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R1005300L 반도체 회로 부품 판매점

Si Reverse



PDI 로고
PDI
R1005300L 데이터시트, 핀배열, 회로
www.DataSheet4U.com
Product Specification
R1005300L
Si Reverse, low current, 5 – 100MHz, 30.8dB typ. Gain @ 100MHz, 140mA max. @ 24VDC
FEATURES
Excellent linearity
Superior return loss performance
Extremely low distortion
Optimal reliability
Low noise
Unconditionally stable under all terminations
APPLICATION
5 to 100 MHz CATV amplifier
for reverse channel systems
DESCRIPTION
Hybrid reverse amplifier employing silicon dice
LIMITING VALUES
In accordance with the Absolute Maximum Rating System (IEC 60134)
SYMBOL
Vi
Vov
Tstg
Tmb
PARAMETER
RF input voltage (single tone)
DC supply over-voltage (5 minutes)
storage temperature
operating mounting base temperature
R1005300L
Si Reverse Hybrid , low current
5 – 100 MHz
30.8 dB typ. Gain @ 100 MHz
140 mA max. @ 24 VDC
MIN.
-
-
- 40
- 30
MAX.
65
30
+ 100
+ 100
UNIT
dBmV
V
°C
°C
CHARACTERISTICS
Table 1: S-Parameter, Noise Figure, DC Current; VB = 24V; Tmb = 30°C; ZS = ZL = 75
SYMBOL PARAMETER
Gp power gain
SL slope 1)
FL flatness of frequency
response
S11 input return loss
S22 output return loss
F noise figure
Itot total current
consumption (DC)
CONDITIONS
f = 5 MHz
f = 100 MHz
f = 5 to 100 MHz
f = 5 to 100 MHz
MIN.
30.0
29.8
-0.2
-
TYP.
30.5
30.8
0.3
MAX.
30.8
-
0.5
± 0.3
UNIT
dB
dB
dB
dB
f = 5 to 100 MHz
f = 5 to 100 MHz
f = 100 MHz
20.0
20.0
-
130.0
2.3
133.0
-
-
3.0
140.0
dB
dB
dB
mA
Notes:
1) The slope is defined as the difference between the gain at the start frequency and the gain at the stop frequency.
Page 1 of 4
2004 Nov 01
Document Revision Level A


R1005300L 데이터시트, 핀배열, 회로
Product Specification
R1005300L
Si Reverse, low current, 5 – 100MHz, 30.8dB typ. Gain @ 100MHz, 140mA max. @ 24VDC
CHARACTERISTICS
Table 2: Distortion data 5 – 100 MHz; VB = 24V; Tmb = 30°C; ZS = ZL = 75
SYMBOL PARAMETER
CTB
composite triple beat
XMOD
cross modulation
CSO
d2
STB
composite second order
distortion
second order distortion
third order distortion
CONDITION
7 ch. flat; Vo = 50 dBmV1)
12 ch. flat; Vo = 50 dBmV2)
7 ch. flat; Vo = 50 dBmV1)
12 ch. flat; Vo = 50 dBmV2)
7 ch. flat; Vo = 50 dBmV1)
12 ch. flat; Vo = 50 dBmV2)
3)
4)
MIN.
-
-
-
-
-
-
TYP.
MAX.
- 64
- 61
- 55
- 51
- 68
- 68
- 70
- 66
Notes:
1) 7 channels, US frequency raster: T7 – T13 (7.0 to 43.0 MHz), +50 dBmV flat output level.
2) 12 channels, US frequency raster: T7 – T13 (7.0 to 43.0 MHz), 2 – 6 (55.25 to 83.25 MHz),
+50 dBmV flat output level.
3) f1 = 7 MHz; V1 = 50 dBmV; f2 = 25 MHz; V2 = 50 dBmV; fTEST = f1 + f2 = 32 MHz.
4) f1 = 13 MHz; V1 = 50 dBmV; f2 = 25 MHz; V2 = V1; f3 = 7 MHz; V3 = V1;
fTEST = f1 + f2 - f3 = 31 MHz.
UNIT
dBc
dBc
dB
dB
dBc
dBc
dBc
dBc
Composite Second Order (CSO)
The CSO parameter (both sum and difference products) is defined by the NCTA.
Composite Triple Beat (CTB)
The CTB parameter is defined by the NCTA.
Cross Modulation (XMOD)
Cross modulation (XMOD) is measured at baseband (selective voltmeter method), referenced to 100% modulation of the
carrier being tested.
Page 2 of 4
2004 Nov 01
Document Revision Level A




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