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HFBR-5208AM Просмотр технического описания (PDF) - HP => Agilent Technologies

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HFBR-5208AM Datasheet PDF : 21 Pages
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Absolute Maximum Ratings
Stresses in excess of the absolute maximum ratings can cause catastrophic damage to the device. Limits apply to each
parameter in isolation, all other parameters having values within the recommended operating conditions. It should not be
assumed that limiting values of more than one parameter can be applied to the product at the same time. Exposure to the absolute
maximum ratings for extended periods can adversely affect device reliability.
Parameter
Storage Temperature
Lead Soldering Temperature - HFBR-5208M
Lead Soldering Temperature - HFCT-5208M
Lead Soldering Time
Supply Voltage
Data Input Voltage
Transmitter Differential Input Voltage
Output Current
Relative Humidity
Symbol
TS
TSOLD
TSOLD
tSOLD
VCC
VI
VD
ID
RH
Minimum
-40
-0.5
-0.5
0
Typical
Maximum Unit
+85
°C
+260
°C
+260
°C
10
sec.
6.0
V
VCC
V
1.6
V
50
mA
95
%
Notes
1
Recommended Operating Conditions
Parameter
Symbol Minimum Typical Maximum Unit Notes
Ambient Operating Temperature
TA
0
HFBR-5208xM, HFCT-5208xM
Ambient Operating Temperature
TA
-40
HFBR-5208AxM , HFCT-5208AxM
Supply Voltage
VCC
4.75
Power Supply Rejection
PSR
100
+70
°C
2
+85
°C
2
5.25
V
mV p-p 3
Transmitter Data Input Voltage - Low
VIL-VCC -1.810
-1.475
V
4
Transmitter Data Input Voltage - High
VIH-VCC -1.165
-0.880
V
4
Transmitter Differential Input Voltage
Data Output Load
Signal Detect Output Load
VD
0.3
1.6
V
RDL
50
W5
RSDL
50
W5
Notes:
1. This is the maximum voltage that can be applied across the Differential Transmitter Data Inputs without damaging the ESD protection circuit.
2. 2 ms-1 air flow required (for HFCT -5208xxM only).
3. Tested with a 100 mV p-p sinusoidal signal in the frequency range from 500 Hz to 1 MHz imposed on the VCC supply with the recommended
power supply filter in place, see Figure 4. Typically less than a 0.5 dB change in sensitivity is experienced.
4. Compatible with 10K, 10KH and 100K ECL and PECL output signals.
5. The outputs are terminated to VCC - 2 V.
10

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