Description
The National Instruments PCI-5153EX Oscilloscope Device is a high-performance oscilloscope designed for a variety of complex measurements and analysis tasks. Manufactured by National Instruments, this oscilloscope device is equipped with two analog input channels that utilize BNC type connectors to ensure reliable signal connections. With an input impedance of 50 Ω ± 2 Ω, it can handle a maximum input overload of 7 Vrms with peaks up to 10 V, providing robust protection against voltage spikes.
The PCI-5153EX shines in its data acquisition capabilities, offering a rapid sampling rate of 2 GS/sec and an 8-bit digital resolution per channel, allowing for precise waveform capture. The device’s bandwidth reaches up to 500 MHz, which is suitable for a wide range of frequencies encountered in electronic signals. Users can benefit from the standard onboard memory of 8MB per channel, which is expandable to a substantial 256MB per channel, catering to applications requiring extensive data capture.
The input voltage range of the PCI-5153EX is a versatile 100mV to 5V, accommodating various signal amplitudes. For maintaining accuracy and performance, the device offers two calibration modes: External Calibration and Self-calibration. These modes ensure the oscilloscope remains precise over time. Additionally, the device supports Hardware Accumulation Firmware (FW06), which enhances its hardware accumulation functionality, making it an even more powerful tool for engineers and researchers.
Specification | Detail |
---|---|
Product Name | National Instruments PCI-5153EX Oscilloscope Device |
Manufacturer | National Instruments |
Type | Oscilloscope Device |
Channels | 2 analog input channels |
Connectors | BNC type |
Input Impedance | 50 Ω ± 2 Ω |
Maximum Input Overload | 7 Vrms with |Peaks| ≤ 10 V |
Sampling Rate | 2 GS/sec |
Digital Resolution | 8 bits per channel |
Bandwidth | 500 MHz |
Onboard Memory Size (Standard) | 8MB/Ch |
Onboard Memory Size (Extendable) | 256MB/Ch |
Input Voltage Range | 100mV to 5V |
Calibration Modes | External Calibration, Self-calibration |
Supports Firmware | Hardware Accumulation Firmware (FW06) |
Question 1: What type of connectors are used on the National Instruments PCI-5153EX Oscilloscope Device’s analog input channels to ensure reliable signal connections?
Answer 1: The National Instruments PCI-5153EX Oscilloscope Device’s analog input channels use BNC type connectors to ensure reliable signal connections.
Question 2: What is the maximum input overload that the National Instruments PCI-5153EX Oscilloscope Device can handle, and what are its two calibration modes?
Answer 2: The National Instruments PCI-5153EX Oscilloscope Device can handle a maximum input overload of 7 Vrms with peaks up to 10 V, and its two calibration modes are External Calibration and Self-calibration.
Question 3: What are the key specifications and features of the National Instruments PCI-5153EX Oscilloscope Device that make it suitable for complex measurements and analysis tasks?
Answer 3: The key specifications and features of the National Instruments PCI-5153EX Oscilloscope Device that make it suitable for complex measurements and analysis tasks include its two analog input channels with BNC type connectors, an input impedance of 50 Ω ± 2 Ω, a maximum input overload protection of 7 V_rms with peaks up to 10 V, a rapid sampling rate of 2 GS/sec, an 8-bit digital resolution, a bandwidth of up to 500 MHz, a
Question 4: What is the maximum input overload the National Instruments PCI-5153EX Oscilloscope Device can withstand, and what are its input impedance specifications?
Answer 4: The National Instruments PCI-5153EX Oscilloscope Device has an input impedance of 50 Ω ± 2 Ω and can handle a maximum input overload of 7 Vrms with peaks up to 10 V.
Question 5: What input impedance does the National Instruments PCI-5153EX Oscilloscope Device have, and what is its maximum input overload capacity?
Answer 5: The National Instruments PCI-5153EX Oscilloscope Device can withstand a maximum input overload of 7 Vrms with peaks up to 10 V, and its input impedance is specified as 50 Ω ± 2 Ω.