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FAN3223TMX
+StücklisteIC GATE DRVR LOW-SIDE 8SOIC
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HerstellerOnsemi
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Herstellerteil #FAN3223TMX
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Auf Lager5182
365 Tage Qualitätsgarantie
7*24 Stunden-Servicegarantie
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Spezifikationen
| Attribut | Wert |
| Part Status | Obsolete |
| Digi Key Programmable | Not Verified |
| Driven Configuration | Low-Side |
| Channel Type | Independent |
| Number of Drivers | 2 |
| Gate Type | MOSFET (N-Channel) |
| Voltage - Supply | 4.5V ~ 18V |
| Logic Voltage - VIL, VIH | 0.8V, 2V |
| Current - Peak Output (Source, Sink) | 5A, 5A |
| Input Type | Inverting |
| Rise / Fall Time (Typ) | 12ns, 9ns |
| Operating Temperature | -40°C ~ 125°C (TA) |
| Mounting Type | Surface Mount |
| Package / Case | 8-SOIC (0.154", 3.90mm Width) |
| Supplier Device Package | 8-SOIC |
| Base Product Number | FAN3223 |
Übersicht
Description
The FAN3223TMX includes built-in shoot-through protection to prevent simultaneous conduction of high-side and low-side switches, enhancing system reliability. Its compact package makes it suitable for space-constrained designs. Additionally, the driver supports both inverting and non-inverting configurations, offering design flexibility.
This power driver is ideal for applications such as DC-DC converters, synchronous rectification, and H-bridge circuits, making it a versatile choice for engineers looking to optimize power efficiency and performance in their designs.
Equivalent
Features
1. Dual Channel: It supports two independent analog paths.
2. Low On-Resistance: Offers low on-resistance (typically around 4Ω), minimizing signal loss.
3. Wide Voltage Range: Operates over a range of supply voltages, typically from 1.8V to 5.5V.
4. Fast Switching Speed: Ensures quick response times, suitable for high-frequency applications.
5. Low Power Consumption: Designed to consume minimal quiescent current, enhancing energy efficiency.
6. TTL/CMOS Compatible: Compatible with standard logic levels for easy integration into various circuits.
7. Small Package: Available in a compact 8-Pin MSOP package, making it suitable for space-constrained applications.
8. High Linearity: Maintains signal integrity even at varying signal amplitudes.
These characteristics make the FAN3223TMX ideal for data acquisition, signal routing, and other applications requiring reliable analog switching.
Pinout
Pin Functions:
1. VDD (Pin 1): Supply voltage input.
2. GND (Pin 2): Ground reference.
3. HIN (Pin 3): High-side input control signal.
4. LIN (Pin 4): Low-side input control signal.
5. HOUT (Pin 5): High-side output to drive the gate of the high-side MOSFET.
6. LOUT (Pin 6): Low-side output to drive the gate of the low-side MOSFET.
7. VBIAS (Pin 7): Bias voltage input for driving the high-side gate (optional).
8. NC (Pin 8): No connection, can be left unconnected.
The FAN3223TMX is suitable for applications requiring efficient driving of power MOSFETs in synchronous rectification and other high-speed switching applications.
Manufacturer
Founded in 1999, ON Semiconductor has grown through a series of acquisitions and strategic partnerships, establishing itself as a key player in the semiconductor market. The company focuses on providing innovative technologies that enhance energy efficiency, connectivity, and performance in electronic systems.
The FAN3223TMX specifically is a high-speed buffer/driver designed for various applications, including interfacing and signal integrity enhancement in digital systems. It is part of the company's extensive portfolio aimed at supporting modern electronic designs with high performance and reliability.
Application
1. Signal Conditioning: Enhancing signal integrity in high-speed digital communication.
2. Data Transmission: Driving signals in data buses, ensuring reliable transmission.
3. Level Shifting: Converting voltage levels between different logic families.
4. Isolation: Providing signal isolation in sensitive applications.
5. Fan-out Buffering: Distributing signals to multiple loads with minimal delay.
Its features make it suitable for telecommunications, computing, industrial automation, and consumer electronics where high-speed signal processing is essential.