5962-9066101MPA [MICROSEMI]

Prescaler, 1-Func, CDIP8;
5962-9066101MPA
型号: 5962-9066101MPA
厂家: Microsemi    Microsemi
描述:

Prescaler, 1-Func, CDIP8

时钟 CD 逻辑集成电路
文件: 总6页 (文件大小:561K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
This product is obsolete.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/  
SP8802  
3.3GHZ ÷ 2 Fixed Modulus Divider  
Advance Information  
DS2111  
ISSUE 7.2  
June 1999  
Features  
Ordering Information  
SP8802/A/DG Military temperature range  
DES9066101/AC/DGAZ (SMD)  
G
G
Very High Speed Operation 3.3GHz  
Silicon Technology for low Phase Noise  
(Typically better than -140dBc/Hz at 10kHz)  
G
Specified Over the Full Military Temperature  
Range  
G
G
G
G
G
Low Power Dissipation 420mW (typ)  
5V Single Supply Operation  
High Input Sensitivity  
Very Wide Operating Frequency Range  
Available as DESC SMD 5962-9066101MPA  
Thermal Characteristics  
θja = 150°C/W  
θjc = 50°C/W  
Description  
Absolute Maximum Ratings  
The SP8802 is one of a range of very high speed low  
power prescalers for professional and military  
applications. The device features a complementary  
output stage with on chip current source for the emitter  
Supply voltage VCC  
Clock Input voltage  
Storage temperature range  
Junction temperature  
6.5V  
2.5V p-p  
-65°C to +150°C  
follower outputs  
+175°C  
SUPPLY  
1
VCC  
VREF (2V)  
500  
500  
400  
400  
7
OUTPUT  
÷2  
6
OUTPUT  
2
3
INPUT  
INPUT  
10mA  
2mA  
6.75mA  
5
GND  
Figure 1 SP8802 Block diagram  
SP8802 Advance Information  
V
1
2
3
4
8
7
6
5
NC  
CC  
INPUT  
INPUT  
NC  
OUTPUT  
OUTPUT  
GND  
DG8  
Figure 2 Pin connections  
Electrical Characteristics  
Guaranteed over the temperature range T  
-55°C to +125°C (see note) and supply voltage range 4.75V  
amb  
to 5.25V. Tested at T  
= -55°C and +100°C, V = 4.75V and 5.25V.  
amb  
CC  
Value  
Typ  
Conditions  
Characteristic  
Supply current  
Input sensitivity 0.65GHz to 2.8GHz 2, 3  
3.3GHz  
Input impedance  
(series equivalent)  
Pin  
Units  
Min  
Max  
mA  
mV  
mV  
VCC = 5V  
1
84  
100  
175  
400  
RMS sinewave  
measured in 50 ohm system.  
See Figs. 3 & 4  
2, 3  
50  
2
pF  
Vp-p VCC = 5V  
Vp-p VCC = 5V load as Fig. 4  
Output Voltage with fin = 1000MHz  
Output Voltage with fin = 3GHz  
6, 7  
6, 7  
1
0.35  
0.8  
NOTE: Devices must be used with a suitable heatsink to maintain chip temperature below 175°C when  
operating at T  
>100°C.  
amb  
500  
400  
Tested as  
specified in Table  
of electrical  
*
GUARANTEED*  
OPERATING  
WINDOW  
VIN (mV RMS  
INTO 50 OHMS)  
300  
200  
100  
characteristics  
1
2
3
4
FREQUENCY (GHz)  
Figure 3 Typical input sensitivity  
2
Advance Information SP8802  
POWER  
METER  
SIGNAL  
GENERATOR  
50  
0.1µ  
FROM  
COAXIAL  
SWITCH  
OUTPUT  
50Ω  
470  
3p  
+5V  
1
2
8
7
1n  
OUTPUT LOAD FOR  
AMPLITUDE MEASUREMENTS  
RATIO  
COUNTER  
SP8802  
3
4
6
5
1n  
0.1µ  
Figure 4 Test circuit  
Figure 5 Typical input impedance  
3
For more information about all Zarlink products  
visit our Web Site at  
www.zarlink.com  
Information relating to products and services furnished herein by Zarlink Semiconductor Inc. or its subsidiaries (collectively “Zarlink”) is believed to be reliable.  
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use. Neither the supply of such information or purchase of product or service conveys any license, either express or implied, under patents or other intellectual  
property rights owned by Zarlink or licensed from third parties by Zarlink, whatsoever. Purchasers of products are also hereby notified that the use of product in  
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.  
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information appearing in this publication are subject to change by Zarlink without notice. No warranty or guarantee express or implied is made regarding the  
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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  
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TECHNICAL DOCUMENTATION - NOT FOR RESALE  

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