Dimensions and weight
The following table lists the height, width, depth, and weight of your Precision 5860 Tower.
| Description | Values | |
|---|---|---|
| Height |
|
|
| Width |
|
|
| Depth |
|
|
| Weight NOTE:The weight of your
computer depends on the configuration that is ordered and
manufacturing variability.
|
|
|
Processors
The following table lists the details of the processors that are supported on your Precision 5860 Tower.
| Processor type | Processor wattage | Processor core count | Processor thread count | Processor speed | Processor cache |
|---|---|---|---|---|---|
| Intel Xeon w3-2423 | 120 W | 6 | 12 | 2.10 GHz to 4.20 GHz | 15 MB |
| Intel Xeon w3-2425 | 130 W | 6 | 12 | 3.00 GHz to 4.40 GHz | 15 MB |
| Intel Xeon w3-2435 | 165 W | 8 | 16 | 3.10 GHz to 4.50 GHz | 22.50 MB |
| Intel Xeon w5-2445 | 175 W | 10 | 20 | 3.10 GHz to 4.60 GHz | 26.25 MB |
| Intel Xeon w5-2455X | 200 W | 12 | 24 | 3.20 GHz to 4.60 GHz | 30 MB |
| Intel Xeon w5-2465X | 200 W | 16 | 32 | 3.10 GHz to 4.70 GHz | 33.75 MB |
| Intel Xeon w7-2475X | 225 W | 20 | 40 | 2.60 GHz to 4.80 GHz | 37.50 MB |
| Intel Xeon w7-2495X | 225 W | 24 | 48 | 2.50 GHz to 4.80 GHz | 45 MB |
| Intel Xeon w3-2525 | 175 W | 8 | 16 | 3.50 GHz to 4.50 GHz | 22.50 MB |
| Intel Xeon w3-2535 | 185 W | 10 | 20 | 3.50 GHz to 4.60 GHz | 26.25 MB |
| Intel Xeon w5-2545 | 210 W | 12 | 24 | 3.50 GHz to 4.70 GHz | 30 MB |
| Intel Xeon w5-2555X | 210 W | 14 | 28 | 3.30 GHz to 4.80 GHz | 33.75 MB |
| Intel Xeon w5-2565X | 240 W | 18 | 36 | 3.20 GHz to 4.80 GHz | 37.50 MB |
| Intel Xeon w7-2575X | 250 W | 22 | 44 | 3.00 GHz to 4.80 GHz | 45 MB |
| Intel Xeon w7-2595X | 250 W | 26 | 52 | 2.80 GHz to 4.80 GHz | 48.75 MB |
Chipset
The following table lists the details of the chipset supported by your Precision 5860 Tower.
| Description | Values |
|---|---|
| Chipset |
Intel PCH W790 |
| Processor |
Intel Xeon w3/w5/w7 |
| DRAM bus width |
64-bit |
| Flash EPROM |
32 MB + 16 MB |
| PCIe bus |
Up to Gen5 |
| Non-volatile memory | Yes |
| BIOS configuration Serial Peripheral Interface (SPI) | 256 Mbit (32 MB) located at SPI_FLASH |
| Trusted Platform Module (TPM) 2.0 (Discrete TPM Enabled) | 24 KB located at TPM 2.0 on chipset |
| Firmware-TPM (Discrete TPM disabled) | By default the Platform Trust Technology feature is visible to the operating system. |
| NIC EEPROM | LOM configuration contained within SPI flash ROM instead of LOM e-fuse |
Operating system
Your Precision 5860 Tower supports the following operating systems:
- Windows 11 Pro Downgrade (Windows 10 Pro Image-factory installed)
- Windows 10 CMIT Government Edition, 64-bit (China only)
- Windows 11 Pro for Workstations
- Windows 10 Pro for Workstations Downgrade
- Ubuntu 22.04 LTS, 64-bit
- Red Hat Enterprise Linux 8.6
Memory
The following table lists the memory specifications of your Precision 5860 Tower.
| Description | Values |
|---|---|
| Memory slots |
Eight DIMM slots |
| Memory type |
ECC DDR5 Quad-channel |
| Memory speed |
4800 MT/s
NOTE:The processors in this computer limit memory speed to 4800 MT/s.
NOTE:The computer may ship with faster-rated memory, but its performance is restricted by the memory bus limit of 4800 MT/s.
|
| Maximum memory configuration |
2 TB |
| Minimum memory configuration |
16 GB |
| Memory size per slot |
16 GB, 32 GB, 64 GB, 128 GB, 256 GB |
| Memory configurations supported |
|
- When five or more memory DIMM slots are populated in your computer, the 4800 MT/s memory speed will clock down to 4400 MT/s.
- Intel Xeon W3-2423/W3-2425/W3-2435/W3-2525/W3-2535 processors support memory speed up to 4400 MT/s on all configurations.
- ACPI S3 is disabled by default in high-capacity memory configurations (2 TB in all Speeds) due to the risk of DIMM thermal protection activation under elevated ambient, extended S3 conditions.
Memory matrix
The following table lists the memory configurations supported on your Precision 5860 Tower.
| Description | Options | Options | Options | |||||
|---|---|---|---|---|---|---|---|---|
| Description | CH_F | CH_E | CH_A | CH_B | ||||
| Configurations | DIMM 4 | DIMM 8 | DIMM 2 | DIMM 6 | DIMM 5 | DIMM 1 | DIMM 7 | DIMM 3 |
| 16 GB ECC DDR5 | - | - | - | - | - | 16 | - | - |
| 32 GB ECC DDR5 | - | - | 16 | - | - | 16 | - | - |
| 32 GB ECC DDR5 | - | - | - | - | - | 32 | - | - |
| 64 GB ECC DDR5 | 16 | - | 16 | - | - | 16 | - | 16 |
| 64 GB ECC DDR5 | - | - | 32 | - | - | 32 | - | - |
| 64 GB ECC DDR5 | - | - | - | - | - | 64 | - | - |
| 96 GB ECC DDR5 | 16 | - | 16 | 16 | 16 | 16 | - | 16 |
| 128 GB ECC DDR5 | - | - | - | - | - | 128 | - | - |
| 128 GB ECC DDR5 | - | - | 64 | - | - | 64 | - | - |
| 128 GB ECC DDR5 | 16 | 16 | 16 | 16 | 16 | 16 | 16 | 16 |
| 128 GB ECC DDR5 | 32 | - | 32 | - | - | 32 | - | 32 |
| 192 GB ECC DDR5 | 32 | - | 32 | 32 | 32 | 32 | - | 32 |
| 256 GB ECC DDR5 | 32 | 32 | 32 | 32 | 32 | 32 | 32 | 32 |
| 256 GB ECC DDR5 | 64 | - | 64 | - | - | 64 | - | 64 |
| 256 GB ECC DDR5 | - | - | 128 | - | - | 128 | - | - |
| 256 GB ECC DDR5 | - | - | - | - | - | 256 | - | - |
| 384 GB ECC DDR5 | 64 | - | 64 | 64 | 64 | 64 | - | 64 |
| 512 GB ECC DDR5 | 64 | 64 | 64 | 64 | 64 | 64 | 64 | 64 |
| 512 GB ECC DDR5 | 128 | - | 128 | - | 128 | - | 128 | - |
| 512 GB ECC DDR5 | - | - | 256 | - | - | 256 | - | - |
| 768 GB ECC DDR5 | 128 | - | 128 | 128 | 128 | 128 | - | 128 |
| 1 TB GB ECC DDR5 | 128 | 128 | 128 | 128 | 128 | 128 | 128 | 128 |
| 1 TB GB ECC DDR5 | 256 | - | 256 | - | 256 | - | 256 | - |
| 1.5 TB GB ECC DDR5 | 256 | - | 256 | 256 | 256 | 256 | - | 256 |
| 2 TB GB ECC DDR5 | 256 | 256 | 256 | 256 | 256 | 256 | 256 | 256 |
External ports and slots
The following table lists the external ports and slots on your Precision 5860 Tower.
| Description | Values |
|---|---|
| Network port |
|
| USB ports |
|
| Audio port |
|
| Video port(s) |
Via Discrete GPU |
| Media-card reader |
One SD-card slot (front) |
| Power-adapter port |
One power port |
| Security-cable slot |
|
Internal slots
The following table lists the internal slots of your Precision 5860 Tower.
| Description | Values |
|---|---|
| SATA |
|
| PCIe Expansion |
|
| M.2 |
NOTE:To learn more about the features of different types of M.2 cards, see the knowledge base article
000144170 at
Dell Support Site.
|
Ethernet
The following table lists the wired ethernet Local Area Network (LAN) specifications of your Precision 5860 Tower.
| Description | Values |
|---|---|
| Model |
|
| Transfer rate |
|
Wireless module
The following table lists the Wireless Local Area Network (WLAN) module that is supported on your Precision 5860 Tower.
| Description | Values |
|---|---|
| Model number |
Qualcomm WCN6856-DBS |
| Transfer rate |
Up to 3571 Mbps |
| Frequency bands supported |
2.4 GHz/5 GHz /6 GHz
NOTE:The 6 GHz frequency is supported on computers installed with Windows 11 operating system only.
|
| Wireless standards |
|
| Encryption |
|
| Bluetooth wireless card NOTE:The functionality of
the Bluetooth wireless card may vary based on the operating
system. |
Bluetooth 5.3 |
Audio
The following table lists the audio specifications of your Precision 5860 Tower.
| Description | Values | |
|---|---|---|
| Audio controller |
Realtek Audio Controller ALC3246-CG |
|
| Stereo conversion |
24-bit DAC (Digital-to-Analog) and ADC (Analog-to-Digital) |
|
| Internal audio interface |
USB |
|
| External audio interface |
|
|
| Number of speakers |
One (internal) |
|
| Internal-speaker amplifier |
Not supported |
|
| External volume controls |
Not supported |
|
| Speaker output: | ||
| Average |
2 W |
|
| Peak |
2.5 W |
|
| Microphone |
Via Universal audio port |
|
Storage
This section lists the storage options on your Precision 5860 Tower.
- Two 2.5-inch hard drives (internal)
- Two 2.5-inch hard drive (via externally facing storage flexbays)
- Two 3.5-inch hard drives, internal
- Two 3.5-inch hard drive (via externally facing storage flexbays)
- Two M.2 solid-state drives, internal
- Two M.2 solid-state drive (via externally facing storage flexbays)
| Description | Interface type | Capacity |
|---|---|---|
| 2.5-inch, 7200 RPM, hard-disk drive | SATA 3.0 | 500 GB |
| 2.5-inch, SATA Mixed use Solid-state drive | SATA 3.0 | 1.92 TB |
| 3.5-inch, 7200 RPM, hard-disk drive | SATA 3.0 | 1 TB |
| 3.5-inch, 7200 RPM, Enterprise hard-disk drive | SATA 3.0 | 2 TB |
| 3.5-inch, 7200 RPM, Enterprise hard-disk drive | SATA 3.0 | 4 TB |
| 3.5-inch, 7200 RPM, Enterprise hard-disk drive | SATA 3.0 | 8 TB |
| 3.5-inch, 7200 RPM, Enterprise hard-disk drive | SATA 3.0 | 12 TB |
| 2.5-inch, 15k RPM, hard-disk drive | SAS | 600 GB |
| 2.5-inch, 10K RPM, hard-disk drive | SAS | 1.2 TB |
| 2.5-inch, 10K RPM, Enterprise hard-disk drive | SAS | 2.4 TB |
| M.2 2230, SSD, Class 40 | PCIe NVMe Gen4 x4 | 256 GB |
| M.2 2280, SSD, Class 40 | PCIe NVMe Gen4 x4 | 2 TB |
| M.2 2280, SSD, Class 40 | PCIe NVMe Gen4 x4 | 4 TB |
| M.2 2280, SSD, Self-Encrypting, Opal 2.0, FIPS | PCIe NVMe Gen4 x4 | 512 GB |
| M.2 2280, SSD, Self-Encrypting, Opal 2.0, FIPS | PCIe NVMe Gen4 x4 | 1 TB |
RAID (Redundant Array of Independent Disks)
For optimal performance when configuring drives as a RAID volume, Dell Technologies recommends drive models that are identical.
RAID 0 (Striped, Performance) volumes benefit from higher performance when drives are matched because the data is split across multiple drives: any I/O operations with block sizes larger than the stripe size splits the I/O and become constrained by the slowest of the drives. For RAID 0 I/O operations where block sizes are smaller than the stripe size, whichever drive the I/O operation targets determine the performance, which increases variability and results in inconsistent latencies. This variability is particularly pronounced for write operations, and it can be problematic for applications that are latency sensitive. One such example of this is any application that performs thousands of random writes per second in small block sizes.
RAID 1 (Mirrored, Data Protection) volumes benefit from higher performance when drives are matched because the data is mirrored across multiple drives: all I/O operations must be performed identically to both drives, thus variations in drive performance when the models are different, results in the I/O operations completing only as fast as the slowest drive. While this does not suffer the variable latency issue in small random I/O operations as with RAID 0 across heterogeneous drives, the impact is nonetheless large because the higher performing drive becomes limited in all I/O types. One of the worst examples of constrained performance here is when using unbuffered I/O. To ensure that writes are fully committed to nonvolatile regions of the RAID volume, unbuffered I/O bypasses cache (for example by using the Force Unit Access bit in the NVMe protocol) and the I/O operation will not complete until all the drives in the RAID volume have completed the request to commit the data. This kind of I/O operation completely negates any advantage of a higher performing drive in the volume.
- Requires at least three drives.
- Data is available even if one of the drives present in the volume fails. The failed drive must be replaced, and the volume must be rebuilt for the data to be accessible.
- The total capacity is N-1, where N is the total capacity of the drives in the array. For example, if you use three 1 TB drives in a RAID 5 array, the total volume size is 2 TB.
- Requires a minimum of four drives. Only an even number of drives can be used, and an odd number of drives are not possible.
- The total volume capacity is half the sum of individual drive capacity. For example, when you use four drives of 1 TB, you get a RAID 10 volume of 2 TB.
Care must be taken to match not only the drive vendor, capacity, and class, but also the specific model. Drives from the same vendor, with the same capacity, and even within the same class, can have different performance characteristics for certain types of I/O operations. Thus, matching by model ensures that the RAID volumes are consisted of a homogeneous array of drives that deliver all the benefits of a RAID volume without incurring the additional penalties when one or more drives in the volume are lower performing.
Precision 5860 Tower supports RAID with more than one hard drive configuration.
Disk Coercion :
Intel VROC family of product provides support for Disk Coercion. When a RAID volume is created, this feature analyzes the hard drives and automatically adjusts (round down) the capacity of the disks to 95% of the smallest hard drive. This allows for the variances in the hard drive capacities from different vendors.
The VROC UI either Windows VROC Application UI or CLI tool for manufacturing provides you with an option to manually override to allow you to use all available disk space.
MegaRAID 9660-16i card
The following table lists the MegaRAID 9660-16i card specifications.
| Description | Values |
|---|---|
| Adapter type | MegaRAID |
| Ports | 16 internal |
| Storage controller | SAS4116 ROC |
| PCIe host interface | x8, Gen 4.0 |
| Storage interface | Gen 4.0 PCIe (NVMe), 24 Gb/s SAS, 6 Gb/s SATA |
| RAID levels | 0, 1, 10, 5, 50, 6, 60 |
| Max SAS/SATA PDs | 240 |
| Max NVMe PDs | 32 |
| Connectors | 2 ×8 SFF-8654 |
| Form factor | LP-MD2 |
| Dimensions | 155.52 mm (± 0.13 mm) x 68.77 mm (± 0.13 mm) |
| Typical power | 20 W |
| Operating conditions |
250 LFM at 55°C |
| Energy backup |
CVPM05 (FBU345) |
| Security | HW Secure Boot and Attestation |
| Driver | Unified MPI3 Driver |
| Operating system supported |
|
Media-card reader
The following table provides the specification of media cards that are supported by your Precision 5860 Tower.
| Description | Values |
|---|---|
| Media-card slot type |
4.0 slot |
| Media-cards supported |
|
|
NOTE:The maximum
capacity of the media-card reader varies depending on the standard
of the media card that is inserted in your computer.
|
|
Power ratings
The following table lists the power rating specifications of Precision 5860 Tower.
| Description | Option one | Option two | |
|---|---|---|---|
| Type |
1350 W Platinum internal power supply |
750 W Platinum internal power supply |
|
| Input voltage |
90 VAC-264 VAC |
90 VAC-264 VAC |
|
| Input frequency |
47 Hz-63 Hz |
47 Hz-63 Hz |
|
| Input current (maximum) |
16 A |
10 A |
|
| Output current (continuous) |
Operating:
|
Operating:
|
|
| Rated output voltage |
|
|
|
| Temperature range | |||
| Operating |
5°C to 45°C (41°F to 113°F) |
5°C to 45°C (41°F to 113°F) |
|
| Storage |
-40°C to 70°C (-40°F to 158°F) |
-40°C to 70°C (-40°F to 158°F) |
|
Power supply connector
The following table lists the Power supply connector specifications of your Precision 5860 Tower.
| Description | Values |
|---|---|
| 750 W (Platinum) |
|
| 1350 W (Platinum) |
|
GPU—Discrete
The following table lists the specifications of the discrete Graphics Processing Unit (GPU) supported by your Precision 5860 Tower.
| Controller | Memory size | Memory type |
|---|---|---|
| AMD Radeon PRO W6300 | 2 GB | GDDR6 |
| AMD Radeon PRO W6400 | 4 GB | GDDR6 |
| AMD Radeon PRO W6600 | 8 GB | GDDR6 |
| AMD Radeon PRO W7500 | 8 GB | GDDR6 |
| AMD Radeon PRO W7600 | 8 GB | GDDR6 |
| AMD Radeon PRO W6800 | 16 GB | GDDR6 |
| AMD Radeon PRO W7700 | 16 GB | GDDR6 |
| AMD Radeon PRO W7900 | 48 GB | GDDR6 |
| NVIDIA T400 | 4 GB | GDDR6 |
| NVIDIA T1000 | 8 GB | GDDR6 |
| NVIDIA RTX A2000 | 12 GB | GDDR6 |
| NVIDIA RTX A4000 | 16 GB | GDDR6 |
| NVIDIA RTX A4500 | 20 GB | GDDR6 |
| NVIDIA RTX A5500 | 24 GB | GDDR6 |
| NVIDIA RTX A6000 | 48 GB | GDDR6 |
| NVIDIA RTX 4000 Ada Generation | 20 GB | GDDR6 |
| NVIDIA RTX 4500 Ada Generation | 24 GB | GDDR6 |
| NVIDIA RTX 5000 Ada Generation | 32 GB | GDDR6 |
| NVIDIA RTX 6000 Ada Generation | 48 GB | GDDR6 |
| NVIDIA RTX PRO 2000 Blackwell | 16 GB | GDDR7 |
| NVIDIA RTX Pro 4000 Blackwell | 24 GB | GDDR7 |
| NVIDIA RTX Pro 4500 Blackwell | 32 GB | GDDR7 |
| NVIDIA RTX Pro 5000 Blackwell | 48 GB | GDDR7 |
| NVIDIA RTX Pro 6000 Blackwell Max-Q | 96 GB | GDDR7 |
| NVIDIA A800 | 40 GB | HBM2 |
Video port resolution
The following table lists the video port resolution for your Precision 5860 Tower.
| Graphics card | Video ports | Maximum supported resolution |
|---|---|---|
| AMD Radeon PRO W6300 | Two DP 1.4 ports | 7680 x 4320 @ 24 bpp at 120 Hz
NOTE:Requires two DPs 1.4a and DSC.
|
| AMD Radeon PRO W6400 | Two DP 1.4 ports | 7680 x 4320 @ 24 bpp at 120 Hz
NOTE:Requires two DPs 1.4a and DSC.
|
| AMD Radeon PRO W6600 | Four DP 1.4 ports | 7680 x 4320 @ 24 bpp at 120 Hz NOTE:Requires two DPs 1.4a and DSC.
|
| AMD Radeon PRO W7500 | Four DP 1.4 ports | 7680 x 4320 @ 24 bpp at 120 Hz NOTE:Requires two DPs 1.4a and DSC.
|
| AMD Radeon PRO W7600 | Four DP 1.4 ports | 7680 x 4320 @ 24 bpp at 120 Hz NOTE:Requires two DPs 1.4a and DSC.
|
| AMD Radeon PRO W6800 | Six mini-DP 1.4 ports | 7680 x 4320 @ 24 bpp at 120 Hz NOTE:Requires two DPs 1.4a and DSC.
|
| AMD Radeon PRO W7700 | Four DP 1.4 ports | 7680 x 4320 @ 24 bpp at 120 Hz
NOTE:Requires two DPs 1.4a and DSC.
|
| AMD Radeon PRO W7900 | Three DP 1.4 ports and One mini-DP port | 7680 x 4320 @ 24 bpp at 120 Hz
NOTE:Requires two DPs 1.4a and DSC.
|
| NVIDIA T400 | Three mini-DP 1.4 ports | 7680 x 4320 @ 24 bpp at 120 Hz
NOTE:Requires two DPs 1.4a and DSC.
|
| NVIDIA T1000 | Four mini-DP 1.4 ports | 7680 x 4320 @ 24 bpp at 120 Hz
NOTE:Requires two DPs 1.4a and DSC.
|
| NVIDIA RTX A2000 | Four mini-DP 1.4 ports | 7680 x 4320 @ 24 bpp at 120 Hz
NOTE:Requires two DPs 1.4a and DSC.
|
| NVIDIA RTX A4000 | Four DP 1.4 ports | 7680 x 4320 @ 24 bpp at 120 Hz
NOTE:Requires two DPs 1.4a and DSC.
|
| NVIDIA RTX A4500 | Four DP 1.4 ports | 7680 x 4320 @ 24 bpp at 120 Hz
NOTE:Requires two DPs 1.4a and DSC.
|
| NVIDIA RTX A5500 | Four DP 1.4 ports | 7680 x 4320 @ 24 bpp at 120 Hz NOTE:Requires two DPs 1.4a
and DSC.
|
| NVIDIA RTX A6000 | Four DP 1.4 ports | 7680 x 4320 @ 24 bpp at 120 Hz NOTE:Requires two DPs 1.4a
and DSC.
|
| NVIDIA RTX 4000 Ada Generation | Four DP 1.4 ports | 7680 x 4320 @ 24 bpp at 120 Hz
NOTE:Requires two DPs 1.4a and DSC.
|
| NVIDIA RTX 4500 Ada Generation | Four DP 1.4 ports | 7680 x 4320 @ 24 bpp at 120 Hz
NOTE:Requires two DPs 1.4a and DSC.
|
| NVIDIA RTX 5000 Ada Generation | Four DP 1.4 ports | 7680 x 4320 @ 24 bpp at 120 Hz
NOTE:Requires two DPs 1.4a and DSC.
|
| NVIDIA RTX Pro 2000 Blackwell | Four mini-DP 2.1b | 7680 x 4320 @ 24 bpp at 165 Hz NOTE:Requires two DPs 1.4a and DSC.
|
| NVIDIA RTX Pro 4000 Blackwell | Four DP 2.1b ports | 7680 x 4320 @ 24 bpp at 120 Hz NOTE:Requires two DPs 1.4a and DSC.
|
| NVIDIA RTX Pro 4500 Blackwell | Four DP 2.1b ports | 7680 x 4320 @ 24 bpp at 120 Hz NOTE:Requires two DPs 1.4a and DSC.
|
| NVIDIA RTX Pro 5000 Blackwell | Four DP 2.1b ports | 7680 x 4320 @ 24 bpp at 120 Hz NOTE:Requires two DPs 1.4a and DSC.
|
| NVIDIA RTX Pro 6000 Blackwell Max-Q | Four DP 2.1b ports | 7680 x 4320 @ 24 bpp at 120 Hz NOTE:Requires two DPs 1.4a and DSC.
|
| NVIDIA A800
NOTE: The NVIDIA A800 40GB does not come equipped with display ports, so it has no video outputs.
|
N/A | N/A |
Hardware security
The following table lists the hardware security of your Precision 5860 Tower.
| Hardware security |
|---|
| Kensington security-cable slot |
| Padlock loop |
| Chassis lock support - Coin locker |
| Chassis intrusion switch |
| Lockable bezel for externally-facing storage flexbay (included with M.2 NVMe drives, optional with SATA drives) |
| TPM 2.0 Discrete Hardware |
| SafeBIOS: includes Dell Off-host BIOS Verification, BIOS Resilience, BIOS Recovery, and additional BIOS Controls |
| SafeID including Trusted Platform Module (TPM) 2.0 |
Environmental
The following table lists the environmental specifications of your Precision 5860 Tower.
| Feature | Values |
|---|---|
| Recyclable packaging | Yes |
| BFR/PVC—free | No |
| Vertical orientation packaging support | Yes |
| Multi-Pack packaging | No |
| Energy-Efficient Power Supply | Standard |
| ENV0424 compliant | Yes |
Regulatory compliance
The following table lists the regulatory compliance of your Precision 5860 Tower.
| Regulatory compliance |
|---|
| EPEAT registered configurations available |
| ENERGY STAR compliant configurations available |
| TCO 9.0 certified configurations available |
| US CEC MEPS compliant configurations available |
| WEEE |
| Japan Energy Law |
| EU RoHS |
| China RoHS |
Operating and storage environment
This table lists the operating and storage specifications of your Precision 5860 Tower.
Airborne contaminant level: G1 as defined by ISA-S71.04-1985
| Description | Operating | Storage |
|---|---|---|
| Temperature range |
10°C to 35°C (50°F to 95°F) |
-40°C-65°C (-40°F-149°F) |
| Relative humidity (maximum) |
20% to 80% (non-condensing, Max dew point temperature = 26°C) |
5% to 95% (non-condensing, Max dew point temperature = 33°C) |
| Vibration (maximum)* |
0.52 GRMS random at 5 Hz to 350 Hz |
2.00 GRMS random at 5 Hz to 350 Hz |
| Shock (maximum) |
Bottom half-sine pulse with a change in velocity of 40G, 2.5ms |
105G half-sine pulse with a change in velocity of 105G, 2.5ms |
| Altitude range |
-15.2 m to 3048 m (-49 ft to 10,000 ft) |
-15.2 m to 10,668 m (-49 ft to 35,000 ft) |
|
CAUTION:Operating and storage temperature ranges may differ among components, so operating or storing the device outside these ranges may impact the performance of specific components.
|
||
* Measured using a random vibration spectrum that simulates the user environment.
† Measured using a 2 ms half-sine pulse.





























