ECS Z370 Lightsaber

ECS hasn’t had many boards to offer the enthusiast segment in a couple of generations, mostly focusing on the business class chipsets, like the H110 and B250. However they have continually released at least one 'enthusiast' class board per generation, more recently under the name of 'Lightsaber' or 'Claymore'. The Claymore didn’t make it to Z270, but the Lightsaber did, as well as a mITX board. With Z370 and Coffee Lake processors being released, ECS has announced their Z370-Lightsaber motherboard. This board, we are told, is targeted at gamers.

As far as looks go, the Z370 Lightsaber is fairly plain with a black PCB, black VRM heatsinks, and black and grey memory slots. There isn’t a shroud covering the rear panel, with the silver ports and the audio area in full view. The VRM heatsinks are connected via a heat pipe and look like they can do the job, with multiple rows of fins to increase surface area and aid in heat dissipation. The Lightsaber does have four RGB LED headers on the bottom which are adjustable through the BIOS, although no RGB LED elements present built into the board.

As with most ATX motherboards, we get four memory slots supporting up to 64GB in capacity, although ECS quotes the maximum supported memory speed as only DDR4-3200, compared to the DDR4-4000 range we are seeing on most other boards. The board does have three full-length PCIe slots, and three PCIe x1 for expansion. The board only supports AMD Crossfire and not NVIDIA SLI, and so the lane breakdown would be x16/x4 from the CPU for the two primary slots with the last slot being PCIe 3.0 x4 and fed from the chipset.

Storage options consist of two M.2 PCIe 3.0 x4 slots, with one of them supporting SATA as well. The top slot is able to hold 110mm drive while the bottom slot supports up to 80mm devices. The board comes with six SATA ports supporting RAID 0, 1,5, and 10, and has a total of five fan headers scattered around the board - one by the CPU area, another by the ATX 24 pin power connector, two across the bottom of the board, and one just below the left VRM heatsink. Audio duties are handled by the ALC1150 codec, which was last generation’s flagship model. The audio is not EMI shielded but does have independent power delivery to minimize any interference. Nichicon audio capacitors, as well as gold plated contacts round out the audio portion. The Lightsaber, a gaming-focused board, has chosen the Rivet Networks Killer E2500 network controller, and takes advantage of the network controlling features therein. The board comes with a three-digit debug LED (rather than a two-digit one) as well as onboard start/reset buttons. On the bottom of the board, there are buttons for one-touch overclocking, BIOS selection, BIOS updating, and a ROM backup button which should make backups and updates to the dual BIOS easier.

For USB connectivity, there is a total of 10 USB ports on the back panel. Two USB 3.1 (10 Gbps - only Type-A) from an ASMedia controller, four USB 3.1 (5 Gbps), and four USB 2.0. The back panel also has a single PS/2 port, a clear CMOS button, DisplayPort and HDMI video outputs, the Killer E2500 NIC, and the audio stack plus SPDIF (above the video outputs). 

Pricing nor availability was listed for the ECS Z370-Sabertooth. The Z270 Lightsaber was released at $199 and due to the similarities between the boards, we expect this to be priced similarly. 

ECS Z370-Lightsaber
Warranty Period 3 Years
Product Page Link
Price N/A
Size ATX
CPU Interface LGA1151
Chipset Intel Z370 Express
Memory Slots (DDR4) Four DDR4
Supporting 64GB
Dual Channel
Support DDR4 3200+
Network Connectivity 1 x Rivet Networks Killer E2500 LAN
Onboard Audio Realtek ALC1150
PCIe Slots for Graphics
(from CPU)
1 x PCIe 3.0 x16 slots @ x16 
1 x PCIe 3.0 x16 slots @ x4
PCIe Slots for Other
(from Chipset)
1 x PCIe 3.0 x16 slots @ x4
3 x PCIe 3.0 x1 slots @ x1
Onboard SATA 6 x Supporting RAID 0/1/5/10
Onboard SATA Express None
Onboard M.2 2 x PCIe 3.0 x4 - NVMe or SATA
Onboard U.2 None
USB 3.1 (10 Gbps) 2 x Type-A 10Gbps (ASMedia)
USB 3.1 (5 Gbps)
aka USB 3.0
4 x Rear Panel
1 x Header
USB 2.0 4 x Rear Panel
2 x Headers
Power Connectors 1 x 24-pin EATX
1 x 8-pin ATX 12V
Fan Headers 2 x CPU
2 x System 
1 x Power
IO Panel 1 x PS.2 keyboard/mouse port
1 x DisplayPort
1 x HDMI Port
2 x USB 3.1 (10 Gbps) ports (Type-A)
4 x USB 3.1 (5 Gbps) ports
4 x USB 2.0
1 x RJ-45 LAN Port
1 x Optical S/PDIF out
6 x Audio Jacks
GIGABYTE Z370 HD3 MSI Z370 Godlike Gaming
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  • tommythorn - Monday, October 23, 2017 - link

    While that feature page is great, the thunderbolt part is slightly misleading as a few of them supports it via an add-in-card. The page only lists the one that has it built-in. (The lackluster support for TB3 as well as 10 GbE is disappointing).
  • OFelix - Saturday, October 21, 2017 - link

    Thanks
  • Stochastic - Friday, October 20, 2017 - link

    Would you consider putting out some simple Wirecutter-style recommendations? A lot of people (including myself) would like someone else who is better informed to simplify the decision-making process.
  • Ian Cutress - Friday, October 20, 2017 - link

    When we get our Z370 reviews underway, we'll start doing some buyers guides
  • Stochastic - Friday, October 20, 2017 - link

    Great, thanks!
  • IGTrading - Sunday, October 22, 2017 - link

    When do we get a 50+ AMD motherboard article guys ? :)
  • abrowne1993 - Friday, October 20, 2017 - link

    Okay but which one looks the coolest?
  • dave_the_nerd - Friday, October 20, 2017 - link

    "Whoever thought this was a good idea at Intel needs to be fired."

    Well... gee... why don't you tell us how you really feel?
  • DigitalFreak - Friday, October 20, 2017 - link

    This whole notch thing makes me wonder if the 8xxx series was originally supposed to work in existing motherboards, but Intel ran into issues at the last minute.
  • KaarlisK - Saturday, October 21, 2017 - link

    Honestly, I cannot see the issue. The pins were changed so that nothing bad will happen if you put the wrong CPU in the wrong motherboard.
    As for the notches, I for one am happy that they were not changed. This means they can reuse the physical design, which lowers validation costs, which makes the CPUs cheaper.

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