The all outdoor microwave product design is compact, eliminating the need for dedicated equipment rooms or additional land acquisition. It boasts rapid deployment and strong environmental adaptability. There are three types of all outdoor microwave products: the normal band products NR8961 OBU2, the E-band products ER2020E and ER2020H, and the multi-band products NR9961 MBU that integrate normal band and E-band.
1. Normal Band NR8961

NR8961 system is an IP-based all outdoor microwave radio, which widely used for 4G LTE and 5G IP back-haul network. NR8961 system consists of an Outdoor Base-band Unit and an Outdoor RF Unit (ODU), of which, Outdoor Base-band Unit provides two models - OBU2 and EBU, applied for mobile backhual and enterprise connection scenarios.
NR8961 operates on 5-42 GHz frequency band, with 7/14/28/40/56/112 MHz (ETSI) channel spacing. 12 levels of coding & modulation (from QPSK to 16K QAM) with ACM functionality provides high throughput and good availability.
Highlights
2. E-band ER2020 series

ZXMW ER2020E/ER2020H are designed based on ZTE's latest digital E-band transmission platform, support built-in Wi-Fi module, MPLS, IP routing, Segment Routing and SDN.
They work on (71-76) / (81-86)GHz frequency band, with 62.5/125/250/500/750/1000/1500/2000 MHz (ETSI) channel spacing. 10 levels of coding & modulation (from 1/4 BW BPSK to 1024QAM) with ACM & AMB functionality provides high throughput and good availability.
Highlights:
3. Multi-band NR9961

NR9961 is the industry's first multi-band integrated model. It consists of a Multi-Band Unit (MBU) and an Outdoor Radio Unit (ODU), designed to meet the ultra-high capacity transmission requirements for 5G back haul and mid-haul. The MBU integrates 4 normal-band channels and 1 E-band channel.
NR9961 operates on the 5-42 GHz and 80 GHz frequency bands. For the normal band, the channel spacing supports 714/28/40/56/112/224 MHz with coding & modulation from QPSK to 8192 QAM. For the E-band, the channel spacing supports 62.5/125/250/500/750/1000 MHz with coding & modulation from BPSK to 1024 QAM.
Highlights