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Seagate FireCuda 530 SSD Product Manual, Rev B 5
www.seagate.com
1. Introduction
The Seagate® FireCuda® 530 SSD is a versatile NVMe SSD with PCIe Gen4 x4 interface. It is up to 12x faster than SATA
SSDs and delivers Ultra-fast performance and enhanced endurance for long term use.
Table 1 The FireCuda 530 SSD Features
FeatureDescription
Capacity
(User)
Certifications,
Eco-Compliance
Dimensions
Form Factor
Weight
Endurance
Interface
Compliance
500 GB, 1000 GB, 2000 GB, 4000 GB
CE, UL, FCC, BSMI, KCC, Microsoft WHQL, VCCI, CB
RoHS
500 GB, 1000 GB
Length, Max 80.15 mm
Width, Max 22.15 mm
Height, Max 2.23 mm
2000 GB, 4000 GB
Length, Max 80.15 mm
Width, Max 22.15 mm
Height, Max 3.58 mm
With heatsink
Length, Max 80.15 mm
Width, Max 24.20 mm
Height, Max 10.74 mm
M2 2280-S2-M
M2 2280-D2-M
500 GB: 7.7 g
1000 GB: 8.1 g
2000 GB: 10.0 g
4000 GB: 10.6 g
With heatsink
47 g
Total Bytes Written
500 GB: 640 TB
1000 GB: 1275 TB
2000 GB: 2550 TB
4000 GB: 5100 TB
NVMe 1.4
PCI Express Base 4.0, PCIe Gen 4 x 4 lane, and backward compatible to PCIe Gen3, Gen 2, and Gen 1
See Section 2.5, Reliability/Endurance.
NAND
Operating
Systems
Performance
Random
TLC
Windows 10 (64 bit)
Ubuntu 16.04, 18.04
CentOS 6, 7
Read: Up to 1,000,000 IOPS
Write: Up to 1,000,000 IOPS
Actual performance might vary depending on
use conditions and environment.
See Section 2.2, Performance.
Seagate FireCuda 530 SSD Product Manual, Rev B6
www.seagate.com
Table 1 The FireCuda 530 SSD Features (continued)
Performance
Sequential
Power
Consumption
Power
Management
Reliability
Shock and
Vibration
Temperature
Range
Volta ge
Warran ty
FeatureDescription
Read: Up to 7300MB/s
Write: Up to 6900MB/s
Actual performance might vary depending on
the capacity, use conditions and environment.
Sequential Read/Write is measured while testing 1000 MB five times by
CrystalDiskMark.
2.3Power Consumption
Table 4 Power Consumption
Power Consumption
Capacity
Max Avg
Read
(W)
Max Avg
Write
(W)
Idle PS3
(mW)
L1.2
(mW)
500 GB6.05.94.54.5
1000 GB6.16.16.16.1
2000 GB7.67.67.97.8
4000 GB7.97.98.27.5
NOTEAbout power consumption:
The average value of power consumption is based on 100% conversion
efficiency.
Based on SU6SExxx-series under ambient temperature.
Use CrystalDiskMark 7.0.0, 1GB range, QD=8, Thread=1. Measuring power
consumption during sequential Read and sequential Write.
The measured power voltage is 3.3 V.
Measured under ambient temperature.
Power Consumption can differ with flash configuration and platform.
Power consumption during read and write operation is measured on
Gen4 X570 + 6 Core CPU.
Seagate FireCuda 530 SSD Product Manual, Rev B9
www.seagate.com
2.4Environmental Conditions
Table 5 Temperature, Humidity, Shock
SpecificationValue
Temperature
Operating (case temperature at specific airflow)
Non-operating
Humidity
Operating
Non-operating (storage)
Shock
Non-operating
Vibration
Non-operating
NOTETemperature is measured without condensation. Operating mode
temperature is measured by temperature sensor, SMART Attribute.
Airflow is suggested. Airflow allows the device to be operated at the
appropriate temperature for each component during heavy workloads
environments.
0°C to 70°C
-40°C to 85°C
1,500 G, duration 0.5 ms
1.52 G
(20Hz to 80Hz, Frequency)
RMS,
90%
93%
Shock and vibration results assume that the SSD is mounted securely with
the input vibration applied to the SSD mounting. These specifications do not
cover connection issues that may result from testing at this level. The
measured specification is in root mean square (RMS) form.
Non-operating Shock. The limits of non-operating shock applies to all
conditions of handling and transportation. This includes both isolated
SSD and integrated SSDs. Shock may be applied in the X, Y, or Z-axis.
Non-Operating Vibration. The limits of non-operating vibration shall
apply to all conditions of handling and transportation. This includes both
isolated SSD and integrated SSDs. Vibration may be applied in the X, Y, or
Z-axis.
Seagate FireCuda 530 SSD Product Manual, Rev B10
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