The Olliter PRO-Edition is the full-optional workstation for the modern shack. Featuring a comprehensive connectivity suite, dual integrated speakers, and every hardware extra as standard. The definitive driver for external power systems, distinguished by its exclusive CNC-machined front panel.

The Olliter PRO-Edition fully Loaded

The ultimate full-optional workstation. Features comprehensive I/O, dual speakers, and every extra as standard. The premier driver for external power, finished with a CNC-machined front panel.

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Uncompromising Connectivity.

Unlike common SDR radios, the rear panel of the OL-SDR PRO reveals the true professional nature of the OL-SDR project. An unprecedented density of connections allows for total, compromise-free integration:

Antenna Management: 4 independent ports for maximum band and contest flexibility.

Pure Signal & Feedback: Dedicated PS-IN/OUT ports for real-time signal linearization.

Expandability: Inputs/Outputs for Transverters (XVTR) and external clock synchronization (GPS/10MHz).

Automation: Open Collector and PA Band ports for intelligent control of amplifiers and peripherals.

Olliter OL-SDR Plus connections panel

Back Panel Connections

PS IN / PS OUT: Pure Signal 

ANT1 – ANT4: Antenna Ports

XVTR1 – XVTR2: Transverter I/O

ACC: External Accessories

Line IN/OUT: Audio Line Level I/O

Open collector: 8 devices

PTT OUT / PTT IN: PTT Control Ports

PA Band: Amplifier Band Control

Ethernet: Gigabit Ethernet Port

9-13.8 VDC: DC Power Input

Olliter OL-SDR PRO connections panel

Pure-Core Architecture: Silence is Power


OL-SDR is not your standard integrated system. Our discrete-block philosophy separates the digital core from power modules to eliminate all background noise.


Efinix Titanium FPGA: Massive computing power and ultra-low latency for absolute digital precision.


Total Isolation: Galvanically isolated Ethernet and Audio sections to prevent jitter and digital interference.


Strategic LPF Filtering: Signal cleaning at the primary processing stage for uncompromising purity.


Discrete-Block Design: External power and amplification units keep the motherboard environment "silent," ensuring world-class dynamic range.

The Pure-Core Architecture: Engineering Silence

The heart of the OL-SDR lies in a motherboard designed with a philosophy of absolute functional isolation. Unlike conventional integrated designs, we have chosen to keep the core electronics separate from the front-end, amplification, and power supply modules. This discrete block structure is the key to achieving an artifact-free signal and a noise floor approaching the theoretical zero.


Motherboard Technical Highlights:

The Digital Engine: Processing power is driven by the Efinix Titanium FPGA. This cutting-edge choice ensures massive computational power and ultra-low latency, managing data streams with precision unattainable by standard processors.


Galvanic & RF Separation: 

The Ethernet section and audio interfaces are strictly isolated from the primary signal path. This prevents electromagnetic coupling or digital jitter that could degrade reception purity.


Integrated LPF Filtering: 

The board features high-quality Low-Pass Filters (LPF), strategically positioned to clean the signal during the primary processing stage, before it even reaches the external amplification stages.


Signal Purity: 

By keeping critical components (such as power supplies and TX filters) off the motherboard, we have created an "electronically silent" environment. The result is a signal dynamic range and in-band discrimination capability that place the OL-SDR at the pinnacle of global performance.

Olliter OL-SDR Main PCB with FPGA

High-End Components: The Choice of Excellence 

A pure architecture demands superior components. For the OL-SDR, we rejected cheap integrated solutions in favor of the world’s finest discrete components, ensuring stability, purity, and dynamic range under any operating condition.


The Pillars of Precision:

Ultra-Stable Frequency Reference: The use of Crystek oscillators (such as the CVPD-922X) guarantees a clock with extremely low phase noise. This precision is vital for signal stability in digital modes and ensures crystal-clear reception.


Professional Mini-Circuits® Filtering: The motherboard features shielded Mini-Circuits Low-Pass Filters (LPF). These components are the RF industry standard for suppressing harmonics and spurious signals with minimal insertion loss.


Noise-Free Signal Management: Every inductor, capacitor, and relay on our boards is selected for its linearity. This approach prevents thermal noise and intermodulation, preserving the full dynamic range offered by the Efinix Titanium FPGA.


Military-Grade Build Standard: The quality of the soldering, the gold-plated trace routing, and the component layout highlight a meticulous obsession with Signal Integrity. Every section is engineered to endure, even under intense and continuous duty cycles.

Olliter OL-SDR BPF units
Olliter OL-SDR TCXO
Olliter OL-SDR Crystec Oscillator

Our system delivers approximately 70dB of attenuation (combined with RX band filters, typically >40dB) against FM Broadcasting frequencies (88-108MHz). This dual-stage filtering prevents interference within the 15-35 MHz range, ensuring a clean and artifact-free spectrum even in challenging RF environments. By effectively suppressing out-of-band signals, the architecture prevents ADC front-end overload, preserving the full 107dB RMDR and ensuring that weak signals remain perfectly readable even in the presence of high-power local transmitters.

TCXO (Temperature Compensated Crystal Oscillator): Our system features a high-stability reference with an accuracy of ±50 ppb (0.5Hz at 10MHz) across the entire operating temperature range (0°C to 70°C). This ensures unwavering frequency stability even during intensive operations.

GNSS Discipline Input: Includes a dedicated antenna input for GNSS (GPS, GLONASS, Galileo). This allows the system to be disciplined by global satellite constellations for absolute frequency accuracy and long-term stability (GPSDO functionality).

Ultra-Low Noise Oscillator: Dedicated clocking for ADC, DAC, and FPGA with a typical phase noise of -155dBc/Hz @ 10kHz offset. This extreme purity is the foundation of the system's superior dynamic range.

Direct Differential Drive: The LVPECL output drives the RX ADCs, the TX DAC, and the FPGA via matched differential lines. By eliminating intermediate active components, we ensure the highest possible RF performance and maintain total signal integrity across the entire digital chain.

Front-End Preselector: The First Line of Defense

Superior SDR reception starts with analog excellence. Our Filter Board isolates signals in high-density environments before digitization.

Mechanical Switching: Maximum reliability.

Passive Preselection: High selectivity, zero noise.

Dynamic Protection: Prevents ADC overload.

Signal Integrity: Pure, unaltered waves.

High-End Components: The Choice of Excellence 

Exceptional reception in an SDR system depends on more than just software; it relies on the hardware's ability to manage hostile signals before they are even digitized. Our Front-End Filter Board is a masterpiece of analog engineering, designed to isolate the desired signal in even the highest-density spectral environments.


Technical Architecture & Advantages:

Mechanical Switching Architecture: The use of an extensive array of high-quality relays allows for the selection of physically separated filter paths. This ensures a level of inter-band isolation that low-cost electronic switches simply cannot achieve.


High-Selectivity Passive Preselection: 

The board acts as a mechanical sieve, eliminating out-of-band signals (BCI, strong adjacent broadcasters) that would otherwise cause receiver saturation or desensitization.


Dynamic Range Protection: 

By filtering the signal before the ADC stage, we preserve the full dynamic range of the Efinix Titanium FPGA, enabling you to pull weak signals out of the noise even when positioned right next to extremely strong interference.


Signal Integrity & Low Loss: 

The component layout is meticulously optimized to minimize insertion loss and keep the noise floor at the lowest possible physical levels.

Olliter OL-SDR Preselector PCB

Beyond the Radio: Pure Linear Power

Excellence doesn't stop at the radio’s output. Our integrated technology eliminates distortion at the source for unprecedented linearity.


Real-Time Correction: Through the dedicated PS IN port, the OL-SDR samples the output signal directly from your linear amplifier.


Zero Distortion: Instantly corrects power chain non-linearity (IMD), ensuring a flawless signal.


Spectral Purity: Drastically reduced sidebands and a clean signal to maximize your effectiveness on the air.

Pure Signal Technology: Surgical Transmission Accuracy

‍Transmission excellence doesn't end at the radio's output. The Pure Signal technology integrated into the OL-SDR ecosystem is engineered to deliver unprecedented signal linearity, eliminating intermodulation distortion (IMD) at its source.


‍Adaptive External Feedback

‍Unlike conventional systems, the OL-SDR hardware features a dedicated input port (PS IN) for real-time signal sampling.


‍Post-Amplification Analysis: 

‍The system analyzes the signal sampled directly from the output of an external linear amplifier or post-radio power stages.


‍Predictive Correction: 

‍Utilizing a Digital Pre-Distortion (DPD) algorithm processed by the Efinix Titanium FPGA, the system compares the original signal with the output, instantaneously correcting any non-linearity introduced by the power chain.


‍Total Spectral Purity: 

‍The result is a "surgical" transmission with drastically suppressed sidebands. This clean signal ensures no interference with adjacent frequencies, maximizing both energy efficiency and effective range.

Olliter OL-SDR Pure Signal spectrum Olliter OL-SDR Pure signal spectrum

Drag the slider to see the difference

Olliter OL-SDR Pure Signal Demo Olliter OL-SDR Pure Signal Demo

Trascina il cursore per vedere prima e dopo il trattamento con PURESIGNAL

Architecture of Excellence

We select only the world's finest discrete components for OL-SDR. No compromises—just stability and dynamic purity.

Crystek Oscillators: Ultra-stable clocking for minimal phase noise and perfect digital signals.

Mini-Circuits Filters: Professional industry standard for harmonic and spurious rejection.

Absolute Linearity: Selected components to preserve the Efinix Titanium FPGA's dynamic range.

Signal Integrity: Gold-plated traces and military-grade standards for long-term performance.

Olliter OL-SDR BPF units
Olliter OL-SDR Local Oscillator Unit
Olliter OL-SDR Crystec filter

Filtri LP Antialiasing ad elevata Ultimate Attenuation. Attenuazione di circa 70dB (a cui sommare l'attenuazione dei filtri di banda RX, tipicamente >40dB) delle frequenze Broadcasting FM (88-108MHz) che potrebbero generare interferenze nell'intervallo 15-35 Mhz.

Oscillatore compensato in temperatura (Temperature Compensated Crystal Oscillator) ad elevata stabilita'. +/- 50 ppb (0.5Hz a 10MHz) su tutto il range di temperatura (0°C a 70 °C) e ingresso antenna GNSS (Global Navigation Satellite System, alias GPS, Glonass, Galileo).

Oscillatore per ADC, DAC ed FPGA a bassissimo rumore. Noise tipico -155dBc/Hz a 10KHz dalla frequenza. L'uscita LVPECL pilota tramite linea differenziale adattata gli ADC di RX, il DAC di TX e la FPGA senza componenti attivi intermedi, garantendo le migliori performance possibili delle sezioni RF.

Technical Specifications

Beyond the limits of the spectrum: the figures that guarantee signal integrity even in the most congested and challenging RF environments.

Frequency Range: 

Sezione ricevente: 

Sezione trasmittente:

Potenza uscita:                      

Spettro visibile:

Spettro panoramico:               

Noise Floor:                           

Noise Figure:                  

RMDR (Reciprocal Mixing Noise):

Low noise VCXO (122.88MHz):    

Stabilità:                        

Spurie in tx:                      

Interfacce:                      

Alimentazione:                   

Modi:                           

Antenne in RX/TX:                

I/O:                            


Dimensione:                     

100 KHz – 55 MHz

RX con 2 ADC a 16 bit

TX con 1 DAC a 16 bit

15 Watt

48 KHz – 1.536 MHz

100 KHz – 55 MHz

-133 dBm (0.07 uV, @2.4 KHz di banda)

12 dB

107 dB (@2.4KHz di banda)

-155 dBc/Hz (@10 KHz)

High stability TCXO (10MHz) 0,05 ppm

< -70dBc

Gigabit Ethernet con PC

9-13 VDC Current: 1.5A RX, 4.0A TX

CW, SSB, AM, SAM, FM, PSK, RTTY

2 (dotate di selettore)

Ethernet, Mic, Phones, LINE in/out, PTT, KEY, PS (in-out), 9-13 V

300L x 140H x 320P Peso Approx. 4,7 Kg








Specifications

Frequency Range: 

Receiver Section: 

Transmitter Section: 

Output Power: 

Visible Spectrum: 

Panoramic Spectrum: 

Noise Floor: 

Noise Figure: 

RMDR (Reciprocal Mixing Dynamic Range): 

Low noise VCXO (122.88MHz): 

Stability: 

TX Spurious Emissions: 

Interfaces: 

Power Supply: 

Modes: 

RX/TX Antennas: 

I/O:


Dimentions:


100 KHz – 55 MHz

RX con 2 ADC a 16 bit

TX con 1 DAC a 16 bit

15 Watt

48 KHz – 1.536 MHz

100 KHz – 55 MHz

-130 dBm (0.07 uV, @2.4 KHz di banda)

12 dB

107 dB (@2.4KHz di banda)

-155 dBc/Hz (@10 KHz)

High stability TCXO (10MHz) 0,05 ppm

< -70dBc

Gigabit Ethernet con PC

9-13 VDC Current: 1.5A RX, 4.0A TX

CW, SSB, AM, SAM, FM, PSK, RTTY

4 (dotate di selettore)

Ethernet, Mic, Phones, LINE in/out, PTT, KEY, PS (in-out), 9-13V


300L x 140H x 320P Peso Approx. 4,7 Kg








OL-Master

High-end SDR control software, offering complete management of your radio SHACK.

OLLITER LABORATORY SAGL

via da Mezz

CH-7742 Poschiavo

Switzerland

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