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HD HDA
Heavy Duty Series Shock absorber
HD/HDA Series
Adjustment Techniques
Damping Force
Position 1 provides minimum damping force. Position 5 provides maximum damping force.
Useable Adjustment Setting Range
150 140 130 120 110 100 90 80 70 60 50 40 30 20 10 0
■3,5 ■3,0 ■2,5 ■2,0 ■1,5 ■1,0 ■0,5 ■0
«i
All HDA's ■
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LU >
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Locking Industrial cam Screw
Adjustment is accomplished by turning the adjustment screw. Once the desired setting has been reached, lock in place by tightening the locking cam screw.
Adjustment Setting
After properly sizing an HDA shock absorber, the useable range of adjustment settings can be determined:
1. Locate the intersection point of the application's impact velocity and the HDA model graph line.
2. The intersection is the maximum adjustment setting to be used. Adjustments exceeding this setting could overloadthe shock absorber.
3. The useable adjustment setting range is from setting 1 to the MAXIMUM adjustment setting as determined in step 2.
Optional Piston Rod Return Sensor_
• Magnetic proximity sensor indicates complete piston rod return with 10-foot long cable.
• If complete piston rod does not return the circuit remains open. This can be used to trigger a system shut-off.
• Contact Enidine for other available sensor types.
EXAMPLE: HDA Series
1. Impact Velocity:
2. Intersection Point:
3. Useable Adjustment Setting Range:
80 in./sec. (2 m/s) Adjustment Setting 3 1 to 3
Sensor Specifications
+
sw ~
1
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o_
Piston Rod Return
Sensor-^
1m
• Voltage 10 - 30V
• Load Current =s 200 mA
• Leakage Current <, 80 mA
• Load Capacitance <, 1.0 mF
• Ambient Temperature: -15° to 160°F (-26° to 71°C)
www.enidine.com Email: industrialsales@enidine.com
Tel.: 1-800-852-8508 ext. 111
Fax: 1-716-662-0406
11
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