参数资料
型号: HPMX-2003T10
厂商: AGILENT TECHNOLOGIES INC
元件分类: 调制器/解调器
英文描述: 800 MHz - 1000 MHz RF/MICROWAVE VECTOR MODULATOR
文件页数: 9/16页
文件大小: 188K
代理商: HPMX-2003T10
2
HPMX-2003 Guaranteed Electrical Specifications, T
A = 25°C, ZO = 50
VCC = 5 V, LO= -12 dBm at 900 MHz (Unbalanced Input), VIref = VQref = 2.5 V (Unless Otherwise Noted).
Symbol
Parameters and Test Conditions
Units
Min.
Typ.
Max.
Id
Device Current
mA
36
44
Pout
Output Power
VImod = VQmod = 3.75 V
dBm
+4.0
+6
LOleak
Pout - LO at Output
VImod = VQmod = 2.5 V
dBc
+30
+37
ε
mod
Average
%
4
7
Modulation
Error
Thermal Resistance[2]:
θ
jc =125°C/W
Notes:
1. Operation of this device above any one
of these parameters may cause
permanent damage.
2. TC = 25°C (TC is defined to be the
temperature at the end of pin 3 where it
contacts the circuit board).
3. Derate at 8 mW/
°C for T
C > 88°C.
4. Do not exceed VCC by more than 0.8 V.
HPMX-2003 Absolute Maximum Ratings, T
A = 25°C
Absolute
Symbol
Parameter
Units
Maximum[1]
Pdiss
Power Dissipation[2,3]
mW
500
LOin
LO Input Power
dBm
15
VCC
Supply Voltage
V
10
V
Imod,
Swing of VImod about VIref[4]
Vp-p
5[4]
V
Qmod
or VQmod about VQref
VIref, VQref
Reference Input Levels[4]
V5[4]
TSTG
Storage Temperature
°C
-65 to +150
Tj
Junction Temperature
°C
150
HPMX-2003 Summary Characterization Information, T
A = 25°C, ZO = 50
VCC = 5 V, LO = -12 dBm at 900 MHz (Unbalanced Input), VIref = VQref = 2.5 V (Unless Otherwise Noted).
Symbol
Parameters and Test Conditions
Units
Typ.
Rin
Input Resistance (Imod to Iref or Qmod to Qref)
10 k
Rin-gnd
Input Resistance to Ground (Any I, Q Pin to Ground)
10 k
VSWRLO
LO VSWR (50
)
GSM: 890-915 MHz Bandwidth
1.5:1
NADC: 824-850 MHz Bandwidth
1.5:1
JDC: 940-960 MHz Bandwidth
1.5:1
VSWRO
Output VSWR (50
) (Tuned by
GSM: 890-915 MHz Bandwidth
1.2:1
Placement of VccL Capacitor –
NADC: 824-850 MHz Bandwidth
1.1:1
See Figures 22, 32, and 42)
JDC: 940-960 MHz Bandwidth
1.2:1
Output Noise Floor
VImod = VQmod = 3.75 V
dBm/Hz
-134
IM3
DSB Third Order Intermodulation Products
dBc
+34
Ai
RMS Amplitude Error
dB
0.3
Pi
RMS Phase Error
degrees
2
√ (V
Imod - 2.5)
2 + (V
Qmod - 2.5)
2
= 1.25 V
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