7/6th Generation Intel Xeon and Core Processors, Extreme Performance, Compact and Modular Rugged Workstation
Model Name | DX-1000 | |
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System | Processor | 7th Generation Intel® CPU (Kaby Lake-S) - Intel® Core i3-7101TE: 3M Cache, 3.4 GHz, TDP 35W - Intel® Core i5-7500T: 6M Cache, up to 3.3 GHz, TDP 35W - Intel® Core i7-7700T: 8M Cache, up to 3.8 GHz, TDP 35W - Intel® Core i5-7500: 6M Cache, up to 3.8 GHz, TDP 65W - Intel® Core i7-7700: 8M Cache, up to 4.2 GHz, TDP 65W - Intel® Xeon E3-1275 v6: 8M Cache, up to 4.2 GHz, TDP 73W 6th Generation Intel® CPU (Skylake-S) - Intel® Core i3-6100TE: 4M Cache, 2.7 GHz, TDP 35W - Intel® Core i5-6500TE: 6M Cache, up to 3.3 GHz, TDP 35W - Intel® Core i7-6700TE: 8M Cache, up to 3.4 GHz, TDP 35W - Intel® Xeon E3-1268L v5: 8M Cache, up to 3.4 GHz, TDP 35W - Intel® Core i3-6100: 3M Cache, 3.7 GHz, TDP 51W - Intel® Core i5-6500: 6M Cache, up to 3.6 GHz, TDP 65W - Intel® Core i7-6700: 8M Cache, up to 4.0 GHz, TDP 65W - Intel® Xeon E3-1225 v5: 8M Cache, up to 3.7 GHz, TDP 80W - Intel® Xeon E3-1275 v5: 8M Cache, up to 4.0 GHz, TDP 80W |
Chipset | Intel® C236 | |
Memory | 2x DDR4 SO-DIMM Sockets * Intel 7th Generation Processor Supports Up to 2400MHz * Intel 6th Generation Processor Supports Up to 2133MHz Supports Un-buffered and Non-ECC Type Up to 64 GB |
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Graphics | .Integrated Intel® HD Graphics .Three Independent Display (1x DVI-I, 2x DisplayPort) |
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Audio | • Realtek® ALC888 • High Definition Audio |
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BIOS | AMI 16MB BIOS | |
I/O Interface | DVI | 1x DVI-I connector, Up to 1920x1080@60Hz |
DP | 2x DisplayPort Connector (4096 x 2304 @ 60Hz, According to CPU Specifications) * Verified maximum resolution: 3840x2160 |
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LAN | 2x 10/100/1000 Mbps, RJ45 GbE1: Intel I219-LM GbE2: Intel I210 Support WoL, Teaming, Jumbo frame, IEEE 1588v2, RJ45 Optional Module .4x 10/100/1000 Mbps, RJ45 Port .4x 10/100/1000 Mbps, M12 Port |
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PoE+ | Optional Module .4x PoE+, Individual port 25.5W (with CMI-LAN01, RJ45 Port) .4x PoE+, Individual port 25.5W, (with CMI-M12LAN01, M12 Port) |
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Serial Port | 4x RS-232/422/485 with Auto Flow Control Support 5V/12V, DB9 Optional Module .2x RS-232/422/485, DB9 Connector .4x RS-232/422/485, DB9 Connector |
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USB | 8x USB 3.2 Gen1 (Type A) | |
Optical Isolated DIO | Optional Module .16x Optical Isolated DIO(8DI, 8DO), 20 pin Terminal Block |
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Line-Out | 1x Line-Out, Phone Jack 3.5mm | |
Mic-In | 1x Mic-In, Phone Jack 3.5mm | |
Power Button | 1x ATX Power On/Off Button | |
AT/ATX Switch | 1x AT/ATX Mode Switch | |
Reset Button | 1x Reset Button | |
Clear CMOS Switch | 1x Clear CMOS Switch | |
Remote Power On/Off Connector | 1x Remote Power On/Off Connector, 2-pin Terminal Block | |
External FAN Connector | 1x External FAN Connector, 4-pin Terminal Block (support smart fan by BIOS) | |
Storage | SSD/HDD | 2x SATA III (6Gbps) for 2.5” HDD/SSD |
mSATA | 4x mSATA (Shared by Mini-PCIe Socket) (Gen3) | |
RAID | Support S/W RAID 0, 1, 5 & 10 | |
Expansion | PCI/ PCIe | - |
CFM (Control Function Module) Interface | 1x CFM Interface for CFM Modules | |
CMI (Combine Multiple I/O) Interface | 3x CMI Interface for CMI Modules | |
Mini PCI Express | 4x Full-size Mini-PCIe Sockets | |
SIM Socket | 1x SIM Socket | |
Antenna Holes | 3x Antenna Holes | |
Other | Instant Reboot | Support 0.2sec |
Power Ignition Sensing | Optional Module .CFM with Delay Time Management and Selectable 12V/24V, Dip Switch |
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Super Cap | SuperCap Integrated for CMOS Battery-free Operation | |
Watchdog Timer | Software Programmable Supports 256 Levels System Reset | |
Power Requirement | Power Type | AT/ATX |
Power Input Voltage | 9~48VDC | |
Connector | 3-pin Terminal Block | |
Power Adapter | Optional AC/DC Adapter .AC/DC 24V/5A, 120W .AC/DC 24V/9.2A, 220W |
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Physical | Dimension (WxDxH) | 242 x 174 x 77 mm |
Weight Information | 3.6 kg | |
Mechanical Construction | Extruded Aluminum with Heavy Duty Metal | |
Mounting | Wall / VESA / DIN Rail / Side | |
Unibody Design | Yes | |
Fanless Design | Yes | |
Jumper-less Design | Yes | |
Cable-less Design | Yes | |
Protection | Reverse Power Input Protection | Yes |
Over Voltage Protection | Protection Range: 51~58V ​Protection Type: shut down operating voltage, re-power on at the preset level to recover |
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Over Current Protection | 15A | |
Operating System | Windows | - 7th Generation Intel® CPU (Kaby Lake-S): Windows® 10 - 6th Generation Intel® CPU (Skylake-S): Windows® 10/ 8.1/ 7 |
Linux | Support by project | |
Environment | Operating Temperature | 7th Generation Intel® CPU (Kaby Lake-S) - 35W TDP CPU: -40°C to 50°C - 51W~65W TDP CPU: -40°C to 45°C - 73W TDP CPU: -40°C to 40°C 6th Generation Intel® CPU (Skylake-S) - 35W TDP CPU: -40°C to 70°C - 51W~65W TDP CPU: -40°C to 55°C - 80W TDP CPU: -40°C to 40°C (With Extended Temperature Peripherals; Ambient with Air Flow; According to IEC60068-2-1, IEC60068-2-2, IEC60068-2-14) |
Storage Temperature | -40°C to 85°C | |
Relative Humidity | 40°C @ 95% RH (non-Condensing) | |
Shock | 1. IEC60068-2-27: Operating, 50 Grms, Half-sine 11 ms Duration, w/ SSD 2. IEC/EN61373: Operating, 50 Grms, Half-sine 30 ms Duration, w/ SSD |
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Vibration | 1. IEC60068-2-64: Operating, 5 Grms, 5-500 Hz, 3 Axes, w/ SSD 2. IEC/EN61373: Operating, 1 Grms, 5-150 Hz, 3Axes, w/ SSD 3. IEC/EN61373 (Simulated Long Life Testing): Non-Operating, 5-150Hz, 3Axed, w/ SSD |
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EMC | • CE, UKCA, FCC, ICES-003 Class A • EN 50155 (EN 50121-3-2 Only) • E-mark |
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EMI | • CISPR 32 Conducted & Radiated: Class A • EN/BS EN 50121-3-2 Conducted & Radiated: Class A • EN/BS EN IEC 61000-3-2 Harmonic current emissions: Class A • EN/BS EN61000-3-3 Voltage fluctuations & flicker • FCC 47 CFR Part 15B, ICES-003 Conducted & Radiated: Class A |
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EMS | • EN/IEC 61000-4-2 ESD: Contact: 6 kV; Air: 8 kV • EN/IEC 61000-4-3 RS: 80 MHz to 1000 MHz: 20 V/m • EN/IEC 61000-4-4 EFT: AC Power: 2 kV; Signal: 2 kV • EN/IEC 61000-4-5 Surges: AC Power: 2 kV • EN/IEC 61000-4-6 CS: 10V • EN/IEC 61000-4-8 PFMF: 50 Hz, 1A/m • EN/IEC 61000-4-11 Voltage Dips & Voltage Interruptions: 0.5 cycles at 50 Hz |
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Safety | LVD (IEC/EN60950-1) | |
Fire Protection | EN45545-2 | |
MTBF | - Time:457,941 Hours - Database: Telcordia SR-332 Issue3, Method 1, Case 3 |