Parameter No.

Parameter name

50

Position control bandwidth 1

51

Velocity control bandwidth 1

53

Position integral limiting value

54

Position feed forward percentage

55

Velocity feed forward percentage

56

Acceleration feed forward gain

58

Position settling pulse width 1

59

Position current value filter frequency

61

Position settling signal chattering

 

processing count

65

Value causing an error detection in the (+)

 

or CW direction

66

Value causing an error detection in the (-)

 

or CCW direction

68

Torque limit percentage

69

Axis velocity monitoring gain (digital

 

monitor)

70

Analog monitor selection

71

Axis positioning error monitoring gain

 

(analog monitor)

72

Test operation monitoring gain (analog

 

monitor)

73

Position monitoring gain (analog monitor)

74

Position differential value monitoring gain

 

(analog monitor)

75

Velocity monitor selection (digital monitor)

89

Brake turn OFF delay time upon Servo ON

90

Advanced Brake turn ON before Servo

 

OFF

91

TBX_EMG Servo status

93

IFB_EMG Servo status

94

Position command differential value

 

excessive error processing type

95

Over-travel error function in the + direction

 

processing type

96

Over-travel error function in the - direction

 

processing type

98

Emmergency stopping deceleration time

 

during a trapezoidal move

106

Settling wait enable

Minimum value

1

5

0

0

0

0

0

1

1

1

-999999

0

0

0

0

0

0

0

0

0

0

0

0

0

0

0

1

0

Maximum value

Initial value

Unit

Possible to change

32

1

Hz

Always

200

20

Hz

Always

4999999

10000

None

Always

126

90

%

Always

126

100

%

Always

200

0

%

Always

32767

1

pulse

Always

200

10

Hz

Always

100

1

None

Always

999999

999999

pulse

Always

-1

-999999

pulse

Always

10000

10000

1/100 %

Always

8

0

None

Always

5

4

None

Always

8

0

None

Always

8

0

None

Always

14

0

None

Always

7

0

None

Always

1

0

None

Always

2000

0

msec

Always

2000

0

msec

Always

2

0

None

Always

2

0

None

Always

5

1

None

Always

5

1

None

Always

5

1

None

Always

9999

1

msec

Always

1

0

None

Always

Page 151
Image 151
Parker Hannifin G2 manual Parameter No Parameter name, Maximum value Initial value Unit

G2 specifications

Parker Hannifin G2 is a state-of-the-art platform designed to transform the way industries approach fluid and motion control. As a leader in motion and control technologies, Parker Hannifin has integrated cutting-edge features into the G2, making it a standout choice for various applications, including aerospace, industrial automation, and hydraulic systems.

One of the main features of the Parker Hannifin G2 series is its modular design. This allows users to customize the configuration according to their specific needs, facilitating enhanced versatility and efficiency. The modular approach supports different valve and actuator options, enabling seamless integration with existing systems and allowing for future expansions.

The G2 is equipped with advanced connectivity options, including Ethernet and fieldbus solutions. These technologies enable real-time data exchange and remote monitoring, ensuring optimized performance and reduced downtime. Users can leverage this connectivity to implement preventive maintenance strategies, thereby increasing the overall reliability of their operations.

Another notable characteristic of the G2 platform is its intelligent control algorithms. These algorithms allow for enhanced process automation, ensuring that systems can adapt dynamically to changing operating conditions. The result is improved energy efficiency and lower operational costs, critical factors in today’s competitive market.

Durability is a key aspect of the G2 series as well. Constructed with high-quality materials, the platform is designed to withstand harsh industrial environments, making it ideal for applications where reliability is paramount. Additionally, its compact footprint enables easy installation and integration into existing setups without requiring extensive modifications.

The user interface of the G2 is exceptionally user-friendly. With intuitive design and advanced graphical displays, operators can easily access performance data, diagnostics, and system parameters. This ease of use not only improves operational efficiency but also enhances training processes for new personnel.

In summary, Parker Hannifin G2 represents a significant advancement in fluid and motion control technology. Its modular design, advanced connectivity, intelligent control algorithms, durability, and user-friendly interface make it a compelling choice for industries seeking to enhance their operations. With these features, the G2 empowers businesses to achieve their efficiency, reliability, and performance goals.