设频率的关系为:
由曲线1或2确定。曲线1定义为:
F1.04~F1.07,曲线2由F1.08~F1.11定义。
正负特性如图所示。
5-8.
(2) 否定的
P
A.
P: A:模拟信号参考
VCI或CCI的
:频率对应
至小参考值
参考频率。
f大值
f分钟
(1) 肯定的
脉冲端输入
大功率
阿玛克斯
Pmin Amin:小参考值
P
A
大功率
大值


P
A.
f大值
f分钟
参考频率。
P
:频率对应
大参考
:大参考值
f大值
大Amax小值
图5-8输出频率曲线
模拟输入值(A)是不带单位的百分比,以及
100%对应于10V或20mA。脉冲频率(P)
也是不含单位的百分比,为100%
通信

5X00501G01

5X00501G01模块备件

5X00501G01
Acc time is the time taken for the motor to accelerate
from 0Hz to the maximum frequency (as set in F0.04),
see t1 in Fig. 5-4.
Dec time is the time taken for the motor to decelerate
from maximum frequency (F0.05) to 0Hz, see t2 in Fig.
5-4.
EV2000 series drive has defined 4 kinds of Acc/Dec
time. Here only Acc/Dec time 1 is defined, and Acc/Dec
time 2~4 will be defined in F3.17~F3.22, please refer to
section 5.4.
     Note:
1. Unit(second/minute) of Acc/Dec time 1~4 is dependent
on the setting of F9.09, and the default unit is second.
2. For the drive of 30kW or above, the factory setting of
Acc/Dec time is 20.0s.
F0.12 upper limit of
frequency
Range: Lower limit of frequency
~Max output frequency【50.00Hz】
F0.13 lower limit of
frequency
Range:0~upper limit of frequency
【0.00Hz】
F0.12 and F0.13 define the upper and lower limit of
frequencies respectively, as shown in Fig. 5-2 as fH and
fL.
     Notes:
Actual output frequency is possible to exceed ±2.5Hz in
the bus-voltage control process.
F0.14 V/F curve setting Range: 0~3【0】
F0.15 V/F frequency value F3 Range: F0.17~F0.06
【0.00Hz】
F0.16 V/F voltage value V3 Range: F0.18~100.0%
【0.0%】
F0.17 V/F frequency value F2 Range: F0.19~F0.15
【0.00Hz】
F0.18 V/F voltage value V2 Range: F0.20~F0.16
【0.0%】
F0.19 V/F frequency value F1 Range: 0~F0.17
【0.00Hz】
F0.20 V/F voltage value V1 Range:0~F0.18【0.0%】
This group of parameters define the V/F setting modes
of EV2000 so as to satisfy the requirements of different
loads. 3 preset curves and one user-defined curve can
be selected according to the setting of F0.14.
If F0.14 is set to 1, a 2-order curve is selected, as shown
in Fig. 5-5 as curve 1;
If F0.14 is set to 2, a 1.7-order curve is selected, as
shown in Fig. 5-5 as curve 2;
If F0.14 is set to 3, a 1.2-order curve is selected, as
shown in Fig. 5-5 as curve 3;
The above curves are suitable for the variable-torque
loads such as fan & pumps. You can select the curves
according to the actual load so as to achieve best
energy-saving effects.
0
1
Output voltage (V)
Output frequency (Hz)
3 2
f
: Max output voltage(F0.07)
: Basic operating frequency(F0.06)
0
Vmax
Vmax
f b
b
Fig. 5-5 Torque-reducing curve
If F0.14 is set to 0, you can define V/F curve via
F0.15~F0.20, as shown in Fig. 5-6. The V/F curve can
be defined by connecting 3 points of (V1,F1), (V2,F2)
and (V3, F3), to adapt to special load characteristics.
Default V/F curve set by factory is a direct line as show
in Fig. 5-5 as curve 0.
Voltage (%)
Fb Freq Hz
100%
V1
V2
F1 F2
V3
F3
V1~V3: Voltage of sections 1~3
F1~F3: Freq of sections 1~3
Fb: Basic operating freq. of F0.06
Fig. 5-6 V/F curve defined by user 
46 Chapter 5 Parameter Introductions
EV2000 Series Universal Variable Speed Drive User Manual
F0.21 Cut-off point used for
manual torque boost Range:0~50%【10.0%】
F0.21 defines the ratio of the cut-off frequency used for
manual torque boost to the basic operating
frequency(defined by F0.06), as shown in Fig. 5-3 as fz.
This cut-off frequency adapts to any V/F curve defined
by F0.14.
5.2 Parameters of Reference Frequency
(Group F1)
F1.00 Reference frequency
curve selection Range:000~111【000】
F1.01 Gain of reference
frequency selector
Range:0.00~9.99
【1.00】
F1.02 Reference constant of
filter
Range:0.01~50.00s
【0.50s】
F1.03 Max input pulse frequency Range:0.1~50.0kHz
【10.0kHz】
F1.04 Min reference of curve 1 Range:0.0%~100.0%
【0.0%】
F1.05 Frequency corresponding
to the Min reference of curve 1
Range:0.0~650.0Hz
【0.00Hz】
F1.06 Max reference of curve 1 Range:0.0%~100.0%
【100.0%】
F1.07 Frequency corresponding
to the Max reference of curve 1
Range:0.0~650.0Hz
【50.00Hz】
F1.08 Min reference of curve 2 Range:0.0%~100.0%
【0.0%】
F1.09 Frequency corresponding
to the Min reference of curve 2
Range:0.0~650.0Hz
【0.00Hz】
F1.10 Max reference of curve 2 Range:0.0%~100.0%
【100.0%】
F1.11 Frequency corresponding
to the Max reference of curve 2
Range:0.0~650.0Hz
【50.00Hz】
When VCI or CCI or pulse input(PULSE) is selected, the
relationship between reference and the preset frequency
is given below:
Preset frequency
Ref.
selection
F0.00
Amplify
F1.01
Filter
F1.02
Set Freq. curve
or select F1.00
A
P
Fig. 5-7 Relationship between reference and the preset
frequency
Reference frequency signal is filtered and amplified, and
then its relationship with the preset frequency is
determined by Curve 1 or 2. Curve 1 is defined by
F1.04~F1.07, and curve 2 is defined by F1.08~F1.11.
Positive and negative characteristics are shown in Fig.
5-8.
(2) Negative
P
A
P: A:Reference of analog signal
of VCI or CCI
: Freq.corresponding
to Min reference
Reference freq.
f max
f min
(1) Positive
pulse terminal input
Pmax
Amax
Pmin Amin : Min. reference
P
A A
Pmax
max
min
min
P
A
f max
f min
Reference freq.
P
: Freq.corresponding
to Max reference
: Max. reference
f max
max Amax f min
Fig. 5-8 Output frequency curve
Analog input value(A) is a percentage without unit, and
100% corresponds to 10V or 20mA. Pulse frequency(P)
is also a percentage without unit, and 100%
corresponds to the Max pulse frequency defined by
F1.03.
F1.02 defines the time constant of the filter used by the
reference selector. The input signal is filtered and the
bigger the time constant, the higher the immunity level,
but the response time is prolonged with the increase of
the time constant. That is, the smaller the time constant,
the shorter the response time, but the lower the
immunity level.
F1.00 is used to select the output frequency curve when
VCI, CCI or PULSE input is selected, as shown in
Fig.5-9.
A B C D
VCI frequency curve selection
0 : Curve 1
0 : Curve 2
Reserved
CCI frequency curve selection
PULSE frequency curve selection
0 : Curve 1
0 : Curve 2
0 : Curve 1
0 : Curve 2
Fig. 5-9 Frequency curve selection
Where,
A: thousand’s place B: Hundred’s place
C: Ten’s place D: Unit’s place
For example, the requirements are: 



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