| Distributor | Stock | Pricing | MOQ | PKG | Lead Time | Date Code | On Order Quantity | On Order Delivery | |
|---|---|---|---|---|---|---|---|---|---|
|
6,510 pcs
|
6510 pcs | On Request | 1 | On Request | On Request | 1317+ | On Request | On Request |
| Category | |
| Manufacturer Name | |
| Current | |
| DC Current Gain (hFE) (Min) @ Ic, Vce | |
| Mounting Type | |
| Power | |
| Resistor | |
| Supplier Device Package | |
| Tape & Reel | |
| Transistor Type | |
| Vce Saturation (Max) @ Ib, Ic | |
| Voltage |
The DMC964010R is a dual NPN pre-biased transistor array manufactured by Panasonic Electronic Components. It integrates two NPN transistors with built-in base resistors (10 kΩ) in a single package, simplifying circuit design and reducing component count. This device is designed for surface mount assembly.
Key electrical specifications include a collector-emitter voltage (Vce) of 50 V, a collector current (Ic) of 100 mA, and a power dissipation of 125 mW. The DC current gain (hFE) is a minimum of 35 at Ic=5 mA and Vce=10 V. The collector-emitter saturation voltage is a maximum of 250 mV at Ib=500 µA and Ic=10 mA.
The transistor array is housed in a SOT-563 or SOT-666 package, with a supplier device package of SSMini6-F3-B. It is surface mount compatible and suitable for automated assembly processes. The device is RoHS3 compliant and has a moisture sensitivity level of 1 (unlimited).
Typical applications include switching and amplification in low-power circuits, signal processing, and general-purpose digital logic interfacing. The integrated bias resistors reduce external component requirements, making it ideal for space-constrained designs.
| Qty | Low | High |
|---|---|---|
| 8,000+ | $0.18 | $0.18 |
| 16,000+ | $0.18 | $0.18 |
Estimated market price range - modelled values for guidance only, not live distributor offers.
SOT-563 or SOT-666 surface mount package, with supplier device package SSMini6-F3-B.
Yes, it is listed as RoHS3 Compliant, though this is unverified.
50 V.
100 mA.
125 mW.
35 at Ic=5 mA, Vce=10 V.
10 kΩ.