Category-7A and Dca Euroclass data cable, S/FTP type (Foiled pairs and foiled cable), with copper conductor and LSFH sheath (Low Smoke Free of Halogen), white colour (RAL 9010). It achieves a bandwidth up to 1500 MHz (higher than the 1000 MHz specified by the standard).
Compatible with PoE/PoE+/PoE++ (Power over Ethernet) technology, allowing the cable to power network devices
Aluminium+polyester shielding foil
Tinned copper outer shielding braid
LSFH (Low Smoke Free of Halogen) outer sheath
79% nominal speed
Certified according to the applicable standards as defined in the available declarations of conformity and performance
Discover
Category 7A
Data cable category Cat 7A complies with the standard for 10 Gigabit Ethernet and it is backwards compatible, with the standards of the inferior categories (Cat 6A/6/5e and Cat 7). Category 7A evolves over category 7, allowing to achieve transmission frequencies of up to 1000 MHz (in each pair) and 10 Gbps of throughput. It includes characteristics and specifications to avoid crosstalk and noise. This type of data cable can be used in 10BASE-T, 100BASE-T, 1000BASE-T and 10GBASE-T compliant systems.
Our category 7A cables are characterized:
Comply with: EN 50173-1:2011, ISO/IEC 11801-1:2017, IEC 61156-5:2009, EN 50288-4-1:2013, EN 50288-4-2:2013
Transfer rate up to 10Gbps
Frequency range of up to 1500 MHz (higher than the 1000 MHz specified by the standard)
Nominal impedance of 100 ohms
Maximum resistance per conductor below 93,8 ohms/Km
What is the PoE technology?
PoE (Power over Ethernet) technology enables the simultaneous transmission of power and data over the same Ethernet network cable, eliminating the need for separate power supplies.
Currently, there are three main standards: IEEE 802.3af (PoE), IEEE 802.3at (PoE+), and IEEE 802.3bt (PoE++/4PPoE).
The latter defines two additional types (Type 3 and Type 4) whit higher power levels, making four PoE levels in total.
The three aspects that differentiate the different types of PoE are:
Maximum PSE (Powr Sourcing Equipments) Power: Indicates the maximum amount of electrical power that can be supplied by an equipment over the Ethernet cable.
Power for the PD (Powered Device): This is the electrical power that can be received by the device powered by the cable.
Number of Twisted Pairs Used: Refers to how many twisted pairs in the Ethernet cable are used to deliver electrical power.
Standards
PoE Type
Maximum PSE Power
Power for the PD
Nº of Twisted Pairs Used
IEEE 802.3af
Type 1
PoE
15.4W
12.95W
2
IEEE 802.3at
Type 2
PoE+
30W
25.5W
2
IEEE 802.3bt
Type 3
PoE++ 4PPoE
60W
51W
4
Type 4
90-100W
71W
4
Recommended uses according to PoE type:
Type 1: IP phones, basic IP camaras. low-demand Wi-Fi access points, sensors or simple IoT devices.
Type 2: Dual band Wi-Fi access points, IP motion camaras (PTZ), IP video phones, alarm systemns.
Type 3: Wi-Fi 6 / Wi-Fi 6E access points, heated PTZ camaras, multimedia terminals, video conferencing equipment.
Type 4: Monitors or touch screens, desktops, high-performance network equipment.
Devices that support a certain type of PoE can also be powered by a higher type, offering greater versatility and scalability in installations.
Main advantages of PoE technology in installations:
Quick and cost-effective installation by using the same cable for power and data transmission.
Greater installation flexibility as there is no need to rely on auxiliary power sockets.
More efficient management and optimised maintenance thanks to the monitoring and administration of the power supply of all equipment from a single point.
Cost reduction by avoiding electrical conduits and external power supplies.
Increased safety by minimising electrical risks in the installation, thanks to the use of low voltage.
Model
DK7000A
Type
S/FTP
Euroclass
Dca
Euroclass: Smoke Production
s1a
Euroclass: Flaming droplets
d2
Euroclass: Acidity
a1
Categorie
Cat 7A
Transmission bandwidth
1500MHz
Transfer rate
10Gbps
Conductor Diameter
mm
0.58
Conductor Material
Solid copper
Conductor type AWG
23
Copper weight
kg/km
20.35
Conductor isolation Diameter
mm
1.43
Conductor isolation Material
Polyethylene
Crucifix filler
No
Shielding foil of pairs
Aluminium + Polyester
Outer shielding braid
Tinned copper (CuSn)
Outer sheath Diameter
mm
7.7
Outer sheath Material
LSFH
Outer sheath Thickness
mm
0.7
Rip cord
No
Spark Test
Vac
3000
Nominal impedance
Ω
100
Conductor resistance
Ohm/100m
< 9.38
Nominal speed
%
79
Working voltage
V
125
Operating temperature
°C
-25 ... 70
Frequencies
1 MHz
4 MHz
8 MHz
10 MHz
16 MHz
20 MHz
25 MHz
31.25 MHz
62.5 MHz
100 MHz
200 MHz
250 MHz
300 MHz
400 MHz
500 MHz
600 MHz
800 MHz
1000 MHz
1200 MHz
1500 MHz
Attenuation (max.)
dB/100m
4
--
4.9
--
8
--
--
--
--
20.3
--
32.5
--
--
46.7
51.4
--
67.6
--
--
Attenuation (typ.)
dB/100m
2
3.5
--
5.4
6.9
7.7
8.7
9.8
14.1
17.9
25.6
28.7
31.5
37.2
42
46.4
54.1
60.7
69.7
75.4
NEXT (min.)
dB/100m
65
--
--
--
65
--
--
--
--
65
--
59.1
--
--
53.6
52.1
--
47.9
--
--
NEXT (typ.)
dB/100m
83.1
90.2
89.7
90.5
90.8
91.2
88.6
87.1
82.7
78.2
72.5
71.1
69.1
67.6
66.3
65
63.6
60.8
59.7
55.4
PS NEXT (min.)
dB/100m
62
--
--
--
62
--
--
--
--
62
--
56.1
--
--
50.6
49.1
--
44.9
--
--
PS NEXT (typ.)
dB/100m
81.8
87.7
87
87.4
87.9
88.1
86.2
85.3
80.4
76
70
68.8
67.3
66.1
64.4
63
62.5
58.7
58
55
ACR-N (min.)
dB/100m
61
--
--
--
57
--
--
--
--
44.7
--
26.7
--
--
6.9
0.7
--
-19.6
--
--
ACR-N (typ.)
dB/100m
81.1
86.7
84.8
85
83.9
83.5
79.8
77.2
68.5
60.1
46.6
42
37.2
30.5
24.4
18.7
9.7
-0.1
-5
-15
PS ACR-N (min.)
dB/100m
58
--
--
--
54
--
--
--
--
41.7
--
23.7
--
--
3.9
-2.3
--
-22.6
--
--
PS ACR-N (typ.)
dB/100m
79.9
84.2
82.1
82
81
80.4
77.4
76.3
66.1
57.9
44.2
39.7
35.3
28.9
22.6
16.6
8.5
-2.1
-6.9
-15.8
ACR-F (min.)
dB/100m
65
--
--
--
63
--
--
--
--
47.4
--
39.4
--
--
33.4
31.8
--
27.4
--
--
ACR-F (typ.)
dB/100m
81.5
85.3
88.2
88.4
84.7
82.5
82
79.9
77
74.2
66.2
66.5
63.7
57.7
50.7
55
48.7
39.9
21.5
18
PS ACR-F (min.)
dB/100m
62
--
--
--
60.3
--
--
--
--
44.4
--
36.4
--
--
30.4
28.8
--
24.4
--
--
PS ACR-F (typ.)
dB/100m
78.4
83
85.1
85.7
81.9
81
79.9
78.2
75.5
73
64.9
64.3
62
56.4
50.4
53.5
47.1
37.6
18.9
14
Return losses (min.)
dB
21
--
--
--
20
--
--
--
--
14
--
10
--
--
10
--
--
8
--
--
Return losses
dB
26
28.7
30.1
31.6
33.3
32.9
31.7
36.5
33.5
33.2
27.8
25.7
24.9
23
20.3
19.3
17.7
16.2
14
13
Physical data
Net weight: 57 g
Gross weight: 60 g
Width: 8 mm
Height: 1,000 mm
Depth: 8 mm
Main product weight: 57 g
Packing
Reel 500 m
Pallet 9000 m
More Information
tlv_tags
Category 7A
Data cable category Cat 7A complies with the standard for 10 Gigabit Ethernet and it is backwards compatible, with the standards of the inferior categories (Cat 6A/6/5e and Cat 7). Category 7A evolves over category 7, allowing to achieve transmission frequencies of up to 1000 MHz (in each pair) and 10 Gbps of throughput. It includes characteristics and specifications to avoid crosstalk and noise. This type of data cable can be used in 10BASE-T, 100BASE-T, 1000BASE-T and 10GBASE-T compliant systems.
Our category 7A cables are characterized:
Comply with: EN 50173-1:2011, ISO/IEC 11801-1:2017, IEC 61156-5:2009, EN 50288-4-1:2013, EN 50288-4-2:2013
Transfer rate up to 10Gbps
Frequency range of up to 1500 MHz (higher than the 1000 MHz specified by the standard)
Nominal impedance of 100 ohms
Maximum resistance per conductor below 93,8 ohms/Km
What is the PoE technology?
PoE (Power over Ethernet) technology enables the simultaneous transmission of power and data over the same Ethernet network cable, eliminating the need for separate power supplies.
Currently, there are three main standards: IEEE 802.3af (PoE), IEEE 802.3at (PoE+), and IEEE 802.3bt (PoE++/4PPoE).
The latter defines two additional types (Type 3 and Type 4) whit higher power levels, making four PoE levels in total.
The three aspects that differentiate the different types of PoE are:
Maximum PSE (Powr Sourcing Equipments) Power: Indicates the maximum amount of electrical power that can be supplied by an equipment over the Ethernet cable.
Power for the PD (Powered Device): This is the electrical power that can be received by the device powered by the cable.
Number of Twisted Pairs Used: Refers to how many twisted pairs in the Ethernet cable are used to deliver electrical power.
Standards
PoE Type
Maximum PSE Power
Power for the PD
Nº of Twisted Pairs Used
IEEE 802.3af
Type 1
PoE
15.4W
12.95W
2
IEEE 802.3at
Type 2
PoE+
30W
25.5W
2
IEEE 802.3bt
Type 3
PoE++ 4PPoE
60W
51W
4
Type 4
90-100W
71W
4
Recommended uses according to PoE type:
Type 1: IP phones, basic IP camaras. low-demand Wi-Fi access points, sensors or simple IoT devices.
Type 2: Dual band Wi-Fi access points, IP motion camaras (PTZ), IP video phones, alarm systemns.
Type 3: Wi-Fi 6 / Wi-Fi 6E access points, heated PTZ camaras, multimedia terminals, video conferencing equipment.
Type 4: Monitors or touch screens, desktops, high-performance network equipment.
Devices that support a certain type of PoE can also be powered by a higher type, offering greater versatility and scalability in installations.
Main advantages of PoE technology in installations:
Quick and cost-effective installation by using the same cable for power and data transmission.
Greater installation flexibility as there is no need to rely on auxiliary power sockets.
More efficient management and optimised maintenance thanks to the monitoring and administration of the power supply of all equipment from a single point.
Cost reduction by avoiding electrical conduits and external power supplies.
Increased safety by minimising electrical risks in the installation, thanks to the use of low voltage.
We use our own cookies and those of third parties to analyze the use and metrics of our web. You can change settings, accept or reject the use of cookies by clicking on the next button.