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Kategorie: Routery a switche
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Ubiquiti UniFi Switch Pro Max 48; UniFi Switch (USW-Pro-Max-48) je ideální pro malé a střední firmy, které požadují spolehlivý L3 switch s managementem v profesionálním provedení určený pro montáž do racku 1...
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Mercusys MB130-4G
AC1200 bezdrátový 4G LTE router
4G síť – Sdílejte přístup k internetu s až 32 Wi-Fi zařízeními a využívejte rychlosti stahování až 150 Mb/s.
Vložte SIM kartu a vše je připraveno – Není třeba cokoli nastavovat. Kompatibilita se SIM kartami je zajištěna díky mnohaletému testování v terénu.
Dual band 1200 Mbpss – Wi-Fi svištící rychlostí až 300 Mb/s na pásmu 2,4 GHz a 867 Mbps na pásmu 5 GHz
Připojení externí antény – možnost zapojení 4G/3G antény pro vylepšení signálu.
Režim Wi-Fi routeru – Zapojte ethernetový kabel do portu LAN/WAN a získejte flexibilní přístup k záložní variantě připojení, když se vám nepodaří připojit k síti 4G.
Stránky produktu: https://www.mercusys.com/cz/product/details/mb130-4g
Technické specifikace
Wireless
Wireless Standards
IEEE 802.11ac/a/b/g/n
Frequency
5 GHz, 2.4 GHz
WiFi Speeds
867 Mbps at 5 GHz
300 Mbps at 2.4 GHz
Reception Sensitivity
11g 6Mbps: -95dBm
11g 54Mbps: -77dBm
11n HT20 MCS7: -74dBm
11n HT40 MCS7: -71dBm
11a 6Mbps: -92dBm
11a 54Mbps: -75dBm
11ac VHT20 MCS8: -70dBm
11ac VHT40 MCS9: -65dBm
11ac VHT80 MCS9: -61dBm
Transmission Power
5 GHz
2.4 GHz
Wireless Security
WPA-PSK / WPA2-PSK
Wireless Functions
Enable/Disable Wireless Radio, Wireless Schedule, WMM, Wireless Statistics
Software
DHCP
Server
Hardware
Dimensions (W X D X H)
95×61.05×165.97 mm
Interfaces
1× 10/100Mbps LAN/WAN Port
1× 10/100Mbps LAN Port
2× 4G/3G External Antenna Ports
1× Nano SIM Card Slot
Button
WPS/Reset Button
Ethernet Ports
1× 10/100 Mbps LAN/WAN Port +
1× 10/100 Mbps LAN
Network Type
EU:
FDD-LTE: B1/B3/B5/B7/B8/B20/B28 (2100/1800/850/2600/900/800/700 MHz)
TDD-LTE: B38/B40 (2600/2300 MHz)
HSPA+/UMTS: B1/B5/B8 (2100/850/900 MHz)
Others
Package Contents
AC1200 Wireless Dual Band 4G LTE Router (MB130-4G)
Power Adapter
RJ45 Ethernet Cable
Quick Installation Guide
Environment
Operating Temperature: 0°C~40°C (32°F~104°F)
Storage Temperature: -40°C~60°C (-40°F~140°F)
Operating Humidity: 10%~90% Non-Condensing
Storage Humidity: 5%~90% Non-Condensing
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Omlouváme se, průběžně pracujeme na lepším popisu
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Externí router SIM 5G s datovou rychlostí až 2,7 Gb/s, LTE kat. 19, 1x WAN / LAN 2,5 Gb/s PoE, zisk antény 6,5 dBi+ se sadou pro montáž na sklo, vodotěsný kabel, 3m RJ kabel, pro montáž externího routeru MC889 5G. Externí router ZTE MC889 5G je založen na platformě Snapdragon X62 5G nové generace,
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PLANET VIP-1260PT; VoIP SIP telefon pro manažery nebo operátory, barevný 2,8" LCD displej, podpora HD audio kodeku G.722, 6 SIP účtů. Zpracování hlasu: AEC, VAD, CNG, BNE, NR, PLC, 3cestná konference. Stolní provedení, napájení 5 V, nebo PoE 802.3af. ...
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Cisco Catalyst switch C1300-24XTS
Cisco Catalyst řady 1300 jsou managovatelné switche Gigabit Ethernet Layer 3 podnikové třídy určené pro malé a střední podniky a pobočky. Tyto jednoduché, flexibilní a bezpečné switche jsou ideální pro nasazení mimo rozvodnou skříň. Řada Catalyst 1300 pracuje na přizpůsobeném softwaru operačního systému Linux s intuitivním grafickým rozhraním, který zjednodušuje nastavení sítě a pokročilými funkcemi, které urychlují digitální transformaci, zatímco všudypřítomné zabezpečení chrání kritické obchodní transakce. Přepínače řady 1300 poskytují ideální kombinaci cenové dostupnosti a možností pro malé a střední podniky a pomáhají vám vytvořit efektivnější a lépe propojenou pracovní sílu.
Stránky produktu: C1300-24XTS
Performance Switching capacity and forwarding rate (All switches are wire-speed and nonblocking)
Capacity in millions of packets per second (mpps) (64-byte packets) 357.12
Switching capacity in gigabits per second (Gbps) 480
Layer 2 switching Spanning Tree Protocol (STP) Standard 802.1d spanning tree support
Fast convergence using 802.1w (Rapid Spanning Tree Protocol [RSTP]), enabled by default
Multiple spanning tree instances using 802.1s (MSTP); 8 instances are supported
Per-VLAN Spanning Tree Plus (PVST+); 126 instances are supported
Rapid PVST+ (RPVST+); 126 instances are supported
Port grouping/link aggregation Support for IEEE 802.3ad Link Aggregation Control Protocol (LACP)
Up to 8 groups
Up to 8 ports per group with 16 candidate ports for each (dynamic) 802.3ad link aggregation
VLAN Support for up to 4093 VLANs simultaneously
Port-based and 802.1Q tag-based VLANs, MAC-based VLAN, protocol-based VLAN, IP subnet-based VLAN
Management VLAN
Private VLAN with promiscuous, isolated, and community port
Private VLAN Edge (PVE), also known as protected ports, with multiple uplinks Guest VLAN, unauthenticated VLAN
Dynamic VLAN assignment via RADIUS server along with 802.1X client authentication Customer premises equipment (CPE) VLAN
Auto surveillance VLAN (ASV)
Voice VLAN Voice traffic is automatically assigned to a voice-specific VLAN and treated with appropriate levels of QoS. Voice Services Discovery Protocol (VSDP) delivers networkwide zero-touch deployment of voice endpoints and call control devices
Multicast TV VLAN Multicast TV VLAN allows the single multicast VLAN to be shared in the network while subscribers remain in separate VLANs. This feature is also known as Multicast VLAN Registration (MVR)
VLAN translation Support for VLAN one-to-one mapping, in which customer VLANs (C-VLANs) on an edge interface are mapped to service provider VLANs (S-VLANs), and the original C-VLAN tags are replaced by the specified S-VLAN
Q-in-Q VLANs transparently cross a service provider network while isolating traffic among customers
Selective Q-in-Q Selective Q-in-Q is an enhancement to the basic Q-in-Q feature and provides, per edge interface, multiple mappings of different C-VLANs to separate S-VLANs
Selective Q-in-Q also allows configuring of the Ethertype (Tag Protocol Identifier [TPID]) of the S-VLAN tag
Layer 2 protocol tunneling over Q-in-Q is also supported
Generic VLAN Registration Protocol (GVRP)/Generic Attribute Registration Protocol (GARP) GVRP and GARP enable automatic propagation and configuration of VLANs in a bridged domain
Unidirectional Link UDLD monitors physical connections to detect unidirectional links caused by incorrect
Detection (UDLD) wiring or cable/port faults to prevent forwarding loops and blackholing of traffic in switched networks
DHCP relay at Layer 2 Relay of DHCP traffic to a DHCP server in a different VLAN; works with DHCP Option 82
Internet Group Management Protocol (IGMP) versions 1, 2, and 3 snooping IGMP limits bandwidth-intensive multicast traffic to only the requesters; it supports 2000 multicast groups (source-specific multicasting is also supported)
IGMP querier IGMP querier is used to support a Layer 2 multicast domain of snooping switches in the absence of a multicast router
IGMP proxy The IGMP proxy provides a mechanism for multicast forwarding based on IGMP membership information without the need for more complicated multicast routing protocols
Head-of-Line (HOL) blocking HOL blocking prevention
Loopback detection Loopback detection provides protection against loops by transmitting loop protocol packets out of ports on which loop protection has been enabled. It operates independently of STP
Layer 3 IPv4 routing Wire-speed routing of IPv4 packets
Up to 990 static routes and up to 128 IP interfaces
IPv6 routing Wire-speed routing of IPv6 packets
Layer 3 interface Configuration of a Layer 3 interface on a physical port, LAG, VLAN interface, or loopback interface
Classless Interdomain Routing (CIDR) Support for CIDR
Routing Information Protocol (RIP) v2 Support for RIP v2 for dynamic routing
Policy-Based Routing (PBR) Flexible routing control to direct packets to a different next hop based on an IPv4 or IPv6 Access Control List (ACL)
DHCP server Switch functions as an IPv4 DHCP server, serving IP addresses for multiple DHCP pools or scopes
Support for DHCP options
DHCP relay at Layer 3 Relay of DHCP traffic across IP domains
User Datagram Protocol (UDP) relay Relay of broadcast information across Layer 3 domains for application discovery or relaying of Bootstrap Protocol (BOOTP)/DHCP packets
Stacking Hardware stacking Up to 8 switches in a stack. Up to 200 ports managed as a single system with hardware failover
Stacking is supported on the following models:
Family 1: C1300-16P-4X, C1300-24T-4X, C1300-24P-4X, C1300-24FP-4X, C1300-48T-4X, C1300-48P-4X, C1300-48FP-4X, C1300-8MGP-2X, C1300-24MGP-4X, C1300-48MGP-4X
Family 2: C1300-12XT-2X, C1300-12XS, C1300-16XTS, C1300-24XS, C1300-24XT, C1300-24XTS
PIDs from the same Family can be stacked together. Cross-stacking between Families is not supported.
High availability Fast stack failover delivers minimal traffic loss. Support for LAG across multiple units in a stack
Plug-and-play stacking configuration/management Active/standby for resilient stack control Auto-numbering
Hot swap of units in stack
Ring and chain stacking options, auto stacking port speed, flexible stacking port options
High-speed stack interconnects Cost-effective high-speed 10 Gigabit Ethernet fiber interfaces
Security Secure Shell (SSH) Protocol SSH is a secure replacement for Telnet traffic. Secure Copy Protocol (SCP) also uses SSH. SSH v1 and v2 are supported
Secure Sockets Layer (SSL) SSL support: Encrypts all HTTPS traffic, allowing highly secure access to the browser-based management GUI in the switch
IEEE 802.1X (authenticator role) 802.1X: RADIUS authentication and accounting, MD5 hash, guest VLAN, unauthenticated VLAN, single/multiple host mode, and single/multiple sessions
Supports time-based 802.1X, dynamic VLAN assignment, and MAC authentication
IEEE 802.1X supplicant A switch can be configured to act as a supplicant to another switch. This enables extended secure access in areas outside the wiring closet (such as conference rooms)
Web-based authentication Web-based authentication provides network admission control through a web browser to any host devices and operating systems
STP Bridge Protocol Data Unit (BPDU) Guard A security mechanism to protect the network from invalid configurations. A port enabled for BPDU Guard is shut down if a BPDU message is received on that port. This avoids accidental topology loops
STP Root Guard Prevents edge devices not in the network administrator’s control from becoming STP root nodes
STP loopback guard Provides additional protection against Layer 2 forwarding loops (STP loops)
DHCP