CONREVSMA005-R58 Linx Technologies Inc, CONREVSMA005-R58 Datasheet - Page 12

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CONREVSMA005-R58

Manufacturer Part Number
CONREVSMA005-R58
Description
CONN RPSMA FML BLKHD REAR RG58
Manufacturer
Linx Technologies Inc
Series
RP-SMAr
Datasheets

Specifications of CONREVSMA005-R58

Connector Style
RP-SMA
Connector Type
Jack, Male Pins
Contact Termination
Crimp and Solder
Impedance
50 Ohm
Mounting Type
Panel Mount, Bulkhead - Front Side Nut
Fastening Type
Threaded
Cable Group
RG-58, 58A, 141
Frequency - Max
12.4GHz
Frequency-max
12.4GHz
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Features
-
Color
-
DESCRIPTION
Housed in a tiny SMD package, the ES Series
offers an impressive combination of features,
performance and cost-effectiveness. The ES
utilizes an advanced synthesized FM / FSK
architecture to provide superior performance
and noise immunity when compared to AM /
OOK
maximum data rate and wide-range analog
capability make the ES Series equally at home
with digital data or analog sources such as
audio. A host of useful features including RSSI,
PDN, and an audio reference are provided. ES
Series components will be available in a wide
range of frequencies to take full advantage of
worldwide applications. The ES Series requires no tuning or external RF components
(except an antenna).
FEATURES
APPLICATIONS INCLUDE
Page 20
Telemetry
Ultra-compact SMD package
FM / FSK modulation for
High noise immunity
Precision synthesized
Excellent sensitivity
Low current consumption
Wireless Data Transfer
Wireless Analog / Audio
Home / Industrial Automation
Keyless Entry
Remote Control
Fire / Security Alarms
Remote Status Sensing
RS-232 / 485 Data Links
MIDI Links
Long-Range RFID
outstanding performance
architecture
WIRELESS MADE SIMPLE
solutions.
An
®
ES SERIES
RECEIVER MODULE
outstanding
56kbps
PART #
TXM-916-ES
RXM-916-ES
TXM-869-ES
RXM-869-ES
EVAL-***-ES
MDEV-***-ES
*** = Frequency
ES receivers are supplied in tubes of 25 pcs.
ORDERING INFORMATION
High 56,000bps data rate
Direct interface to analog and
Wide-range analog capability
No tuning or external RF
RSSI and power-down lines
digital sources
components required
0.125"
0.630"
PHYSICAL DIMENSIONS
DESCRIPTION
Transmitter 916MHz
Receiver 916MHz
Transmitter 869MHz
Receiver 869MHz
Basic Evaluation Kit
Master Development Kit
RF MODULE
RXM-916-ES
LOT 10000
0.812"
Notes
1. Into a 50-ohm load.
2. For a 10
3. The audio bandwidth is wide to accommodate the needs of the data slicer. In audio applications, audio
4. Characterized, but not tested.
5. Input frequency deviation-dependent.
6. Time to receiver readiness from the application of power to V
7. Maximum time without a data transition.
ABSOLUTE MAXIMUM RATINGS
ELECTRICAL SPECIFICATIONS
Parameter
POWER SUPPLY
Operating Voltage
Supply Current
Power-Down Current
RECEIVER SECTION
Receive Frequency:
Center Frequency Accuracy
IF Frequency
Spurious Emissions
Receiver Sensitivity
Noise Bandwidth
Audio Bandwidth
Audio Output Level
Data Rate
Data Output:
RSSI:
ANTENNA PORT
RF Input Impedance
TIMING
Receiver Turn-On Time:
Max Time Between Transitions
ENVIRONMENTAL
Operating Temperature Range
RXM-869-ES
RXM-916-ES
Logic Low
Logic High
Dynamic Range
Gain
Voltage with No Carrier
Voltage with Max Carrier
Via V
Via PDN
quality may be improved by using a low-pass filter rolling off at the maximum frequency of interest.
CC
-5
Supply Voltage V
Any Input or Output Pin
RF Input
Operating Temperature
Storage Temperature
Soldering Temperature
*NOTE*
damage to the device. Furthermore, extended operation at these maximum
ratings may reduce the life of this device.
BER at 9,600bps.
Exceeding any of the limits of this section may lead to permanent
CC
Designation
N
V
V
I
V
R
I
F
F
PDN
CC
CC
3dB
OH
IF
OL
C
IN
V
CC
Min.
200
200
-50
-92
4.5
5.5
3.8
0
- 1.1
-0.3
-0.3
-40
0
+225°C for 10 seconds
CC
Typical
869.85
916.48
V
50.0
10.7
280
360
-75
-97
CC
or PDN going high.
5.0
6.0
0.0
1.1
2.9
4.7
5.0
60
30
50
- 1
+10
to
to
to
to V
V
28,000
56,000
CC
CC
Max.
-102
+50
+70
5.5
6.5
-50
0.1
5.4
+125
+5.5
+ 0.3
- 0.9
+70
mV/dB
mSec
mSec
mSec
Units
mV
VDC
MHz
MHz
MHz
dBm
dBm
VDC
VDC
kHz
kHz
bps
mA
VDC
VDC
µA
Hz
dB
°C
dBm
V
V
Ω
P-P
°C
°C
Page 21
Notes
3,4
4,5
4,6
4,6
4,7
4
1
2
4
4
4
4
4
4
4

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