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SP8611BDG Datasheet(PDF) 4 Page - Zarlink Semiconductor Inc

Part # SP8611BDG
Description  asynchronous ECL divide
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Manufacturer  ZARLINK [Zarlink Semiconductor Inc]
Direct Link  http://www.zarlink.com
Logo ZARLINK - Zarlink Semiconductor Inc

SP8611BDG Datasheet(HTML) 4 Page - Zarlink Semiconductor Inc

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2
SP8610/11
Maximum frequency (sinewave input)
Minimum frequency (sinewave input)
Current consumption
Output low voltage
Output high voltage
Minimum output swing
fMAX
fMIN
IEE
VOL
VOH
VOUT
1·0
1·3
1·5
2
1·92
2
0·93
500
Min.
Max.
150
100
2
1·62
2
0·75
Value
Notes
GHz
GHz
GHz
MHz
mA
V
V
mV
6
6
6
4
5
5
Input = 400-1200mV p-p
Input = 800-1200mV p-p
Input = 400-1200mV p-p
Input = 600-1200mV p-p
VEE = 25·45V, outputs
unloaded
VEE = 25·2V, RL = 430Ω
(25
°C)
VEE = 25·2V, RL = 430Ω
(25
°C)
VEE = 25·2V, RL = 430Ω
ELECTRICAL CHARACTERISTICS
Unless otherwise stated, the Electrical Characteristics are guaranteed over specified supply, frequency and temperature range
Supply voltage, VCC = 0V, VEE = 25·2V 6 0·25V
Temperature, TAMB = 255°C to 1125°C (A Grade) (Note 1), 0°C to 170°C (B Grade)
Conditions
Units
Symbol
Characteristic
Type
SP8605A,B
SP8606A
SP8606B
All
All
All
All
All
NOTES
1. The A Grade devices must be used with a heat sink to maintain chip temperature below 1150
°C when operating in a T
AMB of 1125°C.
2. The temperature coefficients of VOH = 11·2mV/°C, and VOL = 10·24mV/°C but these are not tested.
3. The test configuration for dynamic testing is shown in Fig.5.
4. Tested at 25
°C and 1125°C only (170°C for B grade).
5. Tested at 25
°C only
6. Tested at 1125
°C only (170°C for B grade).
Fig. 3 Typical input characteristic of SP8611
THERMAL CHARACTERISTICS
uJC approximately 30°C/W
uJA approximately 110°C/W
OPERATING NOTES
1. The clock input (pin 4) should be capacitively coupled to the
signal source. The input signal path is completed by connecting
a capacitor from the internal bias decoupling, pin 6, to ground.
2. In the absence of a signal the device will self-oscillate. If this is
undesirable, it may be prevented by connecting a 10k
Ω resistor
from the unused input to VEE i.e. from pin 4 to pin 7. This will reduce
the input sensitivity by approximately 100mV.
3. The circuit will operate at very low input frequencies but slew
rate must be better than 200V/
µs.
4. TheinputimpedanceoftheSP8610/11isafunctionoffrequency,
see Fig. 4.
5. The emitter follower outputs require external load resistors.
These should not be less than 330
Ω and a value of 430Ω is
recommended. Interfacing to ECLlll/10K is shown in Fig. 7.
6. These devices may be used with split suopply lines and ground
referenced input; a suitable configuration is shown in Fig. 6.
7. All components should be suitable for the frequency in use.
1400
1200
1000
800
600
400
200
0
0
100
200
300
400
500
600
700
800
900
1000 1100 1200 1300 1400 1500
INPUT FREQUENCY (MHz)
* Tested as specified
in table of Electrical
Characteristics
GUARANTEED *
OPERATING
WINDOW
SP8611A
SP8611B
TCASE = 255°C
TCASE = 170°C
TCASE = 1125°C


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