The C106D are glass-passivated PNPN devices, skillfully crafted for applications in consumer electronics like temperature regulation, light modulation, and speed control. They find their place in remote and process control systems, which is primary option across various technological landscapes.
• Cathode Pin
The cathode acts as the return path for current. Typically connected to the negative power supply, it influences current flow based on circuit control elements. Experiencing secure cathode connections can prevent unwanted current leakages, enhancing circuit reliability.
• Anode Pin
The anode connects to the positive power supply, and its current flow depends on the gate signal, playing a role in device control. Thoughtful anode placement, considering load requirements, maximizes energy efficiency. An unobstructed anode can boost device performance.
• Gate Pin
The gate is required for controlling current flow from anode to cathode. Activating the gate with a small current turns on the thyristor, allowing larger currents to pass. This characteristic is valuable for managing substantial power loads with low-power signals. Understanding the gate's dynamics can lead to finely tuned circuits that respond effectively, offering innovative solutions in automation and power management.
The C106D devices feature a glass-passivated surface, a technique enhancing reliability and durability by providing robust protection against environmental and physical stressors. This approach, widely used in the industry, extends the lifespan of electronic components, maintaining consistent performance across varying conditions. In the selection of components, those with a focus on long-term stability often find this approach appealing.
Crafted for economical efficiency, these devices manage power effectively without sacrificing performance. Their triggering and holding characteristics ensure stability while reducing energy consumption in circuits. This balance is highly sought in applications where cost efficiency accompanies reliable functionality. You can favor the C106D in budget-sensitive projects due to this harmonious blend.
A sophisticated thermopad design enhances heat management by offering low thermal resistance required for smooth operations. This feature optimizes heat dissipation, reducing overheating risks and ensuring long-term performance integrity. Effective heat management influences the device's efficiency and sustainability, especially under high thermal loads.
With a sensitive gate, the C106D responds adeptly to variable conditions, required for precise control applications. Its lead-free construction meets global environmental standards, supporting ecological sustainability and reducing harmful impacts. Using materials and designs that align with these principles is frequently emphasized by industry experts and aligns with evolving technological values.
The acknowledged strengths of the C106D's features reflect a skillful engineering philosophy that merges performance with responsible innovation, a combination increasingly valued in today's technological advancements.
Littelfuse Inc. offers the C106DG with a range of specific technical specifications, attributes, and parameters. These details are shared with other parts possessing similar traits, which feature unique characteristics that intrigue your knowledge.
Parameter |
Value |
Type |
SCR |
Factory Lead Time |
14 Weeks |
Package / Case |
TO-225AA, TO-126-3 |
Number of Elements |
1 |
Operating Temperature |
-40°C to +110°C |
Published |
2009 |
Moisture Sensitivity Level (MSL) |
1 (Unlimited) |
HTS Code |
8541.30.0080 |
Base Part Number |
C106 |
Qualification Status |
Not Qualified |
Case Connection |
ANODE |
Voltage - Gate Trigger (Vgt) |
800mV |
Current - Gate Trigger (Igt) |
200µA |
Current - On State (It (RMS)) |
2.5A |
Voltage - On State (Vtm) |
2.2V |
Repetitive Peak Reverse Voltage |
400V |
Mounting Type |
Through Hole |
Surface Mount |
NO |
Voltage-Off State |
400V |
Packaging |
Bulk |
Part Status |
Active |
Number of Terminations |
3 |
Terminal Position |
SINGLE |
Time@Peak Reflow Temperature-Max (s) |
NOT SPECIFIED |
J-STD-030 Code |
R-P5F3-T3 |
Configuration |
SINGLE |
Trigger Device Type |
SCR |
Current - Non Rep. Surge 50, 60Hz (Itsm) |
20A at 60Hz |
Current - Hold (Ih) (Max) |
3mA |
Repetitive Peak Off-State Voltage |
400V |
SCR Type |
Sensitive Gate |
Current - Off State (Max) |
10µA |
RoHS Status |
RoHS Compliant |
Presented below is the Functional Diagram for the C106D system, inviting the observer to delve into its intricacies and explore the technical heartbeat that drives its operation.
The C106D is a type of silicon-controlled rectifier (SCR) functioning as an electronic switch capable of handling considerable current and voltage. Its steadfast nature and proficient performance make it a frequent choice in power control applications.
Part Number |
Description |
Manufacturer |
DRAE5TRIGGER DEVICES |
SILICON CONTROLLED RECTIFIER, 400V , 5A , TO-220 |
onsemi |
BT151x-800R, 127 TRIGGER DEVICES |
Silicon Controlled Rectifier, 12A , 800V , 800V , 1 Element, TO-220AB, PLASTIC, TO-220F, FLANGE PACK-3 |
WeEn Semiconductor Co Ltd |
A1A118TRIGGER DEVICES |
Silicon Controlled Rectifier, 0.3952A , 50mA , 48V , 0.400V , 1 Element, TO-108 |
Microsemi Corporation |
S400BF TRIGGER DEVICES |
Silicon Controlled Rectifier, 8A , 9000mA , 400V , 1 Element, TO-220AB |
Littelfuse Inc |
2N1717 TRIGGER DEVICES |
Silicon Controlled Rectifier, 7.4A , 7700mA , 60V , 1 Element, TO-64, 2 PIN |
Diodes Incorporated |
C3RAMZ-8 TRIGGER DEVICES |
Silicon Controlled Rectifier, 0.628A , 40mA , 400V , 400V , 1 Element, TO-220B1, 3 PIN |
Powerex Power Semiconductors |
TL2006 TRIGGER DEVICES |
Silicon Controlled Rectifier, 3A , 200V , 1 Element, TO-220B1, 3 PIN |
STMicroelectronics |
S10N1H TRIGGER DEVICES |
Silicon Controlled Rectifier, 840mA , 800V , 3A, 200V, SCR |
Tag Semiconductors Ltd |
2N3040 TRIGGER DEVICES |
Silicon Controlled Rectifier, 0.35A , 250mA , 200V , 200V , 1 Element, TO-18 |
Semitronics Corp |
MCR708A1 TRIGGER DEVICES |
Silicon Controlled Rectifier, 4A, 600V, SCR |
Motorola Mobility LLC |
C106D is utilized across a wide array of applications, showcasing its adaptability in contemporary technology. Let's delve into these applications with greater detail:
The C106D is required for regulating speed and torque precisely, leading to increased productivity and reduced energy consumption in industrial environments. This precise control is fundamental for optimizing operational efficiency and reducing costs.
The C106D contributes to energy efficiency in lighting and heating systems. It supports dimming technology in residential and industrial settings and precise temperature control in heating applications, from domestic water heaters to large industrial furnaces, promoting comfort and sustainability.
C106D provides a reliable solution that avoids the wear and tear associated with mechanical contacts. This is beneficial in infrastructures requiring high reliability and minimal maintenance, such as data centers and telecommunications networks.
The C106D excels in process and remote control applications, enabling fine control and adjustments through IoT integration. This capability is required for process control systems and safety warning systems in manufacturing settings, where they help prevent accidents and minimize production downtime.
Dim |
Min (Inches) |
Max (Inches) |
Min (Millimeters) |
Max (Millimeters) |
A |
0.102 |
0.11 |
2.6 |
2.8 |
A1 |
0.047 |
0.055 |
1.2 |
1.4 |
b |
0.028 |
0.034 |
0.7 |
0.86 |
b2 |
0.028 |
0.034 |
0.7 |
0.86 |
c |
0.019 |
0.022 |
0.49 |
0.57 |
D |
0.417 |
0.449 |
10.6 |
11.4 |
E |
0.291 |
0.323 |
7.4 |
8.2 |
e |
0.090 TYP |
- |
2.29 TYP |
- |
L |
0.551 |
0.63 |
14 |
16 |
L1 |
0.091 |
0.106 |
2.3 |
2.7 |
P |
0.118 |
0.134 |
3 |
3.4 |
Q |
0.142 |
0.157 |
3.6 |
4 |
Littelfuse shines in the realm of electrical applications, offering solutions that span from consumer electronics to expansive industrial settings. With an extensive and evolving product portfolio, their impact in circuit protection is clear. They embrace a broad growth strategy that touches upon multiple arenas, integrating new technologies and tapping into diverse market segments.
2024-10-29
2024-10-29
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