PXI-2534 | National Instruments PXI Multiplexer Switch Module
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- $12,199.00
- Sale price
- $12,199.00
- Regular price
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Product Description P/N: PXI-2534
Description
The PXI-2534 National Instruments PXI Multiplexer Switch Module is designed to provide high-density, reliable switching for automated test systems. With 8x32 matrix capabilities and solid-state relays, it offers durability and high-performance routing for testing applications.
Technical Specifications
Condition | New/Never Used Surplus |
Brand | National Instruments |
Category | Multiplexers |
Part Number |
PXI-2534 |
Subcategory | Sensor Mutliplexers |
Maximum switching power | 55 W |
Maximum switching current | 1 A |
Scan Rate | 400 cycles/s |
Number of Rows | 8 |
Switch Bandwidth | 2 MHz |
Number of Banks | 1 |
Number of Columns | 32 |
Information About PXI-2534
The PXI-2534 is a high-density 8x32 PXI matrix switch module, ideal for high-channel-count automated test systems. It is equipped with solid-state relays (SSRs), offering an unlimited mechanical lifetime and the capability to route up to 55 W simultaneously on all channels. This module features onboard relay counting for real-time relay monitoring, and hardware triggers enable deterministic operation to enhance test throughput. With a scan rate of 400 cycles per second, it is capable of handling rapid switching for efficient test processes.
The PXI-2534 is a robust solution for test systems requiring reliable, high-speed switching with increased operational longevity.
Key Features
- High-density 8x32 PXI matrix switch module, ideal for automated test systems.
- Solid-state relays (SSRs) provide unlimited mechanical lifetime and high reliability.
- Can route up to 55 W simultaneously across all channels.
- Onboard relay counting for real-time monitoring and better control.
- Scan rate of 400 cycles per second for fast switching.
- Maximum switching current of 1 A and maximum switching voltage of 55 V DC.
The PXI-2534 is engineered to optimize test throughput while maintaining exceptional reliability and performance. Its high-density configuration and solid-state relay technology make it a valuable component for complex automated testing environments.
Description
The PXI-2534 National Instruments PXI Multiplexer Switch Module is designed to provide high-density, reliable switching for automated test systems. With 8x32 matrix capabilities and solid-state relays, it offers durability and high-performance routing for testing applications.
Technical Specifications
Condition | New/Never Used Surplus |
Brand | National Instruments |
Category | Multiplexers |
Part Number |
PXI-2534 |
Subcategory | Sensor Mutliplexers |
Maximum switching power | 55 W |
Maximum switching current | 1 A |
Scan Rate | 400 cycles/s |
Number of Rows | 8 |
Switch Bandwidth | 2 MHz |
Number of Banks | 1 |
Number of Columns | 32 |
Information About PXI-2534
The PXI-2534 is a high-density 8x32 PXI matrix switch module, ideal for high-channel-count automated test systems. It is equipped with solid-state relays (SSRs), offering an unlimited mechanical lifetime and the capability to route up to 55 W simultaneously on all channels. This module features onboard relay counting for real-time relay monitoring, and hardware triggers enable deterministic operation to enhance test throughput. With a scan rate of 400 cycles per second, it is capable of handling rapid switching for efficient test processes.
The PXI-2534 is a robust solution for test systems requiring reliable, high-speed switching with increased operational longevity.
Key Features
- High-density 8x32 PXI matrix switch module, ideal for automated test systems.
- Solid-state relays (SSRs) provide unlimited mechanical lifetime and high reliability.
- Can route up to 55 W simultaneously across all channels.
- Onboard relay counting for real-time monitoring and better control.
- Scan rate of 400 cycles per second for fast switching.
- Maximum switching current of 1 A and maximum switching voltage of 55 V DC.
The PXI-2534 is engineered to optimize test throughput while maintaining exceptional reliability and performance. Its high-density configuration and solid-state relay technology make it a valuable component for complex automated testing environments.