ZARLINK SP8611ADG

Obsolescence Notice
This product is obsolete.
This information is available for your
convenience only.
For more information on
Zarlink’s obsolete products and
replacement product lists, please visit
http://products.zarlink.com/obsolete_products/
THIS DOCUMENT IS FOR MAINTENANCE
PURPOSES ONLY AND IS NOT
RECOMMENDED FOR NEW DESIGNS
ADVANCE INFORMATION
DS3661-1·2
44
SP8610 1000MHz4
44
SP8611 1300/1500MHz4
The SP8610 and SP8611 are asynchronous ECL divide by
four circuits with ECL compatible outputs which can also be
used to drive 100Ω lines. They feature input sensitivities of
600mV p-p (800mV p-p above 1300MHz).
FEATURES
■ ECL Compatible Outputs
1
14
VCC (0V)
NC
2
13
NC
NC
3
12
NC
11
OUTPUT
OUTPUT
SP8610
SP8611
CLOCK INPUT
4
NC
5
10
INTERNAL BIAS DECOUPLING
6
9
NC
VEE
7
8
NC
■ AC-Coupled Inputs (Internal Bias)
QUICK REFERENCE DATA
■ Supply Voltage: 25·2V
NC
■ Power Consumption: 380mW
■ Max. Input Frequency: 1500MHz (SP8611B)
■ Temperature Range:
DG14
Fig. 1 Pin connections - top view
A Grade: 255°C to 1110°C
(1125°C with suitable heat sink)
B Grade: 0°C to 170°C
ORDERING INFORMATION
ABSOLUTE MAXIMUM RATINGS
Supply voltage, VEE
Output current
Storage temperature range
Max. junction temperature
Max. clock input voltage
SP8610 A DG
SP8610 B DG
SP8610 AA DG
SP8610 NA 1C
SP8611 A DG
SP8611 B DG
SP8611 AA DG
SP8611 NA 1C
28V
15mA
265°C to 1150°C
1175°C
2·5V p-p
VCC (0V)
14
11
CLOCK INPUT
4
DIVIDE BY
2
DIVIDE BY
2
6
INTERNAL BIAS
DECOUPLING
7
VEE
Fig. 2 Functional diagram
10
OUTPUT
OUTPUT
SP8610/11
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)
Value
Characteristic
Symbol
Units
Type
Conditions
Min.
Max.
1·0
1·3
1·5
GHz SP8605A,B Input = 400-1200mV p-p
GHz SP8606A Input = 800-1200mV p-p
GHz SP8606B Input = 400-1200mV p-p
Input = 600-1200mV p-p
All
150 MHz
VEE = 25·45V, outputs
All
100
mA
unloaded
All
VEE = 25·2V, RL = 430Ω
21·62
V
(25°C)
VEE = 25·2V, RL = 430Ω
All
20·75
V
(25°C)
VEE = 25·2V, RL = 430Ω
All
mV
Maximum frequency (sinewave input)
fMAX
Minimum frequency (sinewave input)
Current consumption
fMIN
IEE
Output low voltage
VOL
21·92
Output high voltage
VOH
20·93
Minimum output swing
VOUT
500
Notes
6
6
6
4
5
5
NOTES
1. The A Grade devices must be used with a heat sink to maintain chip temperature below 1150°C when operating in a TAMB 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).
SP8611A
INPUT AMPLITUDE (mV p-p)
1400
SP8611B
1200
1000
* Tested as specified
GUARANTEED *
OPERATING
WINDOW
800
in table of Electrical
Characteristics
600
TCASE = 170°C
400
TCASE = 1125°C
200
TCASE = 255°C
0
0
100
200
300
400
500
600
700
800
900 1000 1100 1200 1300 1400 1500
INPUT FREQUENCY (MHz)
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 10kΩ 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.
2
4. The input impedance of the SP8610/11 is a function of frequency,
see Fig. 4.
5. The emitter follower outputs require external load resistors.
These should not be less than 330Ω 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.
SP8610/11
j1
j 0.5
j2
1300 1400 1500
1200
j 0.2
j5
1100
1000
0.2
0
0.5
1
5
2
900
2j 5
800
2j 0.2
500
700
600
2j 2
2j 0.5
2j 1
Fig. 4 Typical input impedance. Test conditions: supply voltage = 25·2V, ambient temperature = 25°C, frequencies in MHz,
Impedances normalised to 50Ω
VCC = 0V
10n
50Ω
SIGNAL
SOURCE
14
4
33
11
DUT
6
33
MONITOR
10
50
1n
50
1n
50Ω LINE
TO SCOPE
7
1n
430
20
430
VEE = 25·2V60·25V
25dB
ATTENUATOR
NETWORK
10n
Fig. 5 Toggle frequency test circuit
13V
10n
50Ω
SIGNAL
SOURCE
4
14
11
DUT
50
1n
50
1n
OUTPUT
10
6
50
OUTPUT
7
430
430
VEE = 22·2V
10n
Fig. 6 Circuit for using the input signal about ground potential
3
SP8610/11
VCC = 0V
0V
47
Q
ECLlll
ECL10K
SP8610/11
ECLlll
ECL10K
SP8610/11
Q
430
430
1·5k
25·2V
25·2V
LOW POWER INTERFACING
Fig. 7 Interfacing SP8610/11 to ECL10K and ECLlll
14
1n
INPUT
4
11
DIVIDE BY
4
400
6
ECL OUTPUT
10
BIAS
1n
430
430
7
25·2V
1n
Fig. 8 Typical application showing interfacing
4
SP8610/11
NOTES
5
SP8610/11
PACKAGE DETAILS
Dimensions are shown thus: mm (in).
1
PIN 1 REF
NOTCH
5·59/7·87
(0·220/0·310)
7·62 (0·3)
NOM CTRS
14
1·14/1·65
(0·045/0·065)
0·20/0·36
(0·008/0·014)
20·32 (0·800)
MAX
SEATING PLANE
5·08/(0·20)
MAX
0·36/0·58
(0·014/0·23)
0·51 (0·02) 3·18/4·06
MIN
(0·125/0·160)
14 LEADS AT 2·54 (0·10)
NOM. SPACING
NOTES
1. Controlling dimensions are inches.
2. This package outline diagram is for guidance
only. Please contact your GPS Customer
Service Centre for further information.
14-LEAD CERAMIC DIL – DG14
HEADQUARTERS OPERATIONS
GEC PLESSEY SEMICONDUCTORS
Cheney Manor, Swindon,
Wiltshire SN2 2QW, United Kingdom.
Tel: (0793) 518000
Fax: (0793) 518411
GEC PLESSEY SEMICONDUCTORS
P.O. Box 660017
1500 Green Hills Road,
Scotts Valley, CA95067-0017
United States of America.
Tel (408) 438 2900
Fax: (408) 438 5576
CUSTOMER SERVICE CENTRES
● FRANCE & BENELUX Les Ulis Cedex Tel: (1) 64 46 23 45 Fax : (1) 64 46 06 07
● GERMANY Munich Tel: (089) 3609 06-0 Fax : (089) 3609 06-55
● ITALY Milan Tel: (02) 66040867 Fax: (02) 66040993
● JAPAN Tokyo Tel: (3) 5276-5501 Fax: (3) 5276-5510
● NORTH AMERICA Scotts Valley, USA Tel: (408) 438 2900 Fax: (408) 438 7023.
● SOUTH EAST ASIA Singapore Tel: (65) 3827708 Fax: (65) 3828872
● SWEDEN Stockholm Tel: 46 8 702 97 70 Fax: 46 8 640 47 36
● UK, EIRE, DENMARK, FINLAND & NORWAY
Swindon Tel: (0793) 518510 Fax : (0793) 518582
These are supported by Agents and Distributors in major countries world-wide.
© GEC Plessey Semiconductors 1994 Publication No. DS3661 Issue No. 1.2 March 1994
This publication is issued to provide information only which (unless agreed by the Company in writing) may not be used, applied or reproduced for any purpose nor form part of any order or contract nor to be regarded
as a representation relating to the products or services concerned. No warranty or guarantee express or implied is made regarding the capability, performance or suitability of any product or service. The Company
reserves the right to alter without prior knowledge the specification, design or price of any product or service. Information concerning possible methods of use is provided as a guide only and does not constitute
any guarantee that such methods of use will be satisfactory in a specific piece of equipment. It is the user's responsibility to fully determine the performance and suitability of any equipment using such information
and to ensure that any publication or data used is up to date and has not been superseded. These products are not suitable for use in any medical products whose failure to perform may result in significant injury
or death to the user. All products and materials are sold and services provided subject to the Company's conditions of sale, which are available on request.
6
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visit our Web Site at
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certain ways or in combination with Zarlink, or non-Zarlink furnished goods or services may infringe patents or other intellectual property rights owned by Zarlink.
This publication is issued to provide information only and (unless agreed by Zarlink in writing) may not be used, applied or reproduced for any purpose nor form part
of any order or contract nor to be regarded as a representation relating to the products or services concerned. The products, their specifications, services and other
information appearing in this publication are subject to change by Zarlink without notice. No warranty or guarantee express or implied is made regarding the
capability, performance or suitability of any product or service. Information concerning possible methods of use is provided as a guide only and does not constitute
any guarantee that such methods of use will be satisfactory in a specific piece of equipment. It is the user’s responsibility to fully determine the performance and
suitability of any equipment using such information and to ensure that any publication or data used is up to date and has not been superseded. Manufacturing does
not necessarily include testing of all functions or parameters. These products are not suitable for use in any medical products whose failure to perform may result in
significant injury or death to the user. All products and materials are sold and services provided subject to Zarlink’s conditions of sale which are available on request.
Purchase of Zarlink’s I2C components conveys a licence under the Philips I2C Patent rights to use these components in and I2C System, provided that the system
conforms to the I2C Standard Specification as defined by Philips.
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