PREP COMPLETE 200-QUESTION PRACTICE TEST WITH VERIFIED
ANSWERS & DETAILED RATIONALES COVERING DOCSIS STANDARDS,
HFC NETWORKS, FIBER OPTIC DISTRIBUTION, RF ENGINEERING,
SIGNAL INTEGRITY, NETWORK PERFORMANCE, INSTALLATION,
TROUBLESHOOTING, AND BROADBAND MAINTENANCE
Question 1: What is the characteristic impedance of coaxial cable used
in broadband distribution systems?
A. 50 Ω
B. 75 Ω
C. 100 Ω
D. 300 Ω
CORRECT ANSWER: B. 75 Ω
Rationale: Broadband (CATV) systems use 75 Ω coaxial cable because it
provides the best balance between low signal loss and high power
handling capability. 50 Ω is used for radio transmitters and test
equipment, while 300 Ω is used for twin-lead antenna wire.
Question 2: Which of the following is the standard unit of measure for
RF signal level in a broadband distribution system?
A. Volts
B. Watts
,C. dBm
D. dBmV
CORRECT ANSWER: D. dBmV
Rationale: RF signal levels in cable systems are typically expressed in
dBmV (decibels relative to 1 millivolt across 75 Ω). This unit is standard
because it provides a practical scale for the signal levels encountered in
broadband networks.
Question 3: What is the wavelength of a 750 MHz signal in free space?
A. 0.1 m
B. 0.2 m
C. 0.4 m
D. 0.8 m
CORRECT ANSWER: C. 0.4 m
Rationale: Wavelength (λ) = speed of light (c) / frequency (f). c = 3 × 10⁸
m/s. For 750 MHz: λ = 3ee6 = 0.4 m (40 cm). In cable, the
wavelength is shorter due to the velocity of propagation (Vp).
Question 4: What is the primary function of a broadband distribution
network?
A. To monitor server uptime
B. To configure routers only
C. To provide high-speed internet and multimedia services to end users
D. To replace mobile networks
,CORRECT ANSWER: C. To provide high-speed internet and multimedia
services to end users
Rationale: Broadband distribution networks deliver high-speed data,
voice, and video services to multiple end users, forming the backbone
of modern telecommunications infrastructure.
Question 5: Which fiber type is most commonly used for the
distribution portions of an HFC network?
A. Multi-mode fiber (MMF)
B. Single-mode fiber (SMF)
C. Plastic Optical Fiber (POF)
D. Step-index multi-mode fiber
CORRECT ANSWER: B. Single-mode fiber (SMF)
Rationale: Single-mode fiber (SMF), with its small core (typically 9 µm),
is the standard for all modern telecommunications networks. It
supports high bandwidth and long transmission distances, making it
ideal for both trunk and distribution legs from the headend to the fiber
node. Multi-mode fiber is generally limited to shorter distances within
buildings or data centers.
Question 6: What is the velocity of propagation (Vp) for typical coaxial
cable used in HFC networks?
A. 50% of the speed of light
B. 66% to 87% of the speed of light
C. 100% of the speed of light
D. 110% of the speed of light
, CORRECT ANSWER: B. 66% to 87% of the speed of light
Rationale: Vp ranges from 66% to 87% depending on the dielectric
material (foam polyethylene, solid polyethylene, etc.). It is used to
calculate electrical length from physical length.
Question 7: What is the decibel (dB) relationship between two power
levels where P2 is 10 times P1?
A. 1 dB
B. 3 dB
C. 10 dB
D. 20 dB
CORRECT ANSWER: C. 10 dB
Rationale: dB = 10 × log10(P2/P1). If P2/P1 = 10, then dB = 10 ×
log10(10) = 10 × 1 = 10 dB. For voltage ratios (dBmV), the formula uses
20 × log10(V2/V1).
Question 8: What is the signal loss in dB if a 20 dBmV signal drops to 10
dBmV?
A. 3 dB
B. 6 dB
C. 10 dB
D. 20 dB
CORRECT ANSWER: C. 10 dB
Rationale: Loss = 20 dBmV − 10 dBmV = 10 dB. The loss is simply the
difference in dBmV values.