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2SCR533PT100 Equivalent & Substitute Parts Reference
Part Overview
The 2SCR533PT100 by Rohm Semiconductor is a surface mount NPN bipolar junction transistor (BJT) with a maximum collector-emitter voltage of 50 V, maximum collector current of 3 A, a transition frequency of 320 MHz, and a maximum power dissipation of 2 W. It is supplied in the TO-243AA (MPT3) package and is currently active, RoHS3 compliant, and REACH unaffected with unlimited MSL. Finding equivalent or substitute parts is necessary when inventory constraints arise, for multi-sourcing BOMs, ensuring supply chain resilience, or accommodating specific packaging or qualification needs within the same product category.
Substiute Parts
Key Parameters
| Parameter | Value |
|---|---|
| Manufacturer Part Number | 2SCR533PT100 |
| Category | Transistors, Bipolar (BJT) |
| Current - Collector (Ic) (Max) | 3 A |
| Voltage - Collector Emitter Breakdown (Max) | 50 V |
| DC Current Gain (hFE) (Min) @ Ic, Vce | 180 @ 50mA, 3V |
| Vce Saturation (Max) @ Ib, Ic | 350mV @ 50mA, 1A |
| Current - Collector Cutoff (Max) (ICBO) | 1µA |
| Frequency - Transition | 320MHz |
| Power - Max | 2 W |
| Operating Temperature | 150°C (TJ) |
| Mounting Type | Surface Mount |
| Package / Case | TO-243AA |
| Supplier Device Package | MPT3 |
| RoHS Status | ROHS3 Compliant |
| Moisture Sensitivity Level (MSL) | 1 (Unlimited) |
| REACH Status | REACH Unaffected |
| Product Status | Active |
Substitute Part Grouping Explanation
Substitutes are selected strictly based on the following parameters:
- Category: Transistors, Bipolar (BJT)
- Transistor Type: NPN
- Surface Mount (SMT) Compatibility
- Collector-Emitter Voltage (Vce): 50 V
- Maximum Collector Current (Ic): 3 A
- DC Current Gain (hFE) minimum
- Vce Saturation Maximum
- Frequency - Transition
- Power Dissipation
- Operating Temperature
- Compliance: RoHS3, MSL 1, REACH
- Package type and mechanical fit (where matching is required for practical substitution)
These parameters ensure electrical, thermal, and environmental equivalency suitable for substitution within the relevant product category.
Parameter Comparison
| Manufacturer Part Number | Manufacturer | Ic (Max) | Vce (Max) | DC hFE (Min) | Vce Sat (Max) | ICBO (Max) | Freq (Transition) | Pd (Max) | Operating Temp | Mount Type | Package / Case | Supplier Device Package | RoHS | MSL | REACH | Status |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| 2SCR533PT100 | Rohm Semiconductor | 3 A | 50 V | 180 @ 50mA, 3V | 350mV @ 50mA, 1A | 1µA | 320MHz | 2 W | 150°C (TJ) | Surface Mount | TO-243AA | MPT3 | ROHS3 | 1 | Unaffected | Active |
| 2SCR533P5T100 | Rohm Semiconductor | 3 A | 50 V | 180 @ 50mA, 3V | 350mV @ 50mA, 1A | 1µA | 320MHz | 500 mW | 150°C (TJ) | Surface Mount | TO-243AA | MPT3 | ROHS3 | 1 | Unaffected | Active |
| PBSS4350Z,135 | Nexperia USA Inc. | 3 A | 50 V | 100 @ 2A, 2V | 290mV @ 200mA, 2A | 100nA | 100MHz | 2 W | 150°C (TJ) | Surface Mount | TO-261-4, TO-261AA | SOT-223 | ROHS3 | 1 | Unaffected | Active |
| 2SC5964-TD-E | onsemi | 3 A | 50 V | 200 @ 100mA, 2V | 290mV @ 100mA, 2A | 1µA | 380MHz | 3.5 W | 150°C (TJ) | Surface Mount | TO-243AA | PCP | ROHS3 | 1 | Unaffected | Active |
| 2SC5964-TD-H | onsemi | 3 A | 50 V | 200 @ 100mA, 2V | 290mV @ 100mA, 2A | 1µA | 380MHz | 3.5 W | 150°C (TJ) | Surface Mount | TO-243AA | PCP | ROHS3 | 1 | Unaffected | Active |
| 2SD1624S-TD-E | onsemi | 3 A | 50 V | 140 @ 100mA, 2V | 500mV @ 100mA, 2A | 1µA | 150MHz | 500 mW | 150°C (TJ) | Surface Mount | TO-243AA | PCP | ROHS3 | 1 | Unaffected | Active |
| 2SD1624T-TD-E | onsemi | 3 A | 50 V | 200 @ 100mA, 2V | 500mV @ 100mA, 2A | 1µA | 150MHz | 500 mW | 150°C (TJ) | Surface Mount | TO-243AA | PCP | ROHS3 | 1 | Unaffected | Active |
| FCX619TA | Diodes Incorporated | 3 A | 50 V | 100 @ 2A, 2V | 320mV @ 100mA, 2.75A | 100nA | 165MHz | 2 W | -55°C ~ 150°C (TJ) | Surface Mount | TO-243AA | SOT-89-3 | ROHS3 | 1 | Unaffected | Active |
| PBSS4350X,135 | Nexperia USA Inc. | 3 A | 50 V | 300 @ 1A, 2V | 370mV @ 300mA, 3A | 100nA | 100MHz | 1.6 W | 150°C (TJ) | Surface Mount | TO-243AA | SOT-89 | ROHS3 | 1 | Unaffected | Active |
Engineering Selection Recommendations
All parts listed, including 2SCR533PT100, 2SCR533P5T100, PBSS4350Z,135, 2SC5964-TD-E, 2SC5964-TD-H, 2SD1624S-TD-E, 2SD1624T-TD-E, FCX619TA, and PBSS4350X,135, are active, RoHS3 compliant, have MSL 1 (unlimited), and are REACH unaffected. These compliance certifications allow their use in regulated environments, and their active status ensures ongoing manufacturer support based on the input provided.
Frequently Asked Questions (FAQ)
Q1: What parameters are critical for selecting substitute NPN BJT transistors in this category?
A1: Key parameters for substitution are transistor type (NPN), surface mount capability, collector-emitter voltage (max 50 V), collector current (max 3 A), minimum DC current gain (hFE), maximum saturation voltage (Vce sat), transition frequency, maximum power dissipation, operating temperature, package compatibility, and compliance certifications (RoHS3, REACH, MSL).
Q2: Are all substitute parts compatible in terms of mounting and mechanical fit?
A2: All listed substitutes are surface mount devices. Package types include TO-243AA, TO-261-4 (SOT-223), and SOT-89-3. Mechanical compatibility must be verified based on the package types and PCB layout requirements as per the provided package and supplier device package details.
Q3: Do all substitute parts meet the same compliance and environmental requirements as the main part?
A3: Yes, all substitute parts are ROHS3 compliant, MSL 1 (unlimited), and REACH unaffected according to the provided data.
Q4: Why do some substitutes have different power dissipation or transition frequency values?
A4: Substitute parts are listed with varying values for power dissipation and transition frequency as provided. Only parameters explicitly given are considered; any variation is evident from the comparison table.
Q5: How does package selection impact substitution?
A5: Matching the package (e.g., TO-243AA, MPT3, SOT-223, SOT-89) is necessary for mechanical compatibility. Only the package and supplier device package information provided should be used for fit evaluation.
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