| Distributor | Stock | Pricing | MOQ | PKG | Lead Time | Date Code | On Order Quantity | On Order Delivery | |
|---|---|---|---|---|---|---|---|---|---|
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140,000 pcs
|
140000 pcs | On Request | 1 | On Request | On Request | On Request | On Request | On Request |
| Category | |
| Manufacturer Name | |
| Current | |
| DC Current Gain (hFE) (Min) @ Ic, Vce | |
| Halogen Free | |
| Mounting Type | |
| Power | |
| Resistor | |
| Supplier Device Package | |
| Transistor Type | |
| Vce Saturation (Max) @ Ib, Ic | |
| Voltage |
The ON Semiconductor NSVBC143ZDXV6T1G is a dual NPN bias resistor transistor (BRT) designed to simplify circuit design by integrating a transistor with its bias network into a single component. This reduces board space and component count.
Key electrical specifications include a collector-emitter voltage (VCEO) of 50V and a continuous collector current (IC) of 100mA. It features a DC current gain (hFE) of 80 minimum at 5mA/10V and a Vce saturation of 250mV maximum at 1mA/10mA. The integrated base-emitter resistor (R2) has a nominal value of 47kΩ.
This device is housed in a compact SOT-563 surface-mount package, making it suitable for space-constrained applications. It is specified for a power dissipation of 500mW. The transistor array is Pb-free and halogen-free, aligning with environmental compliance standards.
The NSVBC143ZDXV6T1G is ideal for applications requiring simplified digital logic interfaces or reduced component count in bias networks.
| Qty | Low | High |
|---|---|---|
| 1+ | $0.99 | $0.99 |
Estimated market price range - modelled values for guidance only, not live distributor offers.
The maximum collector-emitter voltage (VCEO) for the NSVBC143ZDXV6T1G is 50 Vdc.
The continuous collector current (IC) rating for the NSVBC143ZDXV6T1G is 100 mAdc.
The NSVBC143ZDXV6T1G is available in SOT-563 and SOT-666 packages.
The NSVBC143ZDXV6T1G is a surface mount device.
Yes, the NSVBC143ZDXV6T1G is RoHS3 compliant.
The device features an integrated base-emitter resistor with a nominal value of 47 kΩ.