SY10E416 [MICREL]

QUINT DIFFERENTIAL LINE RECEIVER; 昆特差动线路接收器
SY10E416
型号: SY10E416
厂家: MICREL SEMICONDUCTOR    MICREL SEMICONDUCTOR
描述:

QUINT DIFFERENTIAL LINE RECEIVER
昆特差动线路接收器

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QUINT DIFFERENTIAL  
LINE RECEIVER  
SY10E416  
SY100E416  
DESCRIPTION  
FEATURES  
Differential D and Q  
The SY10/100E416 are 5-bit differential line receiving  
devices. The 2.0GHz of bandwidth provided by the high  
frequency outputs make the devices ideal for buffering  
of very high speed oscillators.  
A VBB pin is available to AC couple an input signal to  
the devices.  
Extended 100E VEE range of –4.2V to –5.5V  
VBB output for single-ended use  
600ps max. propagation delay  
High frequency outputs  
The design incorporates two stages of gain internal to  
the devices, making them an excellent choice for use in  
high bandwidth amplifier applications.  
2 stages of gain  
Internal 75Kinput pull-down resistors  
Fully compatible with Motorola 10E/100E416  
Available in 28-pin PLCC package  
PIN CONFIGURATION  
BLOCK DIAGRAM  
Q0  
Q0  
D0  
D0  
D1  
D0  
Q1  
Q1  
25  
24 23 22 21 20 19  
D
3
26  
27  
28  
1
18  
17  
16  
15  
14  
13  
12  
Q
Q
3
3
D
D
2
2
D2  
D2  
Q2  
Q2  
VCC  
TOP VIEW  
PLCC  
V
EE  
BB  
Q
Q
2
2
J28-1  
V
2
D3  
D3  
Q3  
Q3  
D
0
0
3
VCCO  
D
4
Q
1
5
6
7
8
9
10 11  
D4  
D4  
Q4  
Q4  
VBB  
PIN NAMES  
Pin  
Function  
D[0:4], D[0:4]  
Q[0:4], Q[0:4]  
VCCO  
Differential Data Inputs  
Differential Data Outputs  
VCC to Output  
Rev.: C  
Amendment:/1  
Issue Date: February, 1998  
1
SY10E416  
Micrel  
SY100E416  
DC ELECTRICAL CHARACTERISTICS  
VEE = VEE (Min.) to VEE (Max.); VCC = VCCO = GND  
TA = 0°C  
TA = +25°C  
TA = +85°C  
Symbol  
Parameter  
Min.  
Typ. Max. Min. Typ. Max. Min. Typ. Max. Unit  
Condition  
VBB  
Output Reference Voltage  
V
10E –1.38  
100E –1.38  
–1.27 –1.35  
–1.26 –1.38  
–1.25 –1.31  
–1.26 –1.38  
–1.19  
–1.26  
IIH  
Input HIGH Current  
150  
150  
150  
µA  
IEE  
Power Supply Current  
mA  
10E  
100E  
135  
135  
162  
162  
135  
135  
162  
162  
135 162  
155 186  
VPP (DC) Input Sensitivity  
50  
0
50  
0
50  
0
mV  
V
1
2
VCMR  
Common Mode Range  
–1.5  
–1.5  
–1.5  
NOTES:  
1. Differential input voltage required to obtain a full ECL swing on the outputs.  
2. VCMR is referenced to the most positive side of the differential input signal. Normal operation is obtained when the input signals are within the VCMR range  
and the input swing is greater than VPP (min.) and <1V.  
AC ELECTRICAL CHARACTERISTICS  
VEE = VEE (Min.) to VEE (Max.); VCC = VCCO = GND  
TA = 0°C  
TA = +25°C  
TA = +85°C  
Symbol  
Parameter  
Min. Typ.  
Max. Min. Typ. Max. Min. Typ.  
Max. Unit  
Condition  
tPLH  
tPHL  
Propagation Delay to Output  
D (Diff)  
D (SE)  
ps  
500  
550  
250  
200  
350  
350  
500  
550  
250  
200  
350  
350  
500  
550  
250 350  
200 350  
tskew  
tskew  
Within-Device Skew  
50  
±10  
50  
±10  
50  
±10  
ps  
ps  
1
2
Duty Cycle Skew, tPLH–tPHL  
VPP (AC) Minimum Input Swing  
150  
100  
150  
100  
150  
mV  
ps  
3
tr  
tf  
Rise/Fall Time  
20–80%  
200  
350  
200  
350  
100 200  
350  
NOTES:  
1. Within-device skew is defined as identical transitions on similar paths through a device.  
2. Duty cycle skew defined only for differential operation when the delays are measured from the cross point of the inputs to the cross point of the outputs.  
3. Minimum input swing for which AC parameters are guaranteed.  
PRODUCT ORDERING CODE  
Ordering  
Code  
Package  
Type  
Operating  
Range  
SY10E416JC  
J28-1  
J28-1  
J28-1  
J28-1  
Commercial  
Commercial  
Commercial  
Commercial  
SY10E416JCTR  
SY100E416JC  
SY100E416JCTR  
2
SY10E416  
Micrel  
SY100E416  
28 LEAD PLCC (J28-1)  
Rev. 03  
3
SY10E416  
Micrel  
SY100E416  
MICREL-SYNERGY 3250 SCOTT BOULEVARD SANTA CLARA CA 95054 USA  
TEL + 1 (408) 980-9191 FAX + 1 (408) 914-7878 WEB http://www.micrel.com  
This information is believed to be accurate and reliable, however no responsibility is assumed by Micrel for its use nor for any infringement of patents or  
other rights of third parties resulting from its use. No license is granted by implication or otherwise under any patent or patent right of Micrel Inc.  
© 2000 Micrel Incorporated  
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