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CTSR 0.6-TP/SP2 Current Sensor Equivalent & Substitute Parts
Part Overview
The CTSR 0.6-TP/SP2 is a current sensor manufactured by LEM USA Inc. designed for AC/DC current measurement applications. This flux gate, closed-loop bidirectional module operates at 600mA sensing capacity with ratiometric voltage output. The part is currently active in production with 1077 pieces in stock inventory. Alternative equivalent parts may be required due to supply chain considerations, design revisions, or specific application requirements while maintaining identical electrical and mechanical performance characteristics.
Substiute Parts
Key Parameters
| Parameter | Value |
|---|---|
| Manufacturer Part Number | CTSR 0.6-TP/SP2 |
| Manufacturer | LEM USA Inc. |
| Series | CTSR |
| Current Sensing Range | 600mA |
| Sensor Type | Flux Gate, Closed Loop |
| Measurement Type | AC/DC |
| Number of Channels | 1 |
| Output Type | Ratiometric, Voltage |
| Frequency | 9.5kHz |
| Linearity | ±0.4% |
| Accuracy | ±1.5% |
| Supply Voltage Range | 4.75V ~ 5.25V |
| Response Time | 30µs |
| Maximum Supply Current | 21.6mA |
| Operating Temperature Range | -40°C ~ 105°C |
| Polarization | Bidirectional |
| Mounting Type | PCB, Through Hole |
| Package Type | Module |
| Product Status | Active |
| REACH Status | REACH Unaffected |
| ECCN | EAR99 |
Substitute Part Grouping Explanation
Substitution eligibility for the CTSR 0.6-TP/SP2 is determined by strict equivalence across all critical electrical and mechanical parameters. The following parameters establish the substitution criteria:
Critical Substitution Parameters:
- Current sensing capacity: 600mA
- Sensor technology: Flux gate, closed-loop configuration
- Measurement capability: AC/DC bidirectional
- Output format: Ratiometric voltage
- Operating frequency: 9.5kHz
- Accuracy specification: ±1.5%
- Linearity specification: ±0.4%
- Supply voltage range: 4.75V ~ 5.25V
- Response time: 30µs
- Operating temperature range: -40°C ~ 105°C
- Mounting configuration: PCB through-hole
- Package classification: Module
Parts meeting all these parameters are classified as parametric equivalents and direct substitutes. Variations in packaging designation (such as TP/SP2 versus P connector variants) do not affect electrical equivalence when all specified parameters remain identical.
Parameter Comparison
| Parameter | CTSR 0.6-TP/SP2 | CTSR 0.6-P | Match Status |
|---|---|---|---|
| Manufacturer | LEM USA Inc. | LEM USA Inc. | Identical |
| Series | CTSR | CTSR | Identical |
| Current Sensing | 600mA | 600mA | Identical |
| Sensor Type | Flux Gate, Closed Loop | Flux Gate, Closed Loop | Identical |
| Measurement Type | AC/DC | AC/DC | Identical |
| Number of Channels | 1 | 1 | Identical |
| Output Type | Ratiometric, Voltage | Ratiometric, Voltage | Identical |
| Frequency | 9.5kHz | 9.5kHz | Identical |
| Linearity | ±0.4% | ±0.4% | Identical |
| Accuracy | ±1.5% | ±1.5% | Identical |
| Supply Voltage Range | 4.75V ~ 5.25V | 4.75V ~ 5.25V | Identical |
| Response Time | 30µs | 30µs | Identical |
| Maximum Supply Current | 21.6mA | 21.6mA | Identical |
| Operating Temperature Range | -40°C ~ 105°C | -40°C ~ 105°C | Identical |
| Polarization | Bidirectional | Bidirectional | Identical |
| Mounting Type | PCB, Through Hole | PCB, Through Hole | Identical |
| Package Type | Module | Module | Identical |
| Product Status | Active | Active | Identical |
| REACH Status | REACH Unaffected | REACH Unaffected | Identical |
| ECCN | EAR99 | EAR99 | Identical |
Engineering Selection Recommendations
The CTSR 0.6-P is a direct parametric equivalent to the CTSR 0.6-TP/SP2. Both parts are manufactured by LEM USA Inc., share identical electrical specifications, and maintain the same product status classification as active components. Both parts carry REACH Unaffected status and EAR99 ECCN classification, indicating equivalent regulatory compliance profiles.
Selection between these equivalent parts should be based on connector interface requirements specific to the application circuit design. The TP/SP2 and P designations indicate different connector or packaging variants within the same electrical specification family. Inventory availability and procurement lead times may also influence selection when both parts meet application requirements.
Frequently Asked Questions (FAQ)
Q: Can CTSR 0.6-P be used as a direct replacement for CTSR 0.6-TP/SP2?
A: Yes. Both parts are parametric equivalents with identical electrical specifications, including current sensing capacity, accuracy, linearity, frequency response, and operating characteristics. The difference in part number designation reflects connector or packaging variants, not electrical performance.
Q: What is the difference between CTSR 0.6-TP/SP2 and CTSR 0.6-P?
A: The part number suffixes (TP/SP2 versus P) indicate different connector or interface configurations. All measured electrical and thermal parameters are identical between these variants.
Q: Are both parts suitable for AC/DC current measurement applications?
A: Yes. Both the CTSR 0.6-TP/SP2 and CTSR 0.6-P are bidirectional flux gate current sensors capable of measuring AC and DC currents up to 600mA with ±1.5% accuracy and ±0.4% linearity.
Q: What is the operating temperature range for these sensors?
A: Both parts operate across the temperature range of -40°C to 105°C, maintaining specified accuracy and linearity throughout this range.
Q: What supply voltage is required for these current sensors?
A: Both parts require a supply voltage within the range of 4.75V to 5.25V, with maximum supply current consumption of 21.6mA.
Q: What is the response time of these sensors?
A: Both the CTSR 0.6-TP/SP2 and CTSR 0.6-P have a response time of 30µs, enabling rapid current measurement updates in control and monitoring applications.
Q: Are these parts RoHS compliant?
A: The CTSR 0.6-P is specified as RoHS Compliant. Both parts maintain REACH Unaffected status and EAR99 ECCN classification.
Q: What mounting configuration do these sensors use?
A: Both parts are mounted via PCB through-hole configuration, suitable for standard circuit board assembly processes.
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