onsemi BC32725BU PNP Transistor, -800 mA PNP, -45 V, 3-Pin TO-92-3

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Subtotal (1 box of 100 units)*

R 81,90

(exc. VAT)

R 94,20

(inc. VAT)

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Units
Per unit
Per Box*
100 - 900R 0.819R 81.90
1000 - 4900R 0.798R 79.80
5000 - 9900R 0.774R 77.40
10000 +R 0.743R 74.30

*price indicative

Packaging Options:
RS stock no.:
765-315
Mfr. Part No.:
BC32725BU
Manufacturer:
onsemi
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Brand

onsemi

Product Type

PNP Transistor

Maximum DC Collector Current Idc

-800mA

Maximum Collector Emitter Voltage Vceo

-45V

Package Type

TO-92-3

Mount Type

Surface

Transistor Configuration

Silicon Transistor

Maximum Collector Base Voltage VCBO

50V

Minimum Operating Temperature

-55°C

Maximum Power Dissipation Pd

625mW

Transistor Polarity

PNP

Minimum DC Current Gain hFE

100

Maximum Emitter Base Voltage VEBO

-5V

Pin Count

3

Maximum Operating Temperature

150°C

Series

BC327

Height

5.33mm

Standards/Approvals

PB Free

Width

4.19mm

Length

5.2mm

COO (Country of Origin):
CN
The onsemi PNP epitaxial silicon transistor specifically designed for switching and amplifier applications. This versatile component operates efficiently in AF-driver stages and low-power output stages, underpinning its role as a reliable solution for audio amplification and signal processing. With its Compact TO-92 package, its ensures ease of integration into applications while delivering commendable technical specifications, including robust current handling and thermal performance. Ideal for various electronic designs, this transistor complements other models in the BC series, making it a valuable asset for engineers and technicians alike.

Optimised for both switching and amplifying tasks

Compact TO-92 packaging facilitates ease of deployment

Robust collector-emitter voltage ratings support dynamic applications

Suitable for use in low-power output stages to enhance efficiency

Features a reliable thermal resistance ensuring stable operation

Pb-Free design aligns with modern environmental standards

Complementary to other BC series transistors, enhancing design flexibility

Effective performance characterised by high DC current gain provided

Absolute maximum ratings safeguard against operational stresses

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