Capacitor voltage transformer TYD36
instrumentmeasurementimmersed

Capacitor voltage transformer - TYD36 - Dowei Electric - instrument / measurement / immersed
Capacitor voltage transformer - TYD36 - Dowei Electric - instrument / measurement / immersed
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Characteristics

Type
instrument, measurement
Configuration
immersed
Applications
for industrial applications, for electrical networks, protection, for energy meters, substation
Electrical characteristics
single-phase, high-voltage, capacitor voltage
Mounting
floor-standing
Norms
IEC, UL, ANSI, TUV
Other characteristics
protection, control, high-accuracy, oil-immersed, coupling, multi-winding
Primary voltage

36 kV

Secondary voltage

Max.: 220 V

Min.: 110 V

Frequency

50 Hz, 60 Hz

Description

• IEC 61869, ANSI/IEEE C93.1, NEMA
• ISO 9001, KEMA, CESI, CE, TUV, UL, ASTA
• Seismic design, ETGI-1.020, IEEE Std 693, NCh2369
• Structural design, ASTM A325, ANSI/AISC 360, AWS D1.1
• High altitude correction per IEC 61869 & IEEE C93.1, ~ 5000m
• High Quality Paper-Oil Insulation, Mineral oil (No PCB), Hermetically Sealed
• Accuracy classes 0.1, 0.2, 0.5, 1.0, 3.0, 3P, 6P or 0.15, 0.3, 0.6, 1.2 (IEEE)
• Robust and Reliable damping circuit reduces risk of damage
• Operation as coupling capacitor for power line transmission

36kV Capacitor Voltage Transformer (CVT), also called a Capacitive Voltage Transformer or Capacitor Potential Transformer (CPT), is a voltage instrument transformer that uses a capacitive voltage divider combined with an electromagnetic transformer unit to reduce medium-voltage system voltage to standardized low-voltage outputs for metering, protection, control, and communication applications.

Unlike an inductive voltage transformer, a CVT uses capacitors to step down the voltage first, making it suitable for voltage measurement and power system applications.

Working Principle
A 36kV CVT consists of:
·Capacitor Voltage Divider (CVD)
·Two series-connected capacitors divide the high system voltage.
·Intermediate Transformer (IT)
·Further reduces the divided voltage to a standard secondary voltage.
·Compensation Reactor
·Compensates capacitive reactance and improves accuracy.
·Damping Circuit
·Suppresses ferroresonance and transient oscillations.

Main Components
·High-voltage capacitor stack
·Capacitive voltage divider
·Intermediate electromagnetic transformer
·Compensation reactor
·Damping resistor and protection circuit
·Insulating oil or SF6 insulation system
·Porcelain or composite insulator housing
·High-voltage terminal
·Secondary terminal box
·Grounding terminal
·Mounting structure

Typical Technical Specifications
·Highest System Voltage: 36 kV
·Rated Primary Voltage: 33 kV / 34.5 kV
·Rated Secondary Voltage: 100 V, 110 V, 100/√3 V, 110/√3 V
·Frequency: 50 Hz / 60 Hz
·Accuracy Class: 0.2, 0.5, 1.0, 3P, 6P
·Rated Burden: 10–200 VA
·Voltage Factor: 1.2 continuous, 1.5–1.9 short time
·Insulation Level: 70/170 kV (Typical)
·Installation: Outdoor
·Insulation Type: Oil-paper / SF6 / Dry type

Applications
A 36kV capacitor voltage transformer is commonly used in:
·Medium-voltage substations
·Distribution networks
·Industrial power systems
·Renewable energy plants
·Wind and solar collector substations
·Railway power supply systems
·Medium-voltage switchgear systems

Functions
1. Voltage Measurement
·Provides an accurate reduced voltage signal for:
·Energy meters
·Panel meters
·Power quality analyzers
2. Protection
·Provides voltage signals for:
·Overvoltage protection
·Undervoltage protection
·Synchronizing protection
·Distance protection (where applicable)
3. Power System Monitoring
·Used for:
·SCADA systems
·Automation systems
·Fault recording
·Voltage monitoring

Advantages
·Provides high-voltage isolation
·Compact structure compared with conventional VT designs
·Good transient response
·Suitable for outdoor installations
·Can support communication coupling functions in higher-voltage CVT designs
·Reliable voltage measurement

Typical Secondary Outputs
Common secondary voltages:
·100 V
·110 V
·100/√3 V
·110/√3 V

Secondary outputs are connected to:
·Protection relays
·Measuring instruments
·Synchronizing equipment
·SCADA/RTU systems
·Automation controllers

Common Standards
A 36kV capacitor voltage transformer is generally designed according to:
·IEC 61869-5 – Additional requirements for Capacitor Voltage Transformers
·IEC 61869-1 – General requirements for instrument transformers
·IEEE C57.13 – Instrument Transformer Standards

Typical Applications in a 36kV Substation
·Busbar voltage sensing
·Feeder voltage measurement
·Protection relay voltage input
·Grid monitoring
·Synchronization circuits
·SCADA voltage acquisition
·Power quality monitoring

A 36kV Capacitor Voltage Transformer (CVT) provides reliable voltage transformation and isolation for medium-voltage power systems. Its capacitor divider technology offers a compact and efficient solution for voltage measurement, protection, and automation applications in modern substations.
*Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.