SG2003J/883B
Transient Voltage Suppression Diode ClusterSG2003J/883B
Transient Voltage Suppression Diode Cluster
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Manufacturer Part # : SG2003J/883B
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Package/Case: CDIP-16
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Brand: Microchip Technology
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SG2003J/883B DataSheet

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SG2003J/883B Details
The SG2003J/883B is a precision voltage reference and regulator from Texas Instruments, designed to offer stable voltage regulation in a compact package. This device is ideal for applications requiring low noise and high accuracy, featuring a wide input voltage range and excellent temperature stability, making it suitable for various electronic circuits and measurement systems.
Pinout
- 1 (VOUT): Regulated Output Voltage
- 2 (C12): Compensation Pin
- 3 (GND): Ground
- 4 (VIN): Supply Voltage Input
(Tip: For detailed pinout information, please refer to the corresponding datasheet.)
Key Features
- High Accuracy: Provides precise voltage reference with minimal deviation.
- Wide Input Voltage Range: Operates effectively across a broad input voltage range.
- Low Noise: Designed to minimize output noise, ensuring clean voltage supply.
- Temperature Stability: Offers excellent performance over a wide temperature range.
- Compact Design: Available in a small package for space-constrained applications.
Application
- Measurement Systems: Ideal for use in precision measurement and instrumentation systems.
- Signal Conditioning: Suitable for signal conditioning circuits requiring stable output voltage.
- Power Management: Used in power management applications to provide regulated voltage.
Where to Use
The SG2003J/883B is suitable for applications requiring high precision and low noise voltage reference. It is commonly used in measurement systems, signal conditioning, and various power management circuits to enhance overall performance and reliability.
How to Use
Connect the SG2003J/883B by wiring the VIN and GND pins to the supply voltage and ground, respectively. The VOUT pin provides the regulated output voltage, while the compensation pin (C12) may require additional components for stability depending on the application. For detailed usage instructions, refer to the datasheet.
Application Circuit
The application circuit diagram for the SG2003J/883B illustrates the necessary connections for operation, including supply voltage, ground, and output voltage connections. This ensures proper functionality and stable output performance.
(Tip: For detailed circuit diagram connections and usage guide, refer to the datasheet.)
Equivalents
- LM4041: A comparable voltage reference providing similar accuracy and stability.
- TL431: An alternative adjustable voltage reference and regulator with similar functionality.
Complementary
The SG2003J/883B can be complemented by the SG2004J/883B, which offers improved stability and additional features for enhanced performance in demanding applications.
When selecting complementary devices, ensure that their features and characteristics match your specific requirements for optimal integration and performance.
Frequently Asked Questions
Q: What is the output voltage range of the SG2003J/883B?
A: The SG2003J/883B provides a stable output voltage with a precise reference value. For specific output values, please refer to the datasheet.
Q: Is the SG2003J/883B suitable for battery-powered applications?
A: Yes, the SG2003J/883B is designed for low power consumption, making it suitable for battery-powered circuits while maintaining high stability.

Specifications
The followings are basic parameters of the part selected concerning the characteristics of the part and categories it belongs to.
MOSFET Driver Type | Half Bridge Driver | Driver Type | Hi Rel Power Mosfet Driver |
Configuration | None | Maximum Supply Voltage (V) | 30 |
Peak Source Output (A) | 0.5 |
FAQs
What is SG2003J/883B?
The SG2003J/883B is a high-performance precision voltage reference integrated circuit manufactured by Silicon General. It is designed to provide stable and accurate reference voltages for use in analog-to-digital converters, precision measurement systems, and other applications requiring precise voltage references.
How Does SG2003J/883B Work?
The SG2003J/883B operates by generating a stable output voltage that serves as a reference for analog circuits. It uses a combination of internal circuitry to achieve low temperature coefficient and high stability over varying operating conditions. The device typically operates over a wide temperature range and is designed to minimize drift and noise.
How Many Pins does SG2003J/883B have and What are the Functions of the Pinout Configuration?
The SG2003J/883B is typically available in a 16-pin ceramic dual in-line package (DIP). The pinout configuration includes:
- VOUT: Output voltage pin.
- IN-: Inverting input pin for external capacitor connection.
- IN+: Non-inverting input pin for external capacitor connection.
- COMP: Compensation pin for connecting external capacitor to stabilize the output voltage.
- TRIM: Trim pin for adjusting the output voltage if necessary.
- V-: Negative power supply pin.
- V+: Positive power supply pin.
What are the Pros and Cons of SG2003J/883B?
Pros:
- Precision: Provides high accuracy and stability in voltage reference applications.
- Wide Temperature Range: Suitable for operation across a broad temperature spectrum.
- Low Drift: Maintains stable performance over time and temperature changes.
- External Adjustment: Allows for output voltage adjustment via an external trim pin.
- Durable Package: Housed in a ceramic DIP package, offering robustness and reliability.
Cons:
- Package Size: The 16-pin DIP package may be larger compared to more modern surface-mount packages.
- Power Consumption: May have higher power consumption compared to newer low-power voltage references.
- Availability: As a specialized part, availability and lead times may vary.
Are There Any Equivalents/Alternatives to SG2003J/883B for Recommendation?
- Alternative voltage references include the REF102 from Texas Instruments and the LT1019 from Linear Technology.
- Equivalents to the SG2003J/883B may also include parts from other manufacturers specializing in precision voltage references.
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