XC6210C30AMR-G Equivalent & Substitute Parts

Part Overview

The XC6210C30AMR-G is a linear voltage regulator IC manufactured by Torex Semiconductor Ltd, classified as a Power Management (PMIC) component. This device delivers a fixed positive output of 3.05V at 700mA with a maximum dropout voltage of 0.075V at 100mA. The regulator features an enable control function and over-current protection, operating across the temperature range of -40°C to 85°C. The component is housed in an SC-74A (SOT-753) surface-mount package and supplied in Tape & Reel format.

The XC6210C30AMR-G maintains Active product status and is ROHS3 compliant with MSL Level 1 (Unlimited moisture sensitivity). Substitute parts are identified when electrical performance parameters, output specifications, thermal characteristics, and package configurations remain equivalent across the product line.

Substiute Parts

XC6210C30AMR-G
Torex Semiconductor LtdIn Stock: 1133XC6210C30AMR-G Datasheet
XC6210C30AMR-G
Current Part
XC6210A30AMR-G
Torex Semiconductor LtdIn Stock: 903XC6210A30AMR-G Datasheet
XC6210A30AMR-G
Parametric Equivalent

Key Parameters

Parameter Value Unit
Output Voltage (Fixed) 3.05 V
Output Current 700 mA
Input Voltage (Maximum) 6 V
Dropout Voltage (Maximum) 0.075 V @ 100mA
Quiescent Current 67.5 µA
PSRR 60 dB (1kHz)
Operating Temperature Range -40 to 85 °C
Package Type SC-74A, SOT-753 Surface Mount
Control Features Enable
Protection Features Over Current

Substitute Part Grouping Explanation

Substitute parts for the XC6210C30AMR-G are identified based on strict parametric equivalence across the following criteria:

Electrical Performance Parameters:

  • Fixed output voltage of 3.05V
  • Output current capacity of 700mA
  • Maximum input voltage of 6V
  • Dropout voltage specification of 0.075V at 100mA
  • Quiescent current of 67.5µA
  • PSRR of 60dB at 1kHz

Functional Characteristics:

  • Positive output configuration
  • Single regulator output
  • Enable control function
  • Over-current protection

Physical & Environmental Specifications:

  • Surface-mount packaging in SC-74A (SOT-753) form factor
  • Operating temperature range of -40°C to 85°C
  • Tape & Reel supply format

Compliance & Regulatory Status:

  • ROHS3 compliance
  • MSL Level 1 (Unlimited)
  • Active product status

Parts meeting all these criteria are classified as parametric equivalents and direct substitutes.

Parameter Comparison

Parameter XC6210C30AMR-G XC6210A30AMR-G
Manufacturer Torex Semiconductor Ltd Torex Semiconductor Ltd
Category Power Management (PMIC) Power Management (PMIC)
Output Voltage (Fixed) 3.05V 3.05V
Output Current 700mA 700mA
Input Voltage (Maximum) 6V 6V
Dropout Voltage (Maximum) 0.075V @ 100mA 0.075V @ 100mA
Quiescent Current 67.5µA 67.5µA
PSRR 60dB (1kHz) 60dB (1kHz)
Operating Temperature -40°C ~ 85°C -40°C ~ 85°C
Package / Case SC-74A, SOT-753 SC-74A, SOT-753
Mounting Type Surface Mount Surface Mount
Control Features Enable Enable
Protection Features Over Current Over Current
Product Status Active Active
RoHS Status ROHS3 Compliant ROHS3 Compliant
MSL 1 (Unlimited) 1 (Unlimited)

Engineering Selection Recommendations

Both the XC6210C30AMR-G and XC6210A30AMR-G are Active product variants from Torex Semiconductor Ltd within the XC6210 base product family. Selection between these parts is based on availability and supply chain considerations rather than electrical or functional differences.

Compliance & Regulatory Alignment: Both parts maintain identical ROHS3 compliance status and MSL Level 1 rating, ensuring equivalent environmental and regulatory qualification for applications requiring these certifications.

Product Status: Both parts carry Active product status, confirming ongoing manufacturer support and availability through authorized distribution channels.

Parametric Equivalence: The XC6210A30AMR-G provides complete parametric substitution for the XC6210C30AMR-G across all electrical specifications, thermal performance, and package configurations. No functional limitations or performance degradation occurs when substituting between these variants.

Supply Chain Flexibility: Current inventory levels differ between variants (XC6210C30AMR-G: 1106 pcs; XC6210A30AMR-G: 806 pcs), allowing component engineers to select based on delivery requirements and stock availability without compromising design specifications.

Frequently Asked Questions (FAQ)

Q: Can the XC6210A30AMR-G replace the XC6210C30AMR-G in existing designs?

A: Yes. The XC6210A30AMR-G is a parametric equivalent with identical electrical specifications, output voltage, current capacity, dropout voltage, quiescent current, PSRR, operating temperature range, and package configuration. Direct substitution is supported without design modification.

Q: Are there any differences in the package or mounting requirements between these parts?

A: No. Both parts use the SC-74A (SOT-753) surface-mount package in Tape & Reel format. PCB footprints, reflow profiles, and assembly procedures remain identical.

Q: What determines whether a part qualifies as a substitute for the XC6210C30AMR-G?

A: Substitution is determined by matching all key electrical parameters: fixed output voltage (3.05V), output current (700mA), maximum input voltage (6V), dropout voltage (0.075V @ 100mA), quiescent current (67.5µA), PSRR (60dB at 1kHz), operating temperature range (-40°C to 85°C), control features (Enable), protection features (Over Current), and package type (SC-74A, SOT-753 surface mount).

Q: Do both parts have the same compliance certifications?

A: Yes. Both the XC6210C30AMR-G and XC6210A30AMR-G are ROHS3 compliant with MSL Level 1 (Unlimited) rating. Regulatory and environmental qualifications are identical.

Q: What is the difference between the XC6210C30AMR-G and XC6210A30AMR-G part numbers?

A: The difference is indicated by the letter designation in the part number (C versus A). Both variants belong to the XC6210 base product family and share identical electrical and mechanical specifications. The designation reflects manufacturing or distribution variants within the Torex product line.

Q: Can I use either part interchangeably in my application?

A: Yes. From an engineering perspective, both parts are fully interchangeable. Selection should be based on availability, lead time, and inventory levels rather than technical performance differences.

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