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ZX47-60-S+ PDF预览

ZX47-60-S+

更新时间: 2024-01-11 01:26:11
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Power Detector

ZX47-60-S+ 数据手册

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Coaxial  
ZX47-60+  
Power Detector  
ZX47-60LN+  
50Ω, -60dBm to +5dBm, 10 to 8000 MHz  
Features  
Maximum Ratings  
Operating Temperature  
Storage Temperature  
DC Power:  
• Low Noise (Output Ripple) for ZX47-60LN+,  
20mVp-p Typ. @ 10MHz  
• High Dynamic Range  
-40°C to 85°C  
-55°C to 100°C  
• Wide Bandwidth  
Max. voltage  
5.7V  
120mA  
0.73W  
• Single Supply Voltage: +5V  
• Stability Over Temperature  
• Built-in Temperature Sensor  
• Protected by US patent 6,790,049  
Max. current  
CASE STYLE: HN1173  
Connectors Model  
Internal Power Dissipation  
Input Power  
+15dBm  
SMA  
SMA  
ZX47-60-S+  
ZX47-60LN-S+  
Permanent damage may occur if any of these limits are exceeded.  
Applications  
• RF/IF Power Measurements  
• Low Cost Power Monitoring System  
• RF Leakage Monitors  
Coaxial Connections  
RF IN  
+RoHS Compliant  
1
5
2
4
3
The +Suffix identifies RoHS Compliance. See our web site  
for RoHS Compliance methodologies and qualifications  
DC OUT  
Vcc (+5V)  
• Fast feedback Levelling Circuits  
• RF Power Control  
• Receiver RF/IF Gain Control  
• RSSI measurements  
TEMPERATURE SENSOR  
GROUND  
Electrical Specifications (TAMB= 25°C)  
Outline Drawing  
FREQ.  
(MHz)  
DYNAMIC OUTPUT  
VSWR  
PULSE  
RESPONSE  
TIME  
TEMP.  
SENSOR  
OUTPUT  
SLOPE  
(mV/°C)  
DC  
SLOPE  
(mV/dB)  
(Note 1)  
RANGE AT  
±1dB  
VOLT.  
RANGE  
(V)  
(:1)  
OPERATING  
POWER  
(nSec)  
Typ.  
ERROR  
(dBm)  
Note 3  
Vcc  
(Volts)  
Current  
(mA)  
(Note 2)  
ZX47-60+  
Rise Fall  
ZX47-60LN+  
Rise Fall  
Typ.  
Min. Max.  
10 1000  
Typ.  
Typ.  
Typ.  
Typ.  
1.1  
Min. Typ. Max. Typ.  
-55 to  
0
1000 5000  
5000 6000  
-60 to -5  
-55 to +5  
-50 to +5  
1.8  
1.7  
1.4  
0.50 - 2.10  
-25  
400  
10  
800  
400  
2.00  
4.5 5.0 5.5  
100  
6000 8000  
Notes:  
NOTE: When soldering the DC connections, caution  
must be used to avoid overheating the DC terminals.  
See Application Note AN-40-10 .  
1. The negative slope indicates that Output Voltage decreases as Input Power increases.  
See "Output Voltage vs Input Power" graph below.  
!
2. Temperature sensor output provides a DC Output Voltage which increases linearly with temperature rise.  
Recommended minimum load for this port is 2 kΩ.  
3. Recommended minimum load at DC out port is 100 Ω. See maximum ratings for no damage.  
inch  
Outline Dimensions (  
)
mm  
A
B
C
D
E
F
G
H
J
K
1.20  
.69  
.46 1.12  
.04  
.34  
.46  
.28  
.33  
.21  
30.48 17.53 11.68 28.45 1.02 8.64 11.68 7.11 8.38 5.33  
L
.18  
M
.14  
N
.94  
P
.50  
Q
.35  
R
S
T
.60  
wt.  
grams  
31.8  
.18 .106  
4.57 3.56 23.88 12.70 8.89 4.57 2.69 15.24  
Output Voltage Vs Input Power @ +25°C  
2.2  
8000 MHz  
2.0  
6000 MHz  
5000 MHz  
2000 MHz  
1000 MHz  
10 MHz  
1.8  
1.6  
1.4  
1.2  
1.0  
0.8  
0.6  
0.4  
Simplified Functional Diagram  
TEMPERATURE SENSOR  
OUT  
RF IN  
DC OUT  
Output Load=1000  
-60  
-50  
-40  
-30  
-20  
-10  
0
10  
Vcc  
Input Power (dBm)  
Notes  
A. Performance and quality attributes and conditions not expressly stated in this specification document are intended to be excluded and do not form a part of this specification document.  
REV. D  
M154107  
ZX47-60+  
B. Electrical specifications and performance data contained in this specification document are based on Mini-Circuits applicable established test performance criteria and measurement instructions.  
C. The parts covered by this specification document are subject to Mini-Circuits standard limited warranty and terms and conditions (collectively, Standard Terms”); Purchasers of this part are entitled  
to the rights and benefits contained therein. For a full statement of the Standard Terms and the exclusive rights and remedies thereunder, please visit Mini-Circuits’ website at www.minicircuits.com/MCLStore/terms.jsp  
ZX47-60LN+  
EDR-7797U  
EDR-7797/2RE  
URJ/RAV  
®
Mini-Circuits  
www.minicircuits.com P.O. Box 350166, Brooklyn, NY 11235-0003 (718) 934-4500 sales@minicircuits.com  
151215  
Page 1 of 4  

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