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FTC333C
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FabricantComposants jlcpcb
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Pièce fabricant #FTC333C
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En stock6380
365 Garantie qualité 24h/24
7*24 Garantie de service 24h/24
90-Garantie après-vente 24h/24
Garantie produit authentique
Spécifications
| Attribut | Valeur |
| Manufacturer | JLCPCB Assembly |
| Package | SOP-14-150mil |
Présentation
Description
Designed for students with basic finance or tech knowledge, FTC333C combines theoretical insights with practical case studies to illustrate real-world FinTech solutions. It also addresses risks, cybersecurity, and ethical considerations in the evolving digital finance landscape.
By the end, learners gain a solid understanding of FinTech’s disruptive potential and its impact on traditional banking, investing, and financial inclusion. The course prepares students for further specialization or careers in FinTech-related fields.
Equivalent
- Holtek BS83B12A
- Microchip AT42QT1010
- Azoteq IQS263
- Cypress (Infineon) CY8C4014LQI
These chips offer similar capacitive touch sensing functionality. Check datasheets for exact compatibility.
Features
- Triaxial Angular Rate Sensing: Measures X, Y, and Z-axis rotation simultaneously.
- Wide Measurement Range: Up to ±300°/s (selectable ranges).
- High Stability & Low Noise: Low drift and excellent bias stability.
- Digital Output (SPI/I²C): Easy integration with microcontrollers.
- Built-in Self-Test (BST): Ensures sensor reliability.
- Low Power Consumption: Suitable for battery-powered applications.
- Robust Design: Operates in harsh environments with high shock resistance.
- Small Form Factor: Compact footprint for space-constrained designs.
Ideal for drones, robotics, navigation systems, and stabilization applications.
Pinout
Pin Functions:
1. VDD – Power supply (typically 2.4V–5.5V).
2. GND – Ground connection.
3. OUT – Digital output (high/low based on touch detection).
4. TPAD – Touch sensor pad input.
5. AHLB – Output mode selection (high/low active).
6. LPMB – Low-power mode control.
It supports 1 touch channel, features low power consumption, and is widely used in consumer electronics for capacitive touch applications.
Application
1. Consumer Electronics – Cooling CPUs, GPUs, and power modules in smartphones, laptops, and gaming devices.
2. Automotive Electronics – Thermal management in EV batteries, inverters, and LED lighting.
3. Telecommunications – Heat dissipation in 5G base stations and optical modules.
4. Industrial Equipment – Thermal regulation in power supplies, IGBTs, and motor drives.
5. Renewable Energy – Enhancing heat transfer in solar inverters and wind power systems.
Its high thermal conductivity (3.0 W/m·K) and reliability make it ideal for compact, high-power applications.