DISCRETE SEMICONDUCTORS
DATA SH EET
ook, halfpage
M3D252
BGD904; BGD904MI
CATV amplifier modules
Product specification
Supersedes data of 1998 Oct 01
1999 Mar 30
Philips Semiconductors Product specification
CATV amplifier modules BGD904; BGD904MI
FEATURES
• Excellent linearity
• Extremely low noise
• Excellent return loss properties
• Silicon nitride passivation
• Rugged construction
• Gold metallization ensures excellent reliability.
APPLICATIONS
• CATV systems operating in the 40 to 900 MHz
frequency range.
DESCRIPTION
Hybrid amplifier modules in a SOT115J package operating
with a voltage supply of 24 V (DC).
Both modules are electrically identical only the pinning is
different.
QUICK REFERENCE DATA
PINNING - SOT115J
DESCRIPTION
PIN
BGD904 BGD904MI
1 input output
2, 3 common common
5+V
B
7, 8 common common
9 output input
handbook, halfpage
Side view
2
789
351
Fig.1 Simplified outline.
+V
MSA319
B
SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT
G
p
power gain f = 50 MHz 19.7 20.3 dB
f = 900 MHz 20.5 21.5 dB
I
tot
total current consumption (DC) VB= 24 V 405 435 mA
LIMITING VALUES
In accordance with the Absolute Maximum Rating System (IEC 134).
SYMBOL PARAMETER MIN. MAX. UNIT
V
B
V
i
T
stg
T
mb
supply voltage − 30 V
RF input voltage − 70 dBmV
storage temperature −40 +100 °C
operating mounting base temperature −20 +100 °C
1999 Mar 30 2
Philips Semiconductors Product specification
CATV amplifier modules BGD904; BGD904MI
CHARACTERISTICS
Bandwidth 40 to 900 MHz; V
SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT
G
p
power gain f = 50 MHz 19.7 20 20.3 dB
SL slope cable equivalent f = 40 to 900 MHz 0.4 0.9 1.4 dB
FL flatness of frequency
response
S
11
S
22
S
21
input return losses f = 40 to 80 MHz 21 25 − dB
output return losses f = 40 to 80 MHz 25 29 − dB
phase response f = 50 MHz −45 − +45 deg
CTB composite triple beat 49 chs flat; V
X
mod
cross modulation 49 chs flat; Vo= 47 dBmV; fm= 55.25 MHz −−66 −63 dB
= 24 V; Tmb=35°C; ZS=ZL=75Ω
B
f = 900 MHz 20.5 21 21.5 dB
f = 40 to 900 MHz −±0.15 ±0.3 dB
f = 80 to 160 MHz 22 30 − dB
f = 160 to 320 MHz 21 29 − dB
f = 320 to 550 MHz 18 24 − dB
f = 550 to 650 MHz 17 22 − dB
f = 650 to 750 MHz 16 21 − dB
f = 750 to 750 MHz 15 21 − dB
f = 80 to 160 MHz 23 28 − dB
f = 160 to 320 MHz 19 25 − dB
f = 320 to 550 MHz 18 24 − dB
f = 550 to 650 MHz 18 24 − dB
f = 650 to 750 MHz 18 24 − dB
f = 750 to 900 MHz 17 23 − dB
= 47 dBmV; fm= 859.25 MHz −−68 −66.5 dB
o
77 chs flat; V
110 chs flat; V
129 chs flat; V
110 chs; f
= 44 dBmV; fm= 547.25 MHz −−69.5 −67.5 dB
o
= 44 dBmV; fm= 745.25 MHz −−63 −61.5 dB
o
= 44 dBmV; fm= 859.25 MHz −−59.5 −57.5 dB
o
= 400 MHz;
m
Vo= 49 dBmV at 550 MHz; note 1
129 chs; f
= 650 MHz;
m
Vo= 49.5 dBmV at 860 MHz; note 2
77 chs flat; V
110 chs flat; V
129 chs flat; V
110 chs; f
= 44 dBmV; fm= 55.25 MHz −−68.5 −66 dB
o
= 44 dBmV; fm= 55.25 MHz −−65.5 −62.5 dB
o
= 44 dBmV; fm= 55.25 MHz −−64 −61 dB
o
= 400 MHz;
m
Vo= 49 dBmV at 550 MHz; note 1
129 chs; f
= 860 MHz;
m
Vo= 49.5 dBmV at 860 MHz; note 2
−−63.5 −61.5 dB
−−58.5 −56 dB
−−61.5 −59 dB
−−60 −57 dB
1999 Mar 30 3
Philips Semiconductors Product specification
CATV amplifier modules BGD904; BGD904MI
SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT
CSO composite second
order distortion
d
2
V
o
second order distortion note 3 −−82 −75 dB
output voltage dim= −60 dB; note 6 64 65.5 − dBmV
F noise figure f = 50 MHz − 45dB
I
tot
total current
consumption (DC)
49 chs flat; Vo= 47 dBmV;m= 860.5 MHz −−68 −62 dB
77 chs flat; V
110 chs flat; V
129 chs flat; V
110 chs; f
= 44 dBmV; fm= 548.5 MHz −−72 −67 dB
o
= 44 dBmV; fm= 746.5 MHz −−68 −62 dB
o
= 44 dBmV; fm= 860.5 MHz −−64 −58 dB
o
= 250 MHz;
m
−−67 −62 dB
Vo= 49 dBmV at 550 MHz; note 1
129 chs; f
= 250 MHz;
m
−−62 −58 dB
Vo= 49.5 dBmV at 860 MHz; note 2
note 4 −−82 −76 dB
note 5 −−83 −77 dB
d
= −60 dB; note 7 65 67 − dBmV
im
d
= −60 dB; note 8 67 69 − dBmV
im
CTB compression = 1 dB; 129 chs flat;
48.5 49 − dBmV
f = 859.25 MHz
CSO compression = 1 dB; 129 chs flat;
50 52 − dBmV
f = 860.5 MHz
f = 550 MHz − 4.5 5.5 dB
f = 750 MHz − 5.1 6.5 dB
f = 900 MHz − 6.2 7.5 dB
note 9 405 420 435 mA
Notes
1. Tilt = 9 dB (50 to 550 MHz); tilt = 3.5 dB at −6 dB offset (550 to 750 MHz).
2. Tilt = 12.5 dB (50 to 860 MHz).
3. fp= 55.25 MHz; Vp= 44 dBmV; fq= 805.25 MHz; Vq= 44 dBmV; measured at fp+fq= 860.5 MHz.
4. fp= 55.25 MHz; Vp= 44 dBmV; fq= 691.25 MHz; Vq= 44 dBmV; measured at fp+fq= 746.5 MHz.
5. fp= 55.25 MHz; Vp= 44 dBmV; fq= 493.25 MHz; Vq= 44 dBmV; measured at fp+fq= 548.5 MHz.
6. Measured according to DIN45004B:
fp= 851.25 MHz; Vp=Vo; fq= 858.25 MHz; Vq=Vo−6 dB;
fr= 860.25 MHz; Vr=Vo−6 dB; measured at fp+fq−fr= 849.25 MHz.
7. Measured according to DIN45004B:
fp= 740.25 MHz; Vp=Vo; fq= 747.25 MHz; Vq=Vo−6 dB; fr= 749.25 MHz; Vr=Vo−6 dB;
measured at fp+fq−fr= 738.25 MHz.
8. Measured according to DIN45004B:
fp= 540.25 MHz; Vp=Vo; fq= 547.25 MHz; Vq=Vo−6 dB; fr= 549.25 MHz; Vr=Vo−6 dB;
measured at fp+fq−fr= 538.25 MHz.
9. The module normally operates at VB= 24 V, but is able to withstand supply transients up to 35 V.
1999 Mar 30 4