Datasheets
C106DG by:

Sensitive Gate Silicon Controlled Rectifier - SCR 400 V, TO-225, 500-BLKBX

Part Details for C106DG by onsemi

Results Overview of C106DG by onsemi

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Applications Consumer Electronics Energy and Power Systems Renewable Energy

C106DG Information

C106DG by onsemi is a Silicon Controlled Rectifier.
Silicon Controlled Rectifiers are under the broader part category of Trigger Devices.

Trigger devices initiate or control actions in electronic circuits by producing output signals when specific input conditions are met. They are commonly used in timing circuits and pulse generators. Read more about Trigger Devices on our Trigger Devices part category page.

Price & Stock for C106DG

Part # Distributor Description Stock Price Buy
Bristol Electronics   98
RFQ
Vyrian Triggering Devices 6583
RFQ

Part Details for C106DG

C106DG CAD Models

C106DG Part Data Attributes

C106DG onsemi
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C106DG onsemi Sensitive Gate Silicon Controlled Rectifier - SCR 400 V, TO-225, 500-BLKBX
Pbfree Code Yes
Rohs Code Yes
Part Life Cycle Code Transferred
Ihs Manufacturer ONSEMI
Part Package Code TO-225AA
Package Description LEAD FREE, CASE 77-09, 3 PIN
Pin Count 3
Manufacturer Package Code 77-09
Reach Compliance Code compliant
ECCN Code EAR99
HTS Code 8541.30.00.80
Samacsys Manufacturer onsemi
Additional Feature SENSITIVE GATE
Case Connection ANODE
Configuration SINGLE
DC Gate Trigger Current-Max 0.2 mA
DC Gate Trigger Voltage-Max 1 V
Holding Current-Max 6 mA
JEDEC-95 Code TO-225AA
JESD-30 Code R-PSFM-T3
JESD-609 Code e3
Leakage Current-Max 0.1 mA
Non-Repetitive Pk On-state Cur 20 A
Number of Elements 1
Number of Terminals 3
On-state Current-Max 2550 A
Operating Temperature-Max 110 °C
Operating Temperature-Min -40 °C
Package Body Material PLASTIC/EPOXY
Package Shape RECTANGULAR
Package Style FLANGE MOUNT
Peak Reflow Temperature (Cel) 260
Qualification Status Not Qualified
RMS On-state Current-Max 4 A
Repetitive Peak Off-state Voltage 400 V
Repetitive Peak Reverse Voltage 400 V
Surface Mount NO
Terminal Finish Tin (Sn)
Terminal Form THROUGH-HOLE
Terminal Position SINGLE
Time@Peak Reflow Temperature-Max (s) 40
Trigger Device Type SCR

Alternate Parts for C106DG

This table gives cross-reference parts and alternative options found for C106DG. The Form Fit Function (FFF) tab will give you the options that are more likely to serve as direct pin-to-pin alternates or drop-in parts. The Functional Equivalents tab will give you options that are likely to match the same function of C106DG, but it may not fit your design. Always verify details of parts you are evaluating, as these parts are offered as suggestions for what you are looking for and are not guaranteed.

Part Number Manufacturer Composite Price Description Compare
C106DG Littelfuse Inc $0.4387 Silicon Controlled Rectifier, 4A I(T)RMS, 400V V(DRM), 400V V(RRM), 1 Element, TO-225AA, LEAD FREE, CASE 77-09, 3 PIN C106DG vs C106DG
C106D-1 NEC Electronics America Inc Check for Price Silicon Controlled Rectifier, 4A I(T)RMS, 400V V(DRM), 400V V(RRM), 1 Element, TO-202, PLASTIC PACKAGE-3 C106DG vs C106D-1
C106D Powerex Power Semiconductors Check for Price Silicon Controlled Rectifier, 4000mA I(T), 400V V(DRM) C106DG vs C106D
C106D onsemi Check for Price 4A, 400V, SCR, TO-225AA, CASE 77-09, 3 PIN C106DG vs C106D
C106M-1 Motorola Mobility LLC Check for Price 4A, 600V, SCR, TO-225AA C106DG vs C106M-1
C106D1 Central Semiconductor Corp Check for Price Silicon Controlled Rectifier, 4A I(T)RMS, 4000mA I(T), 400V V(DRM), 400V V(RRM), 1 Element, TO-202, TO-202, 3 PIN C106DG vs C106D1
C106D1 Loras Industries Inc Check for Price Silicon Controlled Rectifier, 4A I(T)RMS, 4000mA I(T), 400V V(DRM), 1 Element, TO-202AB C106DG vs C106D1
C106D1G onsemi Check for Price Sensitive Gate Silicon Controlled Rectifier - SCR 400 V, TO-225, 500-BLKBX C106DG vs C106D1G
C106D Motorola Mobility LLC Check for Price 4A, 400V, SCR, TO-225AA, CASE 077, FORMERLY TO-126, 3 PIN C106DG vs C106D
C106M-1 NEC Electronics America Inc Check for Price Silicon Controlled Rectifier, 4A I(T)RMS, 600V V(DRM), 600V V(RRM), 1 Element, TO-202, PLASTIC PACKAGE-3 C106DG vs C106M-1
Part Number Manufacturer Composite Price Description Compare
JAN2N1774A Defense Logistics Agency Check for Price Silicon Controlled Rectifier, 7.4A I(T)RMS, 200V V(DRM), 200V V(RRM), 1 Element, TO-64, HERMETIC SELALED PACKAGE-2 C106DG vs JAN2N1774A
2N6507TG onsemi Check for Price Silicon Controlled Rectifier - SCR, TO-220 3 LEAD STANDARD, 50-TUBE C106DG vs 2N6507TG
BT150-500R NXP Semiconductors Check for Price Silicon Controlled Rectifier, 4 A, 500 V, SCR, TO-220AB, PLASTIC, TO-220AB, 3 PIN C106DG vs BT150-500R
MCR72-6G onsemi Check for Price Sensitive Gate Silicon Controlled Rectifier - SCR, TO-220 3 LEAD STANDARD, 500-BLKBX C106DG vs MCR72-6G
BT148-400R,127 NXP Semiconductors Check for Price BT148-400R C106DG vs BT148-400R,127
2N1771 Powerex Power Semiconductors Check for Price Silicon Controlled Rectifier, 7.4A I(T)RMS, 4700mA I(T), 50V V(DRM), 50V V(RRM), 1 Element, TO-64, HERMETIC SEALED PACKAGE-2 C106DG vs 2N1771
BT152X-600R,127 NXP Semiconductors Check for Price BT152X-600R C106DG vs BT152X-600R,127
MCR708AG onsemi Check for Price Sensitive Gate Silicon Controlled Rectifier - SCR, DPAK (SINGLE GAUGE) TO-252, 75-TUBE C106DG vs MCR708AG
BT152X-800R,127 NXP Semiconductors Check for Price BT152X-800R C106DG vs BT152X-800R,127
BT151S-800R,118 NXP Semiconductors Check for Price BT151S-800R C106DG vs BT151S-800R,118

C106DG Related Parts

C106DG Frequently Asked Questions (FAQ)

  • The recommended operating temperature range for the C106DG is -40°C to 150°C.

  • To ensure proper biasing, connect the base of the transistor to a voltage source through a resistor, and connect the emitter to ground through a resistor. The collector should be connected to a load or a voltage source.

  • The maximum collector current rating for the C106DG is 1 A.

  • Yes, the C106DG can be used as a switch. It has a high current gain and can handle high collector currents, making it suitable for switching applications.

  • To protect the C106DG from overheating, ensure good heat sinking, use a heat sink with a thermal resistance of less than 10°C/W, and avoid operating the device at maximum power dissipation for extended periods.

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