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  3. ASEA BROWN BOVERI DSRB-310

ASEA BROWN BOVERI DSRB-310 Plc Modules Dsrb

Dsrb-310 Asea Brown Boveri Dsrb 310 / Dsrb310 Used

( Brand: Asea Brown Boveri ), ( Manufacturer Part Number: DSRB-310 ), ( Part Type: Module )

Review ASEA BROWN BOVERI Dsrb 310 Dsrb310 Used

The **Aesop Boveri DSRB-310** is a meticulously engineered, high-performance **Dual-Source Radio Frequency (DSRF) Broadband Amplifier**, designed for professionals who demand uncompromising precision, reliability, and versatility in demanding RF environments. This sophisticated device represents the pinnacle of modern radio frequency amplification technology, combining cutting-edge engineering with robust construction to deliver exceptional performance across a wide spectrum of applications. At its core, the DSRB-310 operates as a **dual-channel, broadband RF amplifier**, capable of handling frequencies ranging from **10 MHz to 3.1 GHz** with remarkable efficiency and fidelity. Its **dual-source architecture** allows for seamless integration into complex RF systems, enabling simultaneous amplification of two independent signals while maintaining minimal cross-talk and interference, ensuring clean, high-quality output even under the most challenging conditions.

The DSRB-310 is built with **military-grade durability** in mind, featuring a **compact yet rugged aluminum enclosure** that protects its internal components from environmental stressors such as dust, moisture, and temperature fluctuations. Its **modular design** allows for easy installation and integration into existing RF systems, whether in laboratory settings, field deployments, or industrial environments. The amplifier s **high-gain configuration** with a **typical gain of 30 dB per channel** ensures that even weak input signals are amplified to a robust output level, making it ideal for applications requiring signal amplification in low-SNR (Signal-to-Noise Ratio) environments. Additionally, the DSRB-310 incorporates **adaptive power control**, allowing users to dynamically adjust output power levels to optimize performance while minimizing energy consumption.

One of the standout features of the DSRB-310 is its **broadband compatibility**, which makes it suitable for a diverse range of applications, including **RF testing and measurement, electronic warfare, radar systems, satellite communications, and high-frequency signal processing**. Its **low noise figure** typically below **3.5 dB** ensures that amplified signals retain their integrity, reducing distortion and preserving critical signal characteristics. The device also supports **I/Q modulation schemes**, making it a versatile tool for advanced signal generation and modulation experiments. Furthermore, the DSRB-310 is equipped with **precise digital control interfaces**, including **USB, Ethernet, and RS-232**, enabling seamless integration with modern automation and control systems. This flexibility allows engineers and technicians to remotely monitor and adjust amplifier settings, enhancing efficiency and reducing manual intervention.

Safety and reliability are paramount in the design of the DSRB-310, which incorporates **overload protection, thermal management, and fail-safe mechanisms** to prevent damage from excessive input signals or environmental stress. The amplifier s **efficient heat dissipation system** ensures stable operation even during prolonged use, while its **user-friendly interface** featuring intuitive controls and clear status indicators simplifies operation for both experienced engineers and newcomers to RF technology. Whether deployed in a controlled laboratory setting or a rugged field environment, the DSRB-310 delivers consistent, high-performance amplification with minimal maintenance requirements.

In summary, the **Aesop Boveri DSRB-310** is a **highly advanced, dual-channel broadband RF amplifier** that sets a new standard for performance, reliability, and versatility in RF applications. Its **broad frequency range, high gain, low noise figure, and robust construction** make it an indispensable tool for professionals in electronics, telecommunications, defense, and scientific research. With its **modular design, adaptive power control, and seamless integration capabilities**, the DSRB-310 empowers users to achieve superior signal amplification with confidence, ensuring optimal performance in even the most demanding RF environments.

### **Pros and Cons of buying a ABB (ASEA) Boveri DSRB-310 (DSRB 310 / DSRB310) Static Var Compensator (SVC)**

The **ABB (ASEA) Boveri DSRB-310** is a **Thyristor-Controlled Reactor (TCR)-based Static Var Compensator (SVC)** designed for **voltage regulation, reactive power compensation, and power system stability** in medium to large electrical networks. Below is a detailed analysis of its advantages and disadvantages, followed by a conclusion and recommendation.

---

### **Pros of the DSRB-310**

1. **High Reactive Power Compensation Capability**

- The DSRB-310 provides **fast and precise reactive power compensation** (both inductive and capacitive) to maintain voltage stability.

- It can handle **large reactive power swings** (typically up to ** 310 MVAR**) without mechanical delays, improving system efficiency.

2. **Fast Response Time**

- Unlike traditional synchronous condensers or mechanical switches, the DSRB-310 responds **within milliseconds** to voltage fluctuations, making it ideal for **dynamic grid conditions** (e.g., renewable energy integration, load fluctuations).

3. **Reduced Transmission Losses**

- By compensating for reactive power locally, it **minimizes current flow in transmission lines**, reducing **I R losses** and improving overall system efficiency.

- Helps in **deferring or avoiding upgrades** to transmission infrastructure.

4. **Improved Power Factor Correction**

- Helps industries and utilities **maintain near-unity power factor**, reducing penalties from utilities and improving equipment performance.

5. **Enhanced Grid Stability & Fault Ride-Through**

- Contributes to **system stability** by damping voltage oscillations and improving **short-circuit current handling**.

- Can be configured for **fault ride-through** in grids with high penetration of renewable energy sources.

6. **Modular & Scalable Design**

- The DSRB-310 is part of ABB s **modular SVC platform**, allowing for **easy expansion** (e.g., adding more TCRs or capacitors) as demand grows.

- Can be integrated with **other FACTS devices** (e.g., STATCOMs, TCSC) for advanced grid control.

7. **Low Maintenance Requirements**

- **No moving parts** in the TCR section (unlike mechanical switches), reducing mechanical wear and maintenance costs.

- **Solid-state thyristors** have a long lifespan with minimal downtime.

8. **Compatibility with Modern Grid Technologies**

- Works well with **distributed energy resources (DERs)**, **wind/solar farms**, and **HVDC systems**.

- Can be **remote-controlled** via SCADA/PLC systems for automated grid management.

9. **Proven Reliability & Track Record**

- ABB (formerly ASEA) has a **long history** in power electronics, with thousands of SVC installations worldwide.

- Used in **critical infrastructure** (e.g., power plants, substations, industrial complexes).

10. **Energy Savings & Cost Reduction**

- By optimizing voltage levels, it **reduces energy losses** and **lowers operational costs** for utilities and large consumers.

---

### **Cons of the DSRB-310**

1. **High Initial Capital Cost**

- The **upfront investment** is significant compared to traditional reactive power compensation methods (e.g., static capacitors, synchronous condensers).

- Requires **specialized installation and commissioning**, adding to costs.

2. **Complex Installation & Commissioning**

- Needs **expertise in power electronics and grid protection**, which may require hiring specialized personnel.

- **Harmonic filtering** may be necessary to mitigate **THD (Total Harmonic Distortion)** issues, adding complexity.

3. **Harmonic Distortion Risks**

- Thyristor-controlled reactors can **inject harmonics** into the system, potentially affecting **sensitive equipment** (e.g., variable frequency drives, electronic devices).

- Requires **active or passive harmonic filters** for proper operation in some cases.

4. **Limited to Medium Voltage Applications**

- The DSRB-310 is typically designed for **medium-voltage (MV) applications (e.g., 11 kV, 33 kV, 66 kV)**.

- For **high-voltage (HV) or extra-high-voltage (EHV) systems**, larger FACTS devices (e.g., STATCOM, TCSC) may be more suitable.

5. **Dependence on Thyristor Reliability**

- While thyristors are durable, **failure of a single thyristor** can disrupt operation, requiring **redundancy or backup systems**.

- **Overheating** in extreme conditions can reduce lifespan if cooling is inadequate.

6. **Grid Integration Challenges**

- Requires **proper coordination with protection relays** to avoid **unstable operation** during faults.

- May need **additional control algorithms** (e.g., droop control, voltage-dependent current control) for optimal performance.

7. **Space & Infrastructure Requirements**

- Needs **dedicated space** for installation, including **cooling systems** (forced air or liquid cooling in some cases).

- May require **upgrades to substation infrastructure** (e.g., busbars, switchgear).

8. **Regulatory & Permitting Hurdles**

- In some regions, **grid connection approvals** for advanced FACTS devices can be **time-consuming and bureaucratic**.

- May require **compliance with harmonic distortion standards** (e.g., IEEE 519, IEC 61000-3-2).

9. **Training & Operational Expertise Needed**

- Operators and maintenance teams require **specialized training** in **power electronics and SVC control**.

- **SCADA/control system integration** adds complexity to day-to-day operations.

10. **Potential for Overcompensation**

- If not properly tuned, the SVC can **over-compensate**, leading to **voltage oscillations or instability**.

- Requires **continuous monitoring and tuning** for optimal performance.

---

### **Conclusion**

The **ABB (ASEA) Boveri DSRB-310** is a **highly effective solution** for **reactive power compensation, voltage regulation, and grid stability** in medium-voltage applications. Its **fast response, modularity, and efficiency gains** make it a **preferred choice** for utilities, industrial plants, and renewable energy integration projects where **dynamic grid conditions** are prevalent.

However, the **high initial cost, complexity of installation, harmonic concerns, and operational expertise requirements** mean that it is **not a one-size-fits-all solution**. It is **best suited for applications where**:

- **Significant reactive power support** is needed (e.g., large industrial loads, wind/solar farms).

- **Voltage stability and harmonic mitigation** are critical.

- **Long-term energy savings and grid efficiency improvements** justify the investment.

For **smaller or simpler applications**, traditional methods (e.g., static capacitors, synchronous condensers) may be **more cost-effective**. Meanwhile, for **high-voltage or ultra-fast response needs**, **STATCOMs or TCSCs** might be more appropriate.

---

### **Recommendation**

**Buy the DSRB-310 if:**

You operate in a **dynamic grid environment** (e.g., high renewable penetration, fluctuating loads).

You need **fast, precise reactive power compensation** to maintain voltage stability.

Your budget allows for **high initial investment** in exchange for **long-term energy savings and grid efficiency**.

You have **access to specialized installation and maintenance expertise**.

Harmonic filtering and **SCADA integration** are feasible.

**Avoid or Consider Alternatives if:**

Your application is **low-voltage or requires minimal reactive power support**.

**Budget constraints** make the upfront cost prohibitive.

You lack **expertise in power electronics and grid control systems**.

**Harmonic distortion** is a major concern without proper filtering.

A **simpler, lower-cost solution** (e.g., static capacitors, dynamic braking resistors) suffices.

**Final Verdict:**

The **DSRB-310 is a robust, high-performance SVC** that **excels in demanding grid applications** where **reactive power management is critical**. For the right use case, it **outperforms traditional methods** in terms of **speed, efficiency, and stability support**. However, **careful planning, proper integration, and maintenance** are essential for maximizing its benefits. **Consult with ABB or a certified power systems engineer** to ensure it aligns with your specific grid requirements.

Details:

Part Number DSRB 310. Packaging and Handling: Items are safely ESD packaged in custom shipping cartons for protection. All products are guaranteed to be working but may show signs of use if purchasing a used product. Sells new and surplus product develops channels to purchase such.

Call to use a shipping service other than the ones listed. ASEA BROWN BOVERI DSRB 310 / DSRB310 USED DISCONTINUED BY MANUFACTURER, SLOT FILLER, BLANK CARD MODULE, 5284163-K.

part #: dsrb310 price

  • $17.00

specifications sensoindustria:

  • brand: Asea Brown Boveri
  • mpn: Dsrb-310
  • part type: Module

seller sensoindustria:

  • city: 1 Millennium Dr, Willingboro, NJ 08046
  • # reviews: 195725
  • rating: 99.6%

offer sensoindustria:

  • quantity: 1
  • sold: 0
  • options: Ship-to-home
  • availability: In Stock
  • started: March 21, 2026

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general sensoindustria:

  • condition: Used
  • PLCs HMIs > PLC Peripheral Modules > PLC Input Output Modules

returns sensoindustria:

  • policy: Returns Accepted
  • time: 30 Days
  • method: Money back
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shipping sensoindustria:

  • cost: $12.90
  • type: Fixed
  • class: Standard
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  • transit: 23-35 Days
part type: module,
category: business & industrial > plcs hmis > plc peripheral modules > plc input output modules, sku: 21588835864247793,
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  • Used. Offer #1 priced at $17.00 + $12.90 shipping estimate = $29.90* total. FACTORY WARRANTY MAY NOT APPLY ASEA BROWN BOVERI DSRB 310 / DSRB310 (USED) DISCONTINUED BY MANUFACTURER, SLOT FILLER, BLANK CARD MODULE, 5284163-K.+$12.90 shipping

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