GLOBAL RESEARCH ARCHIVE
Anritsu (6754): Double-upgrade to Buy, lift PO to ¥5,500: transceivers, CPO, 6G to drive M-T growth
Research evidence excerpt
Anritsu (6754): Double-upgrade to Buy, lift PO to ¥5,500: transceivers, CPO, 6G to drive M-T growth
CPO as additional growth driver
While optical transceivers remain essential for current data center communications, they
face challenges like rising power consumption and latency. We expect demand for test
solutions supporting CPO, which addresses these issues, to begin ramping from FY3/28.
Why CPO matters: improving power efficiency and latency
CPO integrates optical components such as lasers and photodetectors with
semiconductors (ASICs, GPUs) within a single package.
In conventional architectures, data transmission follows the path: semiconductor chips
→ electrical (copper) interconnects → optical modules → optical fibers. However,
electrical interconnects face two key issues: (1) higher current leads to increased heat
generation and power consumption, and (2) long-distance wiring results in greater
latency and signal degradation.
CPO resolves these challenges by shortening the path to: semiconductor + optical
components → optical fiber. This approach (1) significantly reduces electrical
interconnect length between chips and optical components; and (2) assigns long-
distance transmission to optical fiber. As a result, it enables lower power consumption,
reduced latency, and improved signal integrity.
Exhibit 11: Using CPO enables lower power consumption, reduced latency, and improved signal
quality through shorter electrical interconnects and expanded use of optical fiber
Communication systems using optical transceivers (top) vs. CPO-based systems (bottom)
Source: Broadcom, BofA Global Research
BofA GLOBAL RESEARCH
CPO-related test solutions: currently leveraging existing optical digital platforms
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