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Optidrive ODE-2 User Guide Revision 3.20 

18 

www.invertekdrives.com 

 

 

6

 

Pa

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6.2.

 

Extended Parameters 

Par. 

Description 

Minimum 

Maximum 

Default 

Units 

P-15 

Digital Input Function Select 

12 

Defines the function of the digital inputs depending on the control mode setting in P-12.  See section 8, Analog and Digital Input 
Configurations for more information. 

P-16 

Analog Input 1 Signal Format 

See Below 

U0-10 



 = 0 to 10 Volt Signal (Uni-polar). The drive will remain at 0.0Hz if the analog reference after scaling and offset are applied is 

<0.0% 



 = 0 to 10 Volt Signal, bi-directional operation. The drive will operate the motor in the reverse direction of rotation if the 

analog reference after scaling and offset are applied is <0.0% 



 = 0 to 20mA Signal 



 =  4 to 20mA Signal, the Optidrive will trip and show the fault code 



 if the signal level falls below 3mA 



 = 4 to 20mA Signal, the Optidrive will run at Preset Speed 1 (P-20)  if the signal level falls below 3mA 



 = 20 to 4mA Signal, the Optidrive will trip and show the fault code 



 if the signal level falls below 3mA 



 = 20 to 4mA Signal, the Optidrive will run at Preset Speed 1 (P-20)   if the signal level falls below 3mA 

P-17 

Maximum Effective Switching Frequency 

32 

8 / 16 

kHz 

Sets maximum effective switching frequency of the drive. If “rEd” is displayed, the switching frequency has been reduced to the level in P00-
14 due to excessive drive heatsink temperature.

 

P-18 

Output Relay Function Select 

Selects the function assigned to the relay output. The relay has two output terminals, Logic 1 indicates the relay is active, and 
therefore terminals 10 and 11 will be linked together. 

0

 

: Drive Enabled (Running)

. Logic 1 when the motor is enabled 

1 : Drive Healthy

. Logic 1 when power is applied to the drive and no fault exists 

2

 

: At Target Frequency (Speed)

. Logic 1 when the output frequency matches the setpoint frequency 

3: Drive Tripped

. Logic 1 when the drive is in a fault condition 

4

 

: Output Frequency >= Limit

. Logic 1 when the output frequency exceeds the adjustable limit set in P-19 

5

 

: Output Current >= Limit

. Logic 1 when the motor current exceeds the adjustable limit set in P-19 

6

 

: Output Frequency < Limit

. Logic 1 when the output frequency is below the adjustable limit set in P-19 

7

 

: Output Current < Limit

. Logic 1 when the motor current is below the adjustable limit set in P-19 

P-19 

Relay Threshold Level 

0.0 

200.0 

100.0 

Adjustable threshold level used in conjunction with settings 4 to 7 of P-18 

P-20 

Preset Frequency / Speed 1 

P-02 

P-01 

0.0 

Hz / Rpm 

P-21 

Preset Frequency / Speed 2 

P-02 

P-01 

0.0 

Hz / Rpm 

P-22 

Preset Frequency / Speed 3 

P-02 

P-01 

0.0 

Hz / Rpm 

P-23 

Preset Frequency / Speed 4 

P-02 

P-01 

0.0 

Hz / Rpm 

Preset Speeds / Frequencies selected by digital inputs depending on the setting of P-15 
If P-10 = 0, the values are entered as Hz. If P-10 > 0, the values are entered as Rpm. 

P-24 

2nd Decel Ramp Time (Fast Stop) 

0.00 

25.0 

0.00 

This parameter allows an alternative deceleration ramp down time to be programmed into the Optidrive, which can be selected by 
digital inputs (dependent on the setting of P-15) or selected Automatically in the case of a mains power loss if P-05 = 2. 
When set to 0.00, the drive will coast to stop. 

P-25 

Analog Output Function Select 

Digital Output Mode. Logic 1 = +24V DC  

0 : Drive Enabled (Running)

. Logic 1 when the Optidrive is enabled (Running) 

1 : Drive Healthy

. Logic 1 When no Fault condition exists on the drive 

2 : At Target Frequency (Speed)

. Logic 1 when the output frequency matches the setpoint frequency 

3: Drive Tripped

. Logic 1 when the drive is in a fault condition 

4

 

: Output Frequency >= Limit

. Logic 1 when the output frequency exceeds the adjustable limit set in P-19 

5

 

: Output Current >= Limit

. Logic 1 when the motor current exceeds the adjustable limit set in P-19 

6

 

: Output Frequency < Limit

. Logic 1 when the output frequency is below the adjustable limit set in P-19 

7

 

: Output Current < Limit

. Logic 1 when the motor current is below the adjustable limit set in P-19 

Analog Output Mode 

8 : Output Frequency (Motor Speed)

. 0 to P-01, resolution 0.1Hz 

9 : Output (Motor) Current

. 0 to 200% of P-08, resolution 0.1A 

P-26 

Skip frequency hysteresis band 

0.0 

P-01 

0.0 

Hz / Rpm 

P-27 

Skip Frequency 

0.0 

P-01 

0.0 

Hz / Rpm 

The Skip Frequency function is used to avoid the Optidrive operating at a certain output frequency, for example at a frequency 
which causes mechanical resonance in a particular machine. Parameter P-27 defines the centre point of the skip frequency band, 
and is used conjunction with P-26. The Optidrive output frequency will ramp through the defined band at the rates set in P-03 and 
P-04 respectively, and will not hold any output frequency within the defined band. If the frequency reference applied to the drive is 
within the band, the Optidrive output frequency will remain at the upper or lower limit of the band. 

P-28 

V/F Characteristic Adjustment Voltage 

250 / 500 

P-29 

V/F Characteristic Adjustment Frequency 

0.0 

P-09 

0.0 

Hz 

This parameter in conjunction with P-28 sets a frequency point at which the voltage set in P-29 is applied to the motor. Care must 
be taken to avoid overheating and damaging the motor when using this feature. See section 6.3 for further information. 
 
 
 

Summary of Contents for Optidrive ODE-2-11005-1H01 Series

Page 1: ...ptidrive ODE 2 User Guide Revision 3 20 www invertekdrives com 1 1 Introduction User Guide IP20 IP66 NEMA 4X AC Variable Speed Drive 0 37 11kW 0 5 15HP 110 480V Installation and Operating Instructions...

Page 2: ...13 Motor Nameplate Details Enter the motor rated voltage in P 07 Enter the motor rated current in P 08 Enter the motor rated frequency in P 09 Keypad operation can be found on page 16 Control Termina...

Page 3: ...nter the motor rated current in P 08 Enter the motor rated frequency in P 09 Supply Voltage 110 115 200 240 400 480 VAC 10 1 or 3 Phase Check the drive rating information on page 26 Fuses or MCB Fuse...

Page 4: ...cy in P 09 Supply Voltage 110 115 200 240 400 480 VAC 10 1 or 3 Phase Check the drive rating information on page 26 Fuses or MCB Fuse Ratings given on page 26 Recommended cable sizes shown on page 26...

Page 5: ...factors including the environment in which the drive is installed motor switching frequency motor cable lengths and installation methods adopted For shielded motor cable lengths greater than 100m and...

Page 6: ...ctions 13 4 6 Motor Thermal overload Protection 14 4 7 Control Terminal Wiring 14 4 8 Connection Diagram 14 4 9 Using the REV 0 FWD Selector Switch Switched Version Only 15 4 10 Control Terminal Conne...

Page 7: ...ses or MCB Suitably rated fuses or MCB should be fitted in the mains supply to the drive according to any local legislation or codes Do not carry out any work on the drive control cables whilst power...

Page 8: ...50 1KB4 ODE 2 22150 1K04 1 5 ODE 2 22020 1HB4 ODE 2 22020 1H04 2 7 2 ODE 2 22220 1KB4 ODE 2 22220 1K04 2 2 ODE 2 22030 1HB4 ODE 2 22030 1H04 3 10 5 2 N A ODE 2 32040 1K04 2 4 0 N A ODE 2 32050 1H04 2...

Page 9: ...97 5 5 0 22 10 0 39 1 0 2 2 2 221 8 70 207 8 15 137 5 39 209 8 23 5 3 0 21 150 5 91 110 4 33 63 2 48 5 5 0 22 10 0 39 1 7 3 8 3 261 10 28 246 9 69 247 9 72 6 0 24 175 6 89 131 5 16 80 3 15 5 5 0 22 1...

Page 10: ...All Frame Sizes Control Terminals 0 5 Nm 4 5 lb in Power Terminals 1 Nm 8 85 lb in 3 7 Guidelines for mounting IP66 Units Before mounting the drive ensure that the chosen location meets the environmen...

Page 11: ...For conduit installations the conduit entry holes require standard opening to the required sizes specified per the NEC Not intended for rigid conduit system Power Isolator Lock Off On the switched mo...

Page 12: ...tor ground must be connected to one of the ground terminals on the drive Ground Fault Monitoring As with all inverters a leakage current to earth can exist The Optidrive is designed to produce the min...

Page 13: ...t power supply faults Part numbers are shown in the table Supply Frame Size AC Input Inductor 230 Volt 1 Phase 1 OPT 2 L1016 20 2 OPT 2 L1025 20 3 N A 400 Volt 3 Phase 2 OPT 2 L3006 20 2 OPT 2 L3010 2...

Page 14: ...s of different voltages e g 24 Volt DC and 110 Volt AC should not be routed in the same cable Maximum control terminal tightening torque is 0 5Nm Control Cable entry conductor size 0 05 2 5mm2 30 12 A...

Page 15: ...un in PI Control 5 1 In Speed Control the speed is controlled from the Local POT In PI Control Local POT controls PI set point Run in Preset Speed Control STOP Run in PI Control 5 0 2 4 5 8 12 In Pres...

Page 16: ...turned to minimum 5 Turn the potentiometer to maximum The motor will accelerate to 50Hz the default value of P 01 under the control of the accelerating ramp time P 03 The display shows 50Hz at max sp...

Page 17: ...the motor P 10 Motor Rated Speed 0 30000 0 Rpm This parameter can optionally be set to the rated nameplate rpm of the motor When set to the default value of zero all speed related parameters are displ...

Page 18: ...1 0 0 Hz Rpm P 21 Preset Frequency Speed 2 P 02 P 01 0 0 Hz Rpm P 22 Preset Frequency Speed 3 P 02 P 01 0 0 Hz Rpm P 23 Preset Frequency Speed 4 P 02 P 01 0 0 Hz Rpm Preset Speeds Frequencies selected...

Page 19: ...ut Software Protection Enables the internal brake chopper without software protection An external thermal protection device should be fitted P 35 Analog Input 1 Scaling 0 0 500 0 100 0 Scales the anal...

Page 20: ...erence between the setpoint and feedback for which the drive will remain in Standby Mode This allows the drive to ignore small feedback errors and remain in Standby mode until the feedback drops suffi...

Page 21: ...y This value maybe lower than the selected frequency in P 17 if the drive is too hot The drive will automatically reduce the switching frequency to prevent an over temperature trip and maintain operat...

Page 22: ...e or similar to digital input 3 7 Open Stop disable Closed Fwd Run enable Open Stop disable Closed Rev Run enable External trip input Open Trip Closed Run Analog input 1 reference Closing digital inpu...

Page 23: ...ton Open Keypad speed ref 24V Preset speed 1 3 1 Open Stop disable Closed Run enable Closed remote UP push button External trip input Open Trip Closed Run Closed remote DOWN push button Connect extern...

Page 24: ...trip input Open Trip Closed Run PI feedback analog input Connect external motor thermistor PTC type or similar to digital input 3 4 Normally Open NO Momentary close to run Normally Closed NC Momentary...

Page 25: ...2 Bytes Register Address 2 Bytes No Of Registers 2 Bytes 2nd Register Value 2 Bytes Value 2 Bytes Register Value 2 Bytes CRC Checksum 2 Bytes Etc CRC Checksum 2 Bytes CRC Checksum 2 Bytes CRC Checksum...

Page 26: ...0 75 1 8 5 16 10 1 5 14 4 3 1 5 14 50 N A 1 1 5 2 13 9 25 20 2 5 12 7 1 5 14 50 N A 2 1 5 2 15 2 25 20 2 5 12 7 1 5 14 100 100 2 2 2 3 19 5 25 25 4 10 10 5 1 5 14 100 50 3 4 5 30 5 40 40 4 8 16 2 5 12...

Page 27: ...recommends the installation of input line reactors Frequency 50 60Hz 5 Variation Short Circuit Capacity Voltage Rating Min kW HP Max kW HP Maximum supply short circuit current 115V 0 37 0 5 1 1 1 5 5...

Page 28: ...vertek standard braking resistor is being used P 34 MUST be 1 Increase the deceleration time P 04 or 2nd deceleration time P 24 Reduce the load inertia For Other Brake Resistors Ensure the resistance...

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