Images à titre indicatif uniquement
SN65LVDS34D
+NomenclatureIC TRANSCEIVER 0/2 8SOIC
-
FabricantTexas Instruments
-
Pièce fabricant #SN65LVDS34D
-
Fiche technique SN65LVDS34D DataSheet
-
En stock6443
365 Garantie qualité 24h/24
7*24 Garantie de service 24h/24
90-Garantie après-vente 24h/24
Garantie produit authentique
Spécifications
| Attribut | Valeur |
| Series | 65LVDS |
| Part Status | Active |
| Type | Receiver |
| Protocol | LVDS |
| Number of Drivers/Receivers | 0/2 |
| Receiver Hysteresis | 50 mV |
| Data Rate | 400Mbps |
| Voltage - Supply | 3V ~ 3.6V |
| Operating Temperature | -40°C ~ 85°C |
| Mounting Type | Surface Mount |
| Package / Case | 8-SOIC (0.154", 3.90mm Width) |
| Supplier Device Package | 8-SOIC |
| Base Product Number | 65LVDS34 |
Présentation
Description
The device operates with a wide range of supply voltages, typically from 3.0 V to 3.6 V, and is designed to handle common LVDS transmission lines. It offers excellent noise immunity and low electromagnetic interference (EMI), making it suitable for environments with electrical noise challenges.
The SN65LVDS34D features a low skew between channels, ensuring synchronized data outputs, which is critical for systems requiring precise timing. Encased in a space-saving package, it is suitable for compact designs. With its robust performance and reliability, the SN65LVDS34D is an ideal choice for applications requiring efficient and reliable data communication.
Equivalent
1. DS90LV048A: Quad LVDS receiver from Texas Instruments.
2. MAX9121: Quad LVDS receiver by Maxim Integrated.
3. AM26LV32: Quad differential line receiver from Texas Instruments.
4. MC100LVE164: Quad LVDS receiver by ON Semiconductor.
These alternatives have similar functions but check datasheets for specific compatibility with your application.
Features
1. High-Speed Data Transmission: Supports data rates up to 400 Mbps, suitable for high-speed data transfer applications.
2. Low Power Consumption: Consumes minimal power, ideal for battery-powered and low-energy devices.
3. Wide Input Voltage Range: Compatible with a range of input voltages, enhancing design flexibility.
4. Noise Tolerance: Offers robust noise immunity, ensuring reliable data communication even in electrically noisy environments.
5. Temperature Range: Operates efficiently over a wide temperature range, typically from -40°C to 85°C, making it suitable for industrial applications.
6. Small Package Size: Available in a space-saving SOIC-16 package, facilitating compact PCB designs.
7. Standard Compliance: Meets the ANSI/TIA/EIA-644-A LVDS standard, ensuring compatibility with other LVDS-compliant devices.
8. Fail-Safe Protection: Integrates fail-safe features that prevent error conditions when the inputs are disconnected or floating.
These features make the SN65LVDS34D a versatile choice for applications requiring reliable and efficient data communication.
Pinout
Here is a brief breakdown of the pin configuration and functions:
- Pins 1-4 (IN1+, IN1-, IN2+, IN2-): Differential input pairs for LVDS signals.
- Pins 5-8 (IN3+, IN3-, IN4+, IN4-): Additional differential input pairs for LVDS signals.
- Pin 9 (VCC): Power supply pin, typically requiring 3.3V.
- Pin 10 (GND): Ground pin.
- Pins 11-14 (OUT1, OUT2, OUT3, OUT4): TTL/CMOS-compatible output pins corresponding to the differential input pairs.
- Pin 15-16 (NC): Not connected; these pins are typically left unconnected or used for mechanical support.
The SN65LVDS34D is used in applications where high-speed data transmission is required, providing low power consumption and reduced electromagnetic interference.
Manufacturer
Application
1. Telecommunications: Facilitates high-speed data transfer in network and communication systems.
2. Data Communications: Useful in routers, switches, and data centers for efficient data handling.
3. Computing: Applied in servers and high-performance PCs for quick data processing.
4. Consumer Electronics: Used in devices requiring fast video and data interfaces, such as HDTVs and digital cameras.
5. Industrial Automation: Supports reliable data communication in automation and control systems.
Its low power consumption and high noise immunity make it suitable for these varied applications.