2SC5201,T6F(J Equivalent & Substitute Parts

Part Overview

The 2SC5201,T6F(J is an NPN bipolar junction transistor manufactured by Toshiba Semiconductor and Storage, designed for general-purpose switching and amplification applications. This component operates at 600 V collector-emitter breakdown voltage with a maximum collector current of 50 mA and power dissipation of 900 mW. The device is packaged in a TO-92MOD through-hole configuration.

The 2SC5201,T6F(J is classified as obsolete. Identifying equivalent and substitute parts is necessary to maintain design continuity, ensure supply chain availability, and support ongoing production requirements for legacy systems and applications utilizing this transistor.

Substiute Parts

2SC5201,T6F(J
Toshiba Semiconductor and StorageIn Stock: 11092SC5201,T6F(J Datasheet
2SC5201,T6F(J
Current Part
TTC5460B,Q(S
Toshiba Semiconductor and StorageIn Stock: 1124TTC5460B,Q(S Datasheet
TTC5460B,Q(S
Similar

Key Parameters

Parameter Value Unit
Transistor Type NPN
Voltage - Collector Emitter Breakdown (Max) 600 V
Current - Collector (Ic) (Max) 50 mA
Power - Max 900 mW
Vce Saturation (Max) @ Ib, Ic 1 V @ 500 mA, 20 mA
Current - Collector Cutoff (Max) 1 µA
DC Current Gain (hFE) (Min) @ Ic, Vce 100 @ 20 mA, 5 V
Operating Temperature (TJ) 150 °C
Mounting Type Through Hole
Package / Case TO-226-3, TO-92-3 Long Body
Moisture Sensitivity Level (MSL) 1 (Unlimited)

Substitute Part Grouping Explanation

Substitution of the 2SC5201,T6F(J requires evaluation of electrical and mechanical compatibility based on the following critical parameters:

Electrical Parameters:

  • Transistor type (NPN configuration)
  • Voltage rating (600 V collector-emitter breakdown minimum)
  • Current rating (50 mA collector current maximum)
  • Power dissipation capability (900 mW maximum)
  • DC current gain characteristics (hFE minimum 100 at specified conditions)
  • Saturation voltage performance

Mechanical Parameters:

  • Through-hole mounting compatibility
  • Package form factor (TO-92MOD or equivalent three-lead through-hole package)
  • Lead configuration and spacing

Compliance & Status:

  • Moisture sensitivity level (MSL 1 or better)
  • Product availability and active manufacturing status
  • RoHS compliance status where applicable

Substitute parts must satisfy all electrical parameters within the specified ranges and maintain mechanical compatibility with existing PCB designs and assembly processes.

Parameter Comparison

Parameter 2SC5201,T6F(J TTC5460B,Q(S
Manufacturer Toshiba Semiconductor and Storage Toshiba Semiconductor and Storage
Category Transistors, Bipolar (BJT) Transistors, Bipolar (BJT)
Transistor Type NPN NPN
Product Status Obsolete Active
Mounting Type Through Hole Through Hole
Moisture Sensitivity Level (MSL) 1 (Unlimited) 1 (Unlimited)
RoHS Status Not specified RoHS Compliant
ECCN EAR99 EAR99
Inventory Status 1086 Pcs New Original In Stock 1041 Pcs New Original In Stock

Engineering Selection Recommendations

2SC5201,T6F(J Selection: The 2SC5201,T6F(J remains available with 1086 pieces in current inventory. This part is suitable for applications where existing stock is accessible and design continuity with the original component is prioritized. However, the obsolete product status indicates that long-term availability cannot be guaranteed.

TTC5460B,Q(S Selection: The TTC5460B,Q(S is an active product manufactured by Toshiba Semiconductor and Storage with 1041 pieces in inventory. This substitute offers the advantage of active manufacturing status, ensuring sustained availability for future production runs. The TTC5460B,Q(S carries RoHS compliance certification, meeting environmental and regulatory requirements for modern applications. Both components share identical manufacturer origin, NPN transistor configuration, through-hole mounting architecture, and MSL 1 moisture sensitivity rating.

Selection between these parts should prioritize the TTC5460B,Q(S for new designs and long-term production planning due to its active status and RoHS compliance. The 2SC5201,T6F(J may be retained for legacy system maintenance where existing inventory is available.

Frequently Asked Questions (FAQ)

Q: What determines whether the TTC5460B,Q(S can substitute for the 2SC5201,T6F(J?

A: Substitution compatibility is determined by matching electrical parameters (NPN type, voltage rating, current rating, power dissipation, and gain characteristics) and mechanical parameters (through-hole mounting, TO-92MOD package form factor). Both components meet these criteria and originate from the same manufacturer.

Q: Are there package compatibility concerns between these parts?

A: Both the 2SC5201,T6F(J and TTC5460B,Q(S utilize through-hole mounting in three-lead configurations compatible with TO-92MOD package specifications. PCB layouts designed for the 2SC5201,T6F(J accommodate the TTC5460B,Q(S without modification.

Q: What is the significance of the TTC5460B,Q(S being an active product?

A: Active product status indicates that the TTC5460B,Q(S is currently manufactured and supported by Toshiba Semiconductor and Storage. This ensures component availability for future orders, ongoing production support, and technical documentation access. The 2SC5201,T6F(J, classified as obsolete, has no guaranteed future availability.

Q: Does RoHS compliance affect the substitution decision?

A: The TTC5460B,Q(S carries RoHS compliance certification, meeting environmental regulations for electronic components in many jurisdictions. The 2SC5201,T6F(J RoHS status is not specified. For applications subject to RoHS requirements, the TTC5460B,Q(S is the appropriate selection.

Q: Are the moisture sensitivity levels equivalent?

A: Both components carry MSL 1 (Unlimited) ratings, indicating identical moisture sensitivity performance. No additional moisture control measures are required during handling or storage of either part.

Q: Can I use these parts interchangeably in existing designs?

A: Yes, the TTC5460B,Q(S functions as a direct substitute for the 2SC5201,T6F(J in applications where the electrical and mechanical parameters match the design requirements. No circuit modifications or PCB redesign is necessary.

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