ALSTOM MVAJ105RA0802A Protection Relay – MiCOM Series
Alstom MVAJ105RA0802A is listed for MiCOM Series RFQ review. Confirm quantity, condition and destination before quotation.
Technical Dossier
The Delkin Devices CE02TFNHK-FD000-D is an industrial-grade CompactFlash (CF) memory card engineered for deployment in mission-critical embedded systems across heavy industry sectors including chemical processing plants, oil refineries, nuclear power generation facilities, and continuous-process manufacturing environments. Delkin Devices, headquartered in San Diego, California (USA), has established a global installed base in industrial automation, medical imaging, military/aerospace, and transportation infrastructure. The CE02TFNHK-FD000-D series is specifically designed to meet the extended temperature, vibration, and write-endurance requirements that consumer-grade flash storage cannot satisfy. These cards are widely integrated into PLCs, HMIs, CNC controllers, data acquisition systems, and embedded computing platforms where storage reliability directly impacts process uptime.
Delkin Devices' industrial CompactFlash product line has evolved through several generations of NAND flash technology. Early iterations utilized SLC (Single-Level Cell) NAND, which offered the highest endurance ratings (up to 100,000 P/E cycles) and widest operating temperature ranges (-40°C to +85°C), making them the default choice for industrial OEM integrations throughout the 2000s and early 2010s. As NAND technology matured, Delkin introduced pSLC (pseudo-SLC) managed NAND variants that balance cost and endurance for applications with moderate write cycles. The CE02TFNHK-FD000-D designation encodes specific capacity, temperature grade, and interface configuration parameters within its part number structure. Compatibility considerations are critical: CF Type I mechanical form factor, ATA/IDE interface compliance, and True IDE mode support must be verified against the host controller's CF socket specification. Firmware-level wear-leveling algorithms and power-fail protection circuitry distinguish industrial Delkin CF cards from commercial equivalents with identical physical dimensions. As the broader CompactFlash interface has entered a mature/end-of-life trajectory in new designs (superseded by CFast, CFexpress, and M.2 in modern platforms), the CE02TFNHK-FD000-D and its series siblings remain in active demand for legacy system maintenance, long-lifecycle OEM programs, and installed-base spares procurement.
The following SKUs represent the verified Delkin Devices industrial CompactFlash and related embedded storage range. Each entry reflects a distinct capacity, temperature grade, or interface variant within the product family.
CE02TFNHK-FD000-D: Industrial CF card, SLC NAND, extended temp, 2GB capacity
CE04TFNHK-FD000-D: Industrial CF card, SLC NAND, extended temp, 4GB capacity
CE08TFNHK-FD000-D: Industrial CF card, SLC NAND, extended temp, 8GB capacity
CE16TFNHK-FD000-D: Industrial CF card, SLC NAND, extended temp, 16GB capacity
CE32TFNHK-FD000-D: Industrial CF card, SLC NAND, extended temp, 32GB capacity
CE02TFNHK-FD000-R: Industrial CF card, SLC NAND, commercial temp range, 2GB
CE04TFNHK-FD000-R: Industrial CF card, SLC NAND, commercial temp range, 4GB
CE08TFNHK-FD000-R: Industrial CF card, SLC NAND, commercial temp range, 8GB
CE16TFNHK-FD000-R: Industrial CF card, SLC NAND, commercial temp range, 16GB
CE02TFNHK-FD000-P: Industrial CF card, pSLC managed NAND, extended temp, 2GB
CE04TFNHK-FD000-P: Industrial CF card, pSLC managed NAND, extended temp, 4GB
CE08TFNHK-FD000-P: Industrial CF card, pSLC managed NAND, extended temp, 8GB
CE16TFNHK-FD000-P: Industrial CF card, pSLC managed NAND, extended temp, 16GB
CE32TFNHK-FD000-P: Industrial CF card, pSLC managed NAND, extended temp, 32GB
CE64TFNHK-FD000-P: Industrial CF card, pSLC managed NAND, extended temp, 64GB
S402TFNHK-FD000-D: Industrial CFast 2.0 card, SLC NAND, extended temp, 2GB (next-gen migration path)
S404TFNHK-FD000-D: Industrial CFast 2.0 card, SLC NAND, extended temp, 4GB (next-gen migration path)
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