Images à titre indicatif uniquement
DS90C032TMX
+NomenclatureIC RECEIVER 0/4 16SOIC
-
FabricantTexas Instruments
-
Pièce fabricant #DS90C032TMX
-
Package SOIC (D)-16
-
En stock5620
365 Garantie qualité 24h/24
7*24 Garantie de service 24h/24
90-Garantie après-vente 24h/24
Garantie produit authentique
Spécifications
| Attribut | Valeur |
| Package | Tape & Reel (TR),Cut Tape (CT) |
| ProductStatus | Not For New Designs |
| Type | Receiver |
| Protocol | LVDS |
| NumberofDrivers/Receivers | 0/4 |
| Voltage-Supply | 4.5V ~ 5.5V |
| OperatingTemperature | -40°C ~ 85°C |
| MountingType | Surface Mount |
| Package/Case | 16-SOIC (0.154, 3.90mm Width) |
Présentation
Description
Key features of the DS90C032TMX include:
- Quad Receiver Configuration: It has four independent receivers per package, allowing it to handle multiple data streams simultaneously.
- High Data Rates: The device supports data rates up to several hundred megabits per second, suitable for high-speed communication applications.
- Low Power Consumption: It operates with reduced power usage compared to traditional technologies, making it ideal for battery-powered or energy-efficient systems.
- Wide Common-Mode Range: The device can accommodate a wide range of input signals, increasing its reliability and flexibility in different environments.
- Small Package Size: The DS90C032TMX is available in a compact TSSOP package, making it suitable for space-constrained applications.
It is commonly used in telecommunications, computer, and industrial applications where efficient and reliable data transmission is critical.
Equivalent
1. SN65LVDT348PWR by Texas Instruments
2. AM26LV32E by Texas Instruments
3. ISL3284EIBZ by Renesas
4. MAX9144EUB by Maxim Integrated (Analog Devices)
5. MC3486 by ON Semiconductor
These alternatives offer similar functionality and may have slight variations in specifications, so checking the datasheets for compatibility is recommended.
Features
1. Technology: Implements Low-Voltage Differential Signaling (LVDS) for reduced power consumption and high noise immunity.
2. Performance: Capable of operating at speeds up to 155.5 Mbps per channel.
3. Compatibility: Compatible with ANSI/TIA/EIA-644 LVDS standard.
4. Operating Voltage: Supports a wide supply voltage range from 3.0V to 3.6V.
5. Input Tolerance: Handles a wide common-mode input voltage range, improving system robustness.
6. Power Consumption: Low power consumption with a power-down mode for additional power savings.
7. Package: Offered in a space-saving SOIC package.
8. Temperature Range: Operates effectively over a broad temperature range, making it suitable for various applications.
9. ESD Protection: Integrated ESD protection ensures reliability in harsh environments.
10. Output: Features CMOS/TTL compatible outputs for easy integration with other digital circuits.
These features make the DS90C032TMX suitable for applications in data communications, telecommunications, and other high-speed data transfer interfaces.
Pinout
Here is a brief overview of its pin functions:
1. Input Pins (A, B): Each of the four differential pairs (A and B for each channel) receives the LVDS input signals.
2. Output Pins (Y): Provides the TTL output for each corresponding differential pair.
3. Supply Voltage (Vcc): Powers the chip, typically 3.3V.
4. Ground (GND): Common ground reference for the device.
5. Enable Pin (EN): Controls whether the outputs are enabled or in a high-impedance state, facilitating control over the data flow.
The DS90C032TMX is commonly used in applications requiring high-speed data transmission with low power consumption and minimal electromagnetic interference.
Manufacturer
Application
1. Telecommunications: For high-speed data links and signal integrity in communication systems.
2. Computing: In computer backplanes and data buses for reliable data transfer between components.
3. Industrial Controls: For robust data transmission in noisy environments.
4. Instrumentation: In test and measurement equipment for accurate data capture.
5. Networking: For Local Area Networks (LANs) and other network communication systems.
It is favored for its ability to handle low-voltage differential signaling (LVDS), which minimizes power consumption and electromagnetic interference (EMI).