UltraWAVE

GSM Network-In-A-Box

Spec Sheet

ADC's GSM Network-In-A-Box (NIB) combines GSM MSC, Base Station Controller and Base Transceiver Station in a single box. It provides the smallest and lowest entry point into the GSM wireless space. ADC's MSC, BSC and BTS work hand-in-hand to reduce the total cost of network ownership, providing a network growth path for existing and future customers. ADC's GSM products provide a compact and cost-effective platform, which help lower the cost of network ownership.

Features

Compact integrated MSC, BSC and BTS

Call forwarding (conditional, unconditional), call waiting, call hold, call transfer

Generates GSM & ASN.1 compliant CDR records

Available in 850, 900, 1800 and 1900 MHz frequency bands

General Packet Radio Service (GPRS) support

MAP-C, MAP-D

Dynamic power control (uplink and downlink)

Built in IN Prepaid, SMSC, AuC and EIR

External alarms for third party equipment are also supported

Common hardware modules with UltraWAVE X100, BTS and BS Plus products

Integrated full rack solution available: UltraWAVE NIB integrated with additional on-site equipment such as transmission, battery backup, etc. in one rack

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ADC 105968AE manual Spec Sheet

105968AE specifications

The ADC 105968AE is an advanced precision analog-to-digital converter designed for high-performance applications requiring accurate and reliable data conversion. This device is particularly well-suited for use in industrial automation, instrumentation, and medical devices where precision measurement is critical.

One of the main features of the ADC 105968AE is its high resolution. The device offers 16-bit resolution, which allows for an impressive level of detail in the digital representation of analog signals. This high resolution is complemented by a low total harmonic distortion (THD) and excellent linearity, ensuring that the captured signals closely mirror the original input without distortion.

The ADC operates at a maximum sampling rate of up to 1 MHz, making it suitable for fast signal processing applications. This high-speed conversion capability is essential in environments where rapid data acquisition is crucial, such as in medical imaging systems or high-speed data logging equipment.

The architecture of the ADC 105968AE incorporates state-of-the-art successive approximation, which combines speed, precision, and efficiency. This technology enhances the overall performance of the converter, allowing it to achieve quick and accurate conversions while minimizing power consumption. The device is designed to operate from a single power supply, which simplifies system design and reduces overall power requirements.

Another noteworthy characteristic of the ADC 105968AE is its built-in self-test feature, which allows for periodic performance checks. This capability ensures the reliability and integrity of the data being processed, making it an ideal choice for mission-critical applications where data fidelity is paramount.

The ADC 105968AE is compatible with various interfacing options, including SPI (Serial Peripheral Interface) and I2C (Inter-Integrated Circuit), facilitating easy integration into existing systems. Its programmability allows for flexible adaptation to various application needs, enhancing its versatility.

In conclusion, the ADC 105968AE stands out due to its high resolution, fast sampling rates, and efficient architecture, making it an exceptional choice for applications that demand high precision and reliability. Its advanced features and robust performance characteristics position it as a leading solution in the realm of analog-to-digital conversion technologies.