Stabilization TypeServo Motor Controlled With Buck/Boost Transformer
Correction Speed10-50 Volts Per Second
Frequency50Hz ± 5%
MountingFloor Mounted
ComplianceISO / CE Certified, IS Standard Tested
Input Voltage Range: 300V – 470V AC (Phase to Phase, customizable range) Output Voltage: 400V ± 1% (adjustable) Capacity Range: 5 KVA to 500 KVA (as per requirement) Phase Type: Three Phase, Four Wire System Stabilization Type: Servo Motor Controlled with Buck/Boost Transformer Correction Speed: 10–50 Volts per Second (varies by capacity) Frequency: 50Hz ± 5% Efficiency: ≥ 95% Cooling Type: Natural Air Cooled / Oil Cooled (based on capacity) Mounting: Floor Mounted (Indoor or Outdoor Cabinet options) Protection Features: Overload, Short Circuit, Over/Under Voltage, Phase Reversal Display: Digital Volt/Amp Meter, LED Indicators for Input/Output Status Control System: Microcontroller-Based Automatic Operation Applications: CNC Machines, Medical Equipment, Printing Press, Industrial Units, Commercial Complexes Warranty: 12–24 months standard Compliance: ISO / CE Certified, IS Standard Tested
Input Voltage Range: 300V – 470V AC (Phase to Phase, customizable range) Output Voltage: 400V ± 1% (adjustable) Capacity Range: 5 KVA to 500 KVA (as per requirement) Phase Type: Three Phase, Four Wire System Stabilization Type: Servo Motor Controlled with Buck/Boost Transformer Correction Speed: 10–50 Volts per Second (varies by capacity) Frequency: 50Hz ± 5% Efficiency: ≥ 95% Cooling Type: Natural Air Cooled / Oil Cooled (based on capacity) Mounting: Floor Mounted (Indoor or Outdoor Cabinet options) Protection Features: Overload, Short Circuit, Over/Under Voltage, Phase Reversal Display: Digital Volt/Amp Meter, LED Indicators for Input/Output Status Control System: Microcontroller-Based Automatic Operation Applications: CNC Machines, Medical Equipment, Printing Press, Industrial Units, Commercial Complexes Warranty: 12–24 months standard Compliance: ISO / CE Certified, IS Standard Tested
Other Relevant CharacteristicsFailure Of Testing Machinery And Equipment,Discontinued Operation Of Crucial Processes,Interruption In Drug Formulation Process,High Harmonic Distortion From Automated Machinery And Drives,Varying Harmonic Spectrum And Fluctuating Load Profile,Maintains T
Typical Challenges
Failure of sophisticated testing machinery and micro-processor controlled sensitive equipment
Discontinued operation of crucial process such as synthesis, fermentation, milling and granulation
Interruption in crucial drug formulation process
Root Cause Analysis
High harmonic distortion generated by automated machinery and drives basically employed in manufacturing plant, chiller plant and utility plant
Varying harmonic spectrum and fluctuating load profile
Solution
P2 Power Active Harmonic Filter at major non-linear loads (p2p-415-af3)
P2 Power Hybrid Filter (p2p-415-hf3) - suitable when power factor is low
Benefits
Total current harmonic distortion maintained within limits specified as per IEEE standard (iTDD <8%)
Elimination of failure of precision machinery, drive cards and PLCs
True power factor close to unity
Clean and uninterrupted power supply
Typical Challenges
Failure of sophisticated testing machinery and micro-processor controlled sensitive equipment
Discontinued operation of crucial process such as synthesis, fermentation, milling and granulation
Interruption in crucial drug formulation process
Root Cause Analysis
High harmonic distortion generated by automated machinery and drives basically employed in manufacturing plant, chiller plant and utility plant
Varying harmonic spectrum and fluctuating load profile
Solution
P2 Power Active Harmonic Filter at major non-linear loads (p2p-415-af3)
P2 Power Hybrid Filter (p2p-415-hf3) - suitable when power factor is low
Benefits
Total current harmonic distortion maintained within limits specified as per IEEE standard (iTDD <8%)
Elimination of failure of precision machinery, drive cards and PLCs
True power factor close to unity
Clean and uninterrupted power supply
ApplicationHarmonic Attenuation, Reactive Power Compensation, Negative Sequence Compensation
BenefitsCompliant With Limits,Unity,Reduced,Reduced,Reduced,Optimized,Improved,Reduced,Reduced,Increased,Compact,Indigenous, Low Maintenance
Features\\n\\nFast 32 bit digital signal processor\\nMulti-Level converter architecture\\nDirect Connection to 575V and 690V loads\\nSynchronous Rotating Frame Principal for best performance\\nUltra fast compensation\\nProven performance on welding\\nHarmonic Attenuation of >98%\\nHigh Efficiency of >98%\\nSelective Harmonic compensation\\nLeading/Lagging Reactive Power Compensation\\nNegative Sequence Compensation (load balancing)\\n15 possible Priority Selection settings for maximum flexibility\\nSmart auto foldback to avoid over loading of filter\\n7" touch screen display\\nEthernet based remote monitoring\\nMODBUS RTU, USB, SD Card\\nInternal CAN Communication\\nClosed Loop & Open Loop operation\\nParalleling of upto 32 filters for higher capacity\\nOperator Activity Log\\n>2,00,000 time stamped events can be logged in internal NAND memory\\n\\n \\nBenefits\\n\\nCompliance with prescribed harmonic limits - No penalty\\nUnity Power Factor - higher savings\\nReduced energy (kVAh) charges - higher savings\\nReduced peak demand charges - higher savings\\nReduced fuel consumption in generators - higher savings\\nUltra fast compensation - effective with fast fluctuating load\\nOptimum capacity utilization of electrical infrastructure\\nOptimum capacity utilization of backup generators\\nImproved voltage profile\\nReduced risk of transformer failure - higher uptime\\nReduced risk of equipment failure - higher uptime\\nIncreased operational reliability - higher uptime\\nCompact footprint\\nIndigenous design, low maintenance and prompt service\\n
Features\\n\\nFast 32 bit digital signal processor\\nMulti-Level converter architecture\\nDirect Connection to 575V and 690V loads\\nSynchronous Rotating Frame Principal for best performance\\nUltra fast compensation\\nProven performance on welding\\nHarmonic Attenuation of >98%\\nHigh Efficiency of >98%\\nSelective Harmonic compensation\\nLeading/Lagging Reactive Power Compensation\\nNegative Sequence Compensation (load balancing)\\n15 possible Priority Selection settings for maximum flexibility\\nSmart auto foldback to avoid over loading of filter\\n7" touch screen display\\nEthernet based remote monitoring\\nMODBUS RTU, USB, SD Card\\nInternal CAN Communication\\nClosed Loop & Open Loop operation\\nParalleling of upto 32 filters for higher capacity\\nOperator Activity Log\\n>2,00,000 time stamped events can be logged in internal NAND memory\\n\\n \\nBenefits\\n\\nCompliance with prescribed harmonic limits - No penalty\\nUnity Power Factor - higher savings\\nReduced energy (kVAh) charges - higher savings\\nReduced peak demand charges - higher savings\\nReduced fuel consumption in generators - higher savings\\nUltra fast compensation - effective with fast fluctuating load\\nOptimum capacity utilization of electrical infrastructure\\nOptimum capacity utilization of backup generators\\nImproved voltage profile\\nReduced risk of transformer failure - higher uptime\\nReduced risk of equipment failure - higher uptime\\nIncreased operational reliability - higher uptime\\nCompact footprint\\nIndigenous design, low maintenance and prompt service\\n
Automatic Grade : Automatic
Number Of Flower : Active Harmonic Filter
Application : Harmonic Attenuation, Reactive Power Compensation, Negative Sequence Compensation
Typical Challenges
Failure of expensive electronic cards
Overloading and heating of neutral conductor
Data loss due to sudden outages and down-time
Root Cause Analysis
High harmonic distortion generated by UPS, Rectifiers, VFDs, Battery Chargers as main reason of electronic cards failure
Single phase SMPS, lighting loads as major source of high neutral current
Solution
P2 Power Active Harmonic Filter with Neutral Compensator (p2p-415-af4)
P2 Power Hybrid Filter with Neutral Compensator (p2p-415-hf4) - best suited when power factor is low
Benefits
Negligible likelihood of electronic cards failure
Significant savings (both tangible and intangible) through elimination of failures, reduced outages and improved true power factor
Neutral current within acceptable range
Total current harmonic distortion maintained within limits specified as per IEEE standard (iTDD <8%)
True power factor maintained close to unity
Reduced monthly electricity bills
Continuous and unbroken power supply
No risk of computer system lock-ups, meter error and premature apparatus failure
Typical Challenges
Failure of expensive electronic cards
Overloading and heating of neutral conductor
Data loss due to sudden outages and down-time
Root Cause Analysis
High harmonic distortion generated by UPS, Rectifiers, VFDs, Battery Chargers as main reason of electronic cards failure
Single phase SMPS, lighting loads as major source of high neutral current
Solution
P2 Power Active Harmonic Filter with Neutral Compensator (p2p-415-af4)
P2 Power Hybrid Filter with Neutral Compensator (p2p-415-hf4) - best suited when power factor is low
Benefits
Negligible likelihood of electronic cards failure
Significant savings (both tangible and intangible) through elimination of failures, reduced outages and improved true power factor
Neutral current within acceptable range
Total current harmonic distortion maintained within limits specified as per IEEE standard (iTDD <8%)
True power factor maintained close to unity
Reduced monthly electricity bills
Continuous and unbroken power supply
No risk of computer system lock-ups, meter error and premature apparatus failure
ComponentsCapacitors, Inductors, Power Electronic Devices
Rated Current10 A To Several Hundred Amperes
Operating Frequency50 Hz Or 60 Hz
Control MethodAutomatic With Microprocessor Or PLC-based
Protection FeaturesOvercurrent, Short Circuit, Overload Protection
Power Factor Improvement Range0.7-0.95 Up To 0.98 Or Higher
Operating Temperature-10°C To +50°C
Input voltage: Three phase 415 V AC. Power factor correction type: Hybrid (combination of passive and active correction). Components include capacitors, inductors, and power electronic devices. Rated current: Depends on panel size, typically from 10 A to several hundred amperes. Operating frequency: 50 Hz or 60 Hz. Control method: Automatic with microprocessor or PLC-based control. Protection features: Overcurrent, short circuit, and overload protection. Power factor improvement range: Typically from 0.7–0.95 up to 0.98 or higher. Mounting: Floor mounted or panel mounted. Cooling: Natural or forced ventilation. Operating temperature: -10°C to +50°C. Humidity: Up to 90% non-condensing. Standards compliance: IEC or relevant local standards.
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Three Phase 415 V Hybrid Power Factor Correction Panel
Input voltage: Three phase 415 V AC. Power factor correction type: Hybrid (combination of passive and active correction). Components include capacitors, inductors, and power electronic devices. Rated current: Depends on panel size, typically from 10 A to several hundred amperes. Operating frequency: 50 Hz or 60 Hz. Control method: Automatic with microprocessor or PLC-based control. Protection features: Overcurrent, short circuit, and overload protection. Power factor improvement range: Typically from 0.7–0.95 up to 0.98 or higher. Mounting: Floor mounted or panel mounted. Cooling: Natural or forced ventilation. Operating temperature: -10°C to +50°C. Humidity: Up to 90% non-condensing. Standards compliance: IEC or relevant local standards.
Typical Challenges
Flickering and failure of lighting fixtures
Interrupted operation of lifts/elevators
Overloading and burning of neutral conductor
Root Cause Analysis
High harmonic distortion generated by large chiller units, lifts/elevators and lighting loads
Fluctuating load profile and sudden reactive jerks of lifts/elevators
Summation of triple-N harmonics in neutral conductor leading to high neutral current
Solution
P2 Power Active Harmonic Filter at major non-linear loads (p2p-415-af3)
P2 Power Active Harmonic Filter with Neutral Compensator (p2p-415-af4) - when neutral current is high
P2 Power Hybrid Filter (p2p-415-hf3) - suitable when power factor is low
Benefits
Total harmonic distortion maintained within limits specified as per IEEE standard (iTDD <8%, vTHD <5%) - free from any risk of harmonic penalty (if applicable)
High true power factor; free from any risk of low pf penalty (if applicable)
Significant savings through elimination of lighting failures and reduced losses
Uninterrupted operation of lifts/elevators
Reduced neutral current and overloading of neutral conductor
Typical Challenges
Flickering and failure of lighting fixtures
Interrupted operation of lifts/elevators
Overloading and burning of neutral conductor
Root Cause Analysis
High harmonic distortion generated by large chiller units, lifts/elevators and lighting loads
Fluctuating load profile and sudden reactive jerks of lifts/elevators
Summation of triple-N harmonics in neutral conductor leading to high neutral current
Solution
P2 Power Active Harmonic Filter at major non-linear loads (p2p-415-af3)
P2 Power Active Harmonic Filter with Neutral Compensator (p2p-415-af4) - when neutral current is high
P2 Power Hybrid Filter (p2p-415-hf3) - suitable when power factor is low
Benefits
Total harmonic distortion maintained within limits specified as per IEEE standard (iTDD <8%, vTHD <5%) - free from any risk of harmonic penalty (if applicable)
High true power factor; free from any risk of low pf penalty (if applicable)
Significant savings through elimination of lighting failures and reduced losses
Uninterrupted operation of lifts/elevators
Reduced neutral current and overloading of neutral conductor
Protection FeaturesOverload, Short Circuit, Under-voltage, Over-voltage Protection
Operating Temperature-10°C To +50°C
Number Of FlowerDynamic Voltage Regulator
Input Voltage Range140V To 280V AC
Output Voltage220V With ±1-3% Variation
Frequency50Hz Or 60Hz
Response Time<0.1 Seconds
CoolingNatural Air Or Forced Air Cooling With A Fan
\\n\\nInput voltage range typically 140V to 280V AC depending on the model. Output voltage is a stable regulated voltage, usually 220V with ±1-3% variation. Frequency supported is 50Hz or 60Hz. Regulation is automatic voltage regulation (AVR) using a servo motor or electronic control. Response time to voltage fluctuation is typically less than 0.1 seconds. Capacity or power rating ranges from 1 kVA to several hundred kVA. Cooling is done by natural air or forced air cooling with a fan. Protection features include overload protection, short circuit protection, under-voltage and over-voltage protection. Available in single phase and three phase versions. Efficiency generally exceeds 95%. Mounting options include floor standing or panel mounted. Control can be manual or digital display with monitoring options. Operating temperature ranges from -10°C to +50°C and humidity tolerance is up to 90% non-condensing.\\n\\n
\\n\\nInput voltage range typically 140V to 280V AC depending on the model. Output voltage is a stable regulated voltage, usually 220V with ±1-3% variation. Frequency supported is 50Hz or 60Hz. Regulation is automatic voltage regulation (AVR) using a servo motor or electronic control. Response time to voltage fluctuation is typically less than 0.1 seconds. Capacity or power rating ranges from 1 kVA to several hundred kVA. Cooling is done by natural air or forced air cooling with a fan. Protection features include overload protection, short circuit protection, under-voltage and over-voltage protection. Available in single phase and three phase versions. Efficiency generally exceeds 95%. Mounting options include floor standing or panel mounted. Control can be manual or digital display with monitoring options. Operating temperature ranges from -10°C to +50°C and humidity tolerance is up to 90% non-condensing.\\n\\n
Country of Origin : India
Protection Features : Overload, Short Circuit, Under-voltage, Over-voltage Protection
Features
Special design for reduced heating
Vacuum Impregnated
Rugged design for harsh environments
Thermal protection against over temperature
Low Noise
Benefits
Remove harmonic amplification
Increase the life of capacitors
Avoid harmonic resonance in the network
Reduce cable and transformer losses
Avoid over current during hard switching of capacitors
Features
Special design for reduced heating
Vacuum Impregnated
Rugged design for harsh environments
Thermal protection against over temperature
Low Noise
Benefits
Remove harmonic amplification
Increase the life of capacitors
Avoid harmonic resonance in the network
Reduce cable and transformer losses
Avoid over current during hard switching of capacitors
Input voltage: single phase 220V to 240V AC. Frequency: 50 Hz or 60 Hz. Harmonic compensation range: up to 50th harmonic order. Rated current: varies by model, typically from 5 A to 100 A. Control method: digital signal processor (DSP) based real-time harmonic detection and filtering. Response time: milliseconds to microseconds. Power factor correction capability: improves power factor close to unity. Protection features include overcurrent, short circuit, overvoltage, and thermal protection. Cooling is typically forced air or natural convection. Mounting options include wall-mounted or panel-mounted. Operating temperature ranges from -10°C to +50°C. Humidity tolerance is up to 95% non-condensing. Communication protocols such as Modbus or Profibus may be supported for monitoring and control. Compliance adheres to IEC standards and relevant industry norms
Input voltage: single phase 220V to 240V AC. Frequency: 50 Hz or 60 Hz. Harmonic compensation range: up to 50th harmonic order. Rated current: varies by model, typically from 5 A to 100 A. Control method: digital signal processor (DSP) based real-time harmonic detection and filtering. Response time: milliseconds to microseconds. Power factor correction capability: improves power factor close to unity. Protection features include overcurrent, short circuit, overvoltage, and thermal protection. Cooling is typically forced air or natural convection. Mounting options include wall-mounted or panel-mounted. Operating temperature ranges from -10°C to +50°C. Humidity tolerance is up to 95% non-condensing. Communication protocols such as Modbus or Profibus may be supported for monitoring and control. Compliance adheres to IEC standards and relevant industry norms
Harmonic Compensation RangeUp To 50th Harmonic Order
Operating Temperature-10°C To +50°C
HumidityUp To 95% Non-condensing
Input voltage: Three phase, typically 380V to 480V AC. Frequency: 50 Hz or 60 Hz. Harmonic compensation range: Up to 50th harmonic order. Rated current: Depends on model, ranging from 10 A to several hundred amperes. Control method: Digital signal processor (DSP) based real-time harmonic detection and filtering. Response time: Milliseconds to microseconds. Power factor correction capability: Improves power factor close to unity. Protection features: Overcurrent, short circuit, overvoltage, and thermal protection. Cooling: Forced air cooling with fans. Mounting: Floor or panel mounted. Operating temperature: -10°C to +50°C. Humidity: Up to 95% non-condensing. Communication: Optional communication protocols like Modbus, Profibus for monitoring and control. Compliance: IEC standards and relevant industry norms.
Input voltage: Three phase, typically 380V to 480V AC. Frequency: 50 Hz or 60 Hz. Harmonic compensation range: Up to 50th harmonic order. Rated current: Depends on model, ranging from 10 A to several hundred amperes. Control method: Digital signal processor (DSP) based real-time harmonic detection and filtering. Response time: Milliseconds to microseconds. Power factor correction capability: Improves power factor close to unity. Protection features: Overcurrent, short circuit, overvoltage, and thermal protection. Cooling: Forced air cooling with fans. Mounting: Floor or panel mounted. Operating temperature: -10°C to +50°C. Humidity: Up to 95% non-condensing. Communication: Optional communication protocols like Modbus, Profibus for monitoring and control. Compliance: IEC standards and relevant industry norms.
P2 Power Solutions Pvt. Ltd. is a bankable name, involved in providing custom solar solutions to clients across the nation. We are based in Noida (Uttar Pradesh, India) and we render personalized solutions for solar panel, plants, and products among others. Our work diligence and dedication towards complete client satisfaction are the reasons behind our worldwide recognition.
With our services, we work on the provided details and make use of modern work methods to render precise solutions.
P2 Power Solutions Pvt. Ltd. is a bankable name, involved in providing custom solar solutions to clients across the nation. We are based in Noida (Uttar Pradesh, India) and we render personalized solutions for solar panel, plants, and products among others. Our work diligence and dedication towards complete client satisfaction are the reasons behind our worldwide recognition.
With our services, we work on the provided details and make use of modern work methods to render precise solutions.
We are a renowned name, offering fully-integrated solutions for a variety of solar EPC works. At P2 Power Solutions Pvt. Ltd., we are a group of individuals, who work together to provide end-to-end solutions. With our services, we take care of engineering & design, manufacturing, material procurement, project management and commissioning. Besides, we provide solutions for operation & maintenance on demand. The company is based in Noida (Uttar Pradesh, India) and we customize our services as per the individual’s functional needs. So, contact us anytime.
We are a renowned name, offering fully-integrated solutions for a variety of solar EPC works. At P2 Power Solutions Pvt. Ltd., we are a group of individuals, who work together to provide end-to-end solutions. With our services, we take care of engineering & design, manufacturing, material procurement, project management and commissioning. Besides, we provide solutions for operation & maintenance on demand. The company is based in Noida (Uttar Pradesh, India) and we customize our services as per the individual’s functional needs. So, contact us anytime.
It allows compensation of very high fluctuating reactive power demand. This system uses switching algorithm to toggle On/Off capacitor groups for required compensation with connection and disconnection of capacitor to and from the network at active zero potential crossing even in presence of harmonics.
It allows compensation of very high fluctuating reactive power demand. This system uses switching algorithm to toggle On/Off capacitor groups for required compensation with connection and disconnection of capacitor to and from the network at active zero potential crossing even in presence of harmonics.
Typical Challenges
Presence of high harmonic distortion, iTDD exceeding standard limit specified by IEEE
Low true power factor
Increased losses due to high harmonic distortion
Occasional failure of sensitive electronic cards, malfunctioning of control circuits and therefore abrupt tripping of continuous weaving machines
Root Cause Analysis
High level of harmonic distortion generated by AC/DC drives employed in loom machine is the main reason behind failure related issues
High harmonics resulting in low power factor (true)
Solution
P2 Power Active Harmonic Filter at major nonlinear loads (p2p-415-af3)
P2 Power Hybrid Filter (p2p-415-hf3) - best suited when power factor is low
Benefits
Total current harmonic distortion maintained within limits specified as per IEEE standard (iTDD <8%) - free from any risk of harmonic penalty (if applicable)
Fine quality of fabric and cloth
Reduced likelihood (almost negligible) of sensitive electronic cards failure
Uninterrupted operation of continuous process based weaving machines
True power factor maintained close to unity; free from any risk of low pf penalty (if applicable)
Significantly reduced monthly electricity bills
Typical Challenges
Presence of high harmonic distortion, iTDD exceeding standard limit specified by IEEE
Low true power factor
Increased losses due to high harmonic distortion
Occasional failure of sensitive electronic cards, malfunctioning of control circuits and therefore abrupt tripping of continuous weaving machines
Root Cause Analysis
High level of harmonic distortion generated by AC/DC drives employed in loom machine is the main reason behind failure related issues
High harmonics resulting in low power factor (true)
Solution
P2 Power Active Harmonic Filter at major nonlinear loads (p2p-415-af3)
P2 Power Hybrid Filter (p2p-415-hf3) - best suited when power factor is low
Benefits
Total current harmonic distortion maintained within limits specified as per IEEE standard (iTDD <8%) - free from any risk of harmonic penalty (if applicable)
Fine quality of fabric and cloth
Reduced likelihood (almost negligible) of sensitive electronic cards failure
Uninterrupted operation of continuous process based weaving machines
True power factor maintained close to unity; free from any risk of low pf penalty (if applicable)
Significantly reduced monthly electricity bills
Typical Challenges
Periodic failure of expensive electronic cards and therefore abrupt tripping of continuous spinning machines
Low grade quality of yarn thread due to interruption in power supply
Increased losses due to high harmonic distortion
Varying load profile thus making traditional power factor correction solution ineffective in maintaining true power factor close to unity (lagging)
Low power factor (especially when DC drives are present)
Root Cause Analysis
High level of harmonic distortion is the main reason of sensitive cards failure
Carding, Ring Frame, Auto Coner and Simplex identified as major non-linear loads - can be driven by AC or DC drives
Solution
P2 Power Active Harmonic Filter at major nonlinear loads (p2p-415-af3)
P2 Power Hybrid Filter (p2p-415-hf3) - best suited when power factor is low
Benefits
Reduced likelihood (almost negligible) of sensitive electronic cards failure
Superior quality of yarn thread
Total current harmonic distortion maintained within limits specified as per IEEE standard (iTDD <8%) - free from any risk of harmonic penalty (if applicable)
Uninterrupted operation of continuous process based spinning machines
True power factor maintained close to unity; free from any risk of low pf penalty (if applicable)
Significantly reduced monthly electricity bills
Typical Challenges
Periodic failure of expensive electronic cards and therefore abrupt tripping of continuous spinning machines
Low grade quality of yarn thread due to interruption in power supply
Increased losses due to high harmonic distortion
Varying load profile thus making traditional power factor correction solution ineffective in maintaining true power factor close to unity (lagging)
Low power factor (especially when DC drives are present)
Root Cause Analysis
High level of harmonic distortion is the main reason of sensitive cards failure
Carding, Ring Frame, Auto Coner and Simplex identified as major non-linear loads - can be driven by AC or DC drives
Solution
P2 Power Active Harmonic Filter at major nonlinear loads (p2p-415-af3)
P2 Power Hybrid Filter (p2p-415-hf3) - best suited when power factor is low
Benefits
Reduced likelihood (almost negligible) of sensitive electronic cards failure
Superior quality of yarn thread
Total current harmonic distortion maintained within limits specified as per IEEE standard (iTDD <8%) - free from any risk of harmonic penalty (if applicable)
Uninterrupted operation of continuous process based spinning machines
True power factor maintained close to unity; free from any risk of low pf penalty (if applicable)
Significantly reduced monthly electricity bills
Typical Challenges
Recurrent tripping and malfunction of printing machine (city line/high line)
Low power factor
Increased losses due to high harmonic distortion and low power factor
Interruption in operation of continuous printing machines
Root Cause Analysis
High level of harmonic distortion generated by AC/DC drives at city line machine identified as main reason of tripping related issues
Low power factor (true) due to high harmonic distortion and use of DC drives
Solution
P2 Power Active Harmonic Filter at major nonlinear loads especially city line/high line (p2p-415- af3)
P2 Power Hybrid Filter (p2p-415-hf3) - best suited when power factor is low
Benefits
Total current harmonic distortion maintained within limits specified as per IEEE standard (iTDD <8%)
True power factor maintained close to unity
Significant savings through elimination of failures and power factor improvement
Optimum capacity utilization of transformer
Reduced harmonic and reactive losses
Elimination of interruption in printing process such as paper break, low printing quality etc
Typical Challenges
Recurrent tripping and malfunction of printing machine (city line/high line)
Low power factor
Increased losses due to high harmonic distortion and low power factor
Interruption in operation of continuous printing machines
Root Cause Analysis
High level of harmonic distortion generated by AC/DC drives at city line machine identified as main reason of tripping related issues
Low power factor (true) due to high harmonic distortion and use of DC drives
Solution
P2 Power Active Harmonic Filter at major nonlinear loads especially city line/high line (p2p-415- af3)
P2 Power Hybrid Filter (p2p-415-hf3) - best suited when power factor is low
Benefits
Total current harmonic distortion maintained within limits specified as per IEEE standard (iTDD <8%)
True power factor maintained close to unity
Significant savings through elimination of failures and power factor improvement
Optimum capacity utilization of transformer
Reduced harmonic and reactive losses
Elimination of interruption in printing process such as paper break, low printing quality etc
We often custom engineer products for applications with unique requirements. Our range of custom solutions include the following
Unified Power quality conditioner (UPQC) - a complete solution which offers the advantages of P2P AVC and also P2P AF technology together. A one stop solution for all voltage or current related power quality issues.
Bi-DirectionalConditioners(BDC)-smoothACtoDCconversionusing IGBTs. Input harmonics are <3% and is especially useful when DC output is used to power regenerative loads.
We often custom engineer products for applications with unique requirements. Our range of custom solutions include the following
Unified Power quality conditioner (UPQC) - a complete solution which offers the advantages of P2P AVC and also P2P AF technology together. A one stop solution for all voltage or current related power quality issues.
Bi-DirectionalConditioners(BDC)-smoothACtoDCconversionusing IGBTs. Input harmonics are <3% and is especially useful when DC output is used to power regenerative loads.
Service TypeIndustrial Building Construction Service
Srvice ModeOffline
Payment ModeOnline and Offline
DurationDepend On Work
Service type: Industrial building construction service. Scope: Includes design, civil works, structural fabrication, and turnkey project execution. Construction type: Pre-engineered buildings, RCC framed structures, or hybrid systems. Materials used: high-grade steel, cement, concrete, and industrial-grade reinforcements. Project capacity: from small-scale workshops to large industrial complexes. Services included: site survey, architectural planning, foundation work, structural erection, roofing, flooring, MEP (mechanical, electrical, plumbing), and finishing. Compliance: adheres to IS codes, local building regulations, and safety standards. Project duration: varies from 3 months to 24 months depending on size and complexity. Quality control: includes material testing, structural audits, and third-party inspections. Applications: suitable for factories, warehouses, processing plants, and logistic hubs
Service type: Industrial building construction service. Scope: Includes design, civil works, structural fabrication, and turnkey project execution. Construction type: Pre-engineered buildings, RCC framed structures, or hybrid systems. Materials used: high-grade steel, cement, concrete, and industrial-grade reinforcements. Project capacity: from small-scale workshops to large industrial complexes. Services included: site survey, architectural planning, foundation work, structural erection, roofing, flooring, MEP (mechanical, electrical, plumbing), and finishing. Compliance: adheres to IS codes, local building regulations, and safety standards. Project duration: varies from 3 months to 24 months depending on size and complexity. Quality control: includes material testing, structural audits, and third-party inspections. Applications: suitable for factories, warehouses, processing plants, and logistic hubs
Typical Challenges
Extremely fast fluctuating load profile iTDD exceeding limits set as per IEEE standard Low PF (both leading and lagging)
High load unbalance
Increased losses due to high harmonics
Failure of welding transformers
Tripping of relays, protective circuits etc.
Root Cause Analysis
Double phase welding loads are identified as major non-linear Loads
Improper reactive compensation in all the
Solution
P2 Power IGBT based Active Harmonic Filter at major DBs for the purpose of harmonic mitigation, reactive compensation and load balancing
Benefits
P2 Power Active Filter effectively reduced high harmonic distortion and neutral current at PCC realizing following overall benefits:
Current harmonic distortion <8% at welding PCC Relatively balanced load profile Reduced (almost negligible) failure rate
Relatively smooth reactive compensation
Reduced losses due to simultaneous reduction in harmonic, reactive and negative sequence losses
Typical Challenges
Extremely fast fluctuating load profile iTDD exceeding limits set as per IEEE standard Low PF (both leading and lagging)
High load unbalance
Increased losses due to high harmonics
Failure of welding transformers
Tripping of relays, protective circuits etc.
Root Cause Analysis
Double phase welding loads are identified as major non-linear Loads
Improper reactive compensation in all the
Solution
P2 Power IGBT based Active Harmonic Filter at major DBs for the purpose of harmonic mitigation, reactive compensation and load balancing
Benefits
P2 Power Active Filter effectively reduced high harmonic distortion and neutral current at PCC realizing following overall benefits:
Current harmonic distortion <8% at welding PCC Relatively balanced load profile Reduced (almost negligible) failure rate
Relatively smooth reactive compensation
Reduced losses due to simultaneous reduction in harmonic, reactive and negative sequence losses
Since incorporation in 2006, P2 Power Solutions Pvt. Ltd. has been rendering a variety of power quality services. We operate from Noida (Uttar Pradesh, India) and render end-to-end solutions by examining the system, locating the source of problem and making appropriate corrections to make your system run at its peak efficiency. We charge reasonably for our services. So, turn to our services and enhance the efficiency & reliability of your facility.
Since incorporation in 2006, P2 Power Solutions Pvt. Ltd. has been rendering a variety of power quality services. We operate from Noida (Uttar Pradesh, India) and render end-to-end solutions by examining the system, locating the source of problem and making appropriate corrections to make your system run at its peak efficiency. We charge reasonably for our services. So, turn to our services and enhance the efficiency & reliability of your facility.
P2 Power Solutions Pvt. Ltd. is a bankable name when it comes to energy audit. The company is based in Noida (Uttar Pradesh, India) and we have been serving energy requirements of the clients since 2006. With our services, we establish pattern of energy use; identity how & where loses are occurring. Based on this data, we suggest engineering solutions to enhance energy efficiency in the system studied. So, to schedule an appointment with us, ring us on the given numbers.
P2 Power Solutions Pvt. Ltd. is a bankable name when it comes to energy audit. The company is based in Noida (Uttar Pradesh, India) and we have been serving energy requirements of the clients since 2006. With our services, we establish pattern of energy use; identity how & where loses are occurring. Based on this data, we suggest engineering solutions to enhance energy efficiency in the system studied. So, to schedule an appointment with us, ring us on the given numbers.
Thermography is a technique that is used for analyzing the characteristics of an object from its infrared image. Thermography allows us to see heat energy radiated by objects. SO, if you are seeking professional support for conducting thermography study of any object, look no further than P2 Power Solutions Pvt. Ltd. We are based in Noida (Uttar Pradesh, India) and we render precise solutions complying with the codes of the industry. So, share your needs and requirements, we assure to attain optimum quotients.
Thermography is a technique that is used for analyzing the characteristics of an object from its infrared image. Thermography allows us to see heat energy radiated by objects. SO, if you are seeking professional support for conducting thermography study of any object, look no further than P2 Power Solutions Pvt. Ltd. We are based in Noida (Uttar Pradesh, India) and we render precise solutions complying with the codes of the industry. So, share your needs and requirements, we assure to attain optimum quotients.
Arch flash is the very high temperature discharge that is produced by an electrical fault like short circuit fault, or abrupt failure of an insulator. This high temperature can be dangerous for the worker’s health. If you are seeking professional support for arc flash study, contact only. At P2 Power Solutions Pvt. Ltd., we are a group of engineers and trained professionals with arc flash analysis software at their fingertips. With our services, we conduct arc flash hazard assessment and determine the arc flash boundary & risk category. To schedule an appointment, reach us through our contact us page. We are based in Noida (Uttar Pradesh, India).
Arch flash is the very high temperature discharge that is produced by an electrical fault like short circuit fault, or abrupt failure of an insulator. This high temperature can be dangerous for the worker’s health. If you are seeking professional support for arc flash study, contact only. At P2 Power Solutions Pvt. Ltd., we are a group of engineers and trained professionals with arc flash analysis software at their fingertips. With our services, we conduct arc flash hazard assessment and determine the arc flash boundary & risk category. To schedule an appointment, reach us through our contact us page. We are based in Noida (Uttar Pradesh, India).
Micro inverter is a plug-and-play device. It is meant to convert direct current into alternating current. If you are seeking professional support for micro inverter solutions, look no further than P2 Power Solutions Pvt. Ltd. The company is based in Noida (Uttar Pradesh, India) and we provide solutions keeping the client’s functional needs in mind. Whether you seek solutions for micro inverter designing, operations, maintenance or repairing works, we provide solutions for everything. So, contact us anytime.
Micro inverter is a plug-and-play device. It is meant to convert direct current into alternating current. If you are seeking professional support for micro inverter solutions, look no further than P2 Power Solutions Pvt. Ltd. The company is based in Noida (Uttar Pradesh, India) and we provide solutions keeping the client’s functional needs in mind. Whether you seek solutions for micro inverter designing, operations, maintenance or repairing works, we provide solutions for everything. So, contact us anytime.