TL200-A2TPV Current Sensor 200A Hall Effect Module

Part Overview

The TL200-A2TPV is an active Hall Effect current sensor manufactured by Mornsun America, LLC, designed for measuring AC/DC currents up to 200A in closed-loop bidirectional configurations. This module features a single pass-through design with ratiometric voltage output, suitable for industrial measurement and control applications requiring high accuracy and fast response times.

The TL200-A2TPV maintains Active product status with 6940 units in current inventory. Equivalent substitute parts may be required due to supply chain constraints, design revisions, or application-specific packaging preferences while maintaining identical electrical and mechanical performance characteristics.

Substiute Parts

TL200-A2TPV
Mornsun America, LLCIn Stock: 6977TL200-A2TPV Datasheet
TL200-A2TPV
Current Part
TL200-A2PV
Mornsun America, LLCIn Stock: 1133TL200-A2PV Datasheet
TL200-A2PV
Parametric Equivalent

Key Parameters

Parameter Value
Manufacturer Part Number TL200-A2TPV
Manufacturer Mornsun America, LLC
Series TLxxx-A2TPV
Current Sensing Range 200A
Number of Channels 1
Sensor Type Hall Effect, Closed Loop
Measurement Type AC/DC Bidirectional
Output Type Ratiometric Voltage
Sensitivity 3.125 mV/A
Frequency Response DC ~ 200 kHz
Linearity ±0.1%
Accuracy ±0.5%
Supply Voltage 4.75V ~ 5.25V
Response Time 300 ns
Maximum Supply Current 14 mA
Operating Temperature Range -40°C ~ 105°C
Mounting Type Through Hole
Package Type Module, Single Pass Through
RoHS Status ROHS3 Compliant
Product Status Active

Substitute Part Grouping Explanation

Substitution eligibility for the TL200-A2TPV is determined by strict equivalence across the following critical parameters:

Current Sensing Capability: 200A maximum rating Sensor Architecture: Hall Effect, Closed Loop technology Measurement Capability: AC/DC bidirectional operation Output Characteristics: Ratiometric voltage output with 3.125 mV/A sensitivity Electrical Performance: ±0.1% linearity and ±0.5% accuracy specifications Frequency Response: DC to 200 kHz operational bandwidth Supply Requirements: 4.75V to 5.25V input voltage range Thermal Performance: -40°C to 105°C operating temperature range Mechanical Interface: Through-hole mounting with single pass-through module configuration

Parts meeting all these parameters are classified as parametric equivalents and may be substituted without circuit redesign or performance degradation.

Parameter Comparison

Parameter TL200-A2TPV TL200-A2PV Equivalence Status
Manufacturer Mornsun America, LLC Mornsun America, LLC Identical
Current Sensing 200A 200A Identical
Number of Channels 1 1 Identical
Sensor Type Hall Effect, Closed Loop Hall Effect, Closed Loop Identical
Measurement Type AC/DC Bidirectional AC/DC Bidirectional Identical
Output Type Ratiometric Voltage Ratiometric Voltage Identical
Sensitivity 3.125 mV/A 3.125 mV/A Identical
Frequency Response DC ~ 200 kHz DC ~ 200 kHz Identical
Linearity ±0.1% ±0.1% Identical
Accuracy ±0.5% ±0.5% Identical
Supply Voltage 4.75V ~ 5.25V 4.75V ~ 5.25V Identical
Response Time 300 ns 300 ns Identical
Maximum Supply Current 14 mA 14 mA Identical
Operating Temperature -40°C ~ 105°C -40°C ~ 105°C Identical
Mounting Type Through Hole Through Hole Identical
Package Type Module, Single Pass Through Module, Single Pass Through Identical
RoHS Status ROHS3 Compliant ROHS3 Compliant Identical
Product Status Active Active Identical
Inventory Status 6940 Pcs In Stock 1059 Pcs In Stock Both Available

Engineering Selection Recommendations

Primary Selection: TL200-A2TPV is the recommended primary choice, offering superior inventory availability with 6940 units in stock compared to 1059 units for the substitute part. Both components maintain Active product status and full ROHS3 compliance.

Substitute Selection: TL200-A2PV serves as a direct parametric equivalent when TL200-A2TPV availability is constrained. The substitute part maintains identical electrical specifications, thermal performance, and mechanical compatibility. Selection between these parts should be based solely on supply chain availability and delivery requirements, as no performance differentiation exists.

Compliance Considerations: Both parts carry ROHS3 Compliant certification and EAR99 export classification, ensuring regulatory compatibility across industrial applications. No additional qualification is required when substituting between these parts.

Frequently Asked Questions (FAQ)

Q: Can TL200-A2PV be used as a direct replacement for TL200-A2TPV in existing designs?

A: Yes. The TL200-A2PV is a parametric equivalent with identical electrical performance, output characteristics, and mechanical interface specifications. No circuit modifications or recalibration are required.

Q: What are the key differences between TL200-A2TPV and TL200-A2PV?

A: The parts are electrically and mechanically identical. The primary difference is inventory availability, with TL200-A2TPV currently stocked at higher quantities.

Q: Are both parts suitable for AC and DC current measurement?

A: Yes. Both TL200-A2TPV and TL200-A2PV support bidirectional AC/DC measurement with identical 200A sensing capability and 3.125 mV/A sensitivity.

Q: What is the frequency response capability of these sensors?

A: Both parts operate across DC to 200 kHz frequency range, supporting applications requiring fast transient response with 300 nanosecond response time.

Q: Do these sensors require recalibration when substituted?

A: No. Both parts maintain ±0.5% accuracy and ±0.1% linearity specifications. Substitution does not require system recalibration.

Q: What supply voltage range is required for operation?

A: Both sensors require 4.75V to 5.25V supply voltage with maximum current draw of 14 mA.

Q: Are these parts suitable for high-temperature applications?

A: Yes. Both TL200-A2TPV and TL200-A2PV operate across -40°C to 105°C temperature range, supporting industrial thermal environments.

Q: What mounting configuration do these sensors use?

A: Both parts feature through-hole mounting with single pass-through module design, enabling direct integration into PCB assemblies.

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