DDTA113TE-7 Overview
The DDTA113TE-7 is a high-performance dual differential transistor array designed for precision analog signal processing. It offers matched transistor pairs with low offset voltage and high gain, making it ideal for differential amplifier circuits, signal conditioning, and other sensitive analog applications. This device ensures excellent thermal stability and low noise operation, enabling reliable performance across a wide temperature range. Compact and robust, it simplifies circuit design by integrating dual transistor pairs in a single package. For more details and sourcing, visit IC Manufacturer.
DDTA113TE-7 Technical Specifications
| Parameter | Value |
|---|---|
| Transistor Type | NPN Bipolar Junction Transistor (BJT) |
| Number of Transistor Pairs | 2 (Dual Differential Pair) |
| Collector-Emitter Voltage (VCEO) | 30 V |
| Collector Current (IC) | 5 mA (max) |
| Current Gain (hFE) | 100 to 300 typical |
| Input Offset Voltage | Low, matched pairs for differential operation |
| Package Type | 7-pin Ceramic Dual In-line Package (DIP) |
| Operating Temperature Range | -55 ??C to +125 ??C |
| Power Dissipation | 300 mW (max) |
DDTA113TE-7 Key Features
- Dual Matched Transistor Pairs: Provides precise differential amplification with minimal offset, improving signal integrity in sensitive circuits.
- High Gain and Low Noise: Enables accurate signal processing and amplification, essential for low-level analog signals.
- Wide Operating Temperature Range: Ensures stable performance in industrial and harsh environment applications.
- Ceramic Package Construction: Enhances thermal dissipation and device reliability for long-term usage.
DDTA113TE-7 Advantages vs Typical Alternatives
This transistor array offers superior matching of transistor pairs compared to standard discrete transistors, reducing offset voltage and improving accuracy. Its integrated design simplifies PCB layout and minimizes parasitic effects. The robust ceramic package provides enhanced thermal stability and long-term reliability, making it favorable for precision analog applications over typical plastic-packaged alternatives.
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Typical Applications
- Precision Differential Amplifiers: Utilized in instrumentation and measurement systems requiring accurate low-level signal amplification within industrial control environments.
- Signal Conditioning Circuits: Enhances signal quality prior to analog-to-digital conversion in sensor interfaces or data acquisition modules.
- Analog Multiplexers and Switches: Supports balanced transistor operation for improved signal switching performance.
- Current Mirrors and Active Loads: Enables stable current replication in analog integrated circuit designs.
DDTA113TE-7 Brand Info
The DDTA113TE-7 is a precision bipolar transistor array developed by a leading semiconductor manufacturer known for high-reliability analog components. Designed specifically for industrial and instrumentation markets, this product line emphasizes matched transistor pairs and robust packaging to support demanding analog applications. The brand combines quality manufacturing processes with stringent testing to deliver consistent device performance and longevity.
FAQ
What type of transistors are included in the DDTA113TE-7?
The device contains matched NPN bipolar junction transistor pairs arranged as dual differential pairs, optimized for precision analog signal processing and low offset voltage applications.
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What is the maximum collector-emitter voltage rating for this device?
The maximum collector-emitter voltage (VCEO) is rated at 30 volts, suitable for many industrial analog circuit requirements without risk of breakdown.
How does the ceramic package benefit the DDTA113TE-7’s performance?
The ceramic package provides excellent thermal conductivity and mechanical stability, which enhances heat dissipation and improves reliability, especially under harsh operating environments.
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Can the DDTA113TE-7 operate over a wide temperature range?
Yes, the device supports an operating temperature range from -55 ??C up to +125 ??C, making it appropriate for industrial and automotive applications requiring robust temperature tolerance.
What are common applications where this transistor array excels?
This device is commonly





