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PDF MC12009 Data sheet ( Hoja de datos )

Número de pieza MC12009
Descripción MECL PLL COMPONENTS DUAL MODULUS PRESCALER
Fabricantes Motorola Semiconductors 
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Dual Modulus Prescaler
These devices are two–modulus prescalers which will divide by 5 and
6, 8 and 9, and 10 and 11, respectively. A MECL–to–MTTL translator is
provided to interface directly with the MC12014 Counter Control Logic. In
addition, there is a buffered clock input and MECL bias voltage source.
B BMC12009 480 MHz ( 5/6), MC12011 550 MHz ( 8/9), MC12013
B550 MHz ( 10/11)
MECL to MTTL Translator on Chip
MECL and MTTL Enable Inputs
5.0 or –5.2 V Operation*
Buffered Clock Input — Series Input RC Typ, 20 Ohms and 4 pF
VBB Reference Voltage
310 Milliwatts (Typ)
* When using a 5.0 V supply, apply 5.0 V to Pin 1 (VCCO), Pin 6
(MTTL VCC), Pin 16 (VCC), and ground Pin 8 (VEE). When using
–5.2 V supply, ground Pin 1 (VCCO), Pin 6 (MTTL VCC), and
Pin 16 (VCC) and apply –5.2 V to Pin 8 (VEE). If the translator is not
required, Pin 6 may be left open to conserve dc power drain.
Order this document by MC12009/D
MC12009
MC12011
MC12013
MECL PLL COMPONENTS
DUAL MODULUS PRESCALER
SEMICONDUCTOR
TECHNICAL DATA
16
1
P SUFFIX
PLASTIC PACKAGE
CASE 648
MAXIMUM RATINGS
Characteristic
Symbol
Rating
Unit
(Ratings above which device life may be impaired)
Power Supply Voltage
(VCC = 0)
VEE
–8.0
Vdc
Input Voltage
(VCC = 0)
Vin 0 to VEE
Vdc
Output Source Current
Continuous
Surge
IO mAdc
t 50
t 100
Storage Temperature Range
Tstg –65 to +175
°C
(Recommended Maximum Ratings above which performance may be
degraded)
Operating Temperature Range
MC12009, MC12011, MC12013
TA
–30 to +85
°C
DC Fan–Out (Note 1)
(Gates and Flip–Flops)
n 70 —
NOTES: 1. AC fan–out is limited by desired system performance.
2. ESD data available upon request.
PIN CONNECTIONS
VCCO
Q
Q
(–)
(+)
MTTL VCC
MTTL Output
VEE
1
2
3
4
5
6
7
8
16 VCC
15 Clock
14 VBB
13 E1 MECL
12 E2 MECL
11 E3 MECL
10 E4 MECL
9 E5 MECL
(Top View)
ORDERING INFORMATION
Device
Operating
Temperature Range
Package
MC12009P
MC12011P TA = – 35° to +85°C
MC12013P
Plastic
© Motorola, Inc. 1997
Rev 2

1 page




MC12009 pdf
MC12009 MC12011 MC12013
ELECTRICAL CHARACTERISTICS (Supply Voltage = –5.2 V, unless otherwise noted.) (continued)
TEST VOLTAGE/CURRENT VALUES
Volts
mA
@ Test Temperature
–30°C
VIHT
–3.2
VILT
–4.4
VEE
–5.2
IL
–0.25
IOL IOH
16 –0.40
+25°C –3.2
–4.4
–5.2 –0.25
16 –0.40
+85°C –3.2
–4.4
–5.2 –0.25
16 –0.40
Characteristic
Power Supply Drain Current
Input Current
Symbol
ICC1
ICC2
IinH1
Pin
Under
Test
8
6
15
11
12
13
TEST VOLTAGE APPLIED TO PINS LISTED BELOW
VIHT
VILT
VEE
IL
IOL IOH
8
8
8
9,10 8
9,10 8
9,10 8
Gnd
1,16
6
1,16
1,16
1,16
1,16
IinH2
4
5
8
8
6
6
IinH3
IinH4
5
9
10
8
8
8
6
1,16
1,16
Leakage Current
IinL1
15
11
12
13
8,15
8,11
8,12
8,13
1,16
1,16
1,16
1,16
IinL2
9
10
8
8
1,16
1,16
Reference Voltage
Logic ‘1’ Output Voltage
VBB
VOH1
(Note 1.)
14
2
3
8 14
8
8
1,16
1,16
1,16
Logic ‘0’ Output Voltage
VOH2
VOL1
(Note 1.)
7
2
3
8 76
8 1,16
8 1,16
VOL2
7
8 76
Logic ‘1’ Threshold Voltage
VOHA
(Note 2.)
2
3
9,10
9,10
8
8
1,16
1,16
Logic ‘0’ Threshold Voltage
VOLA
(Note 3.)
2
3
9,10 8
9,10 8
1,16
1,16
Short Circuit Current
IOS 7
8
1. Test outputs of the device must be tested by sequencing through the truth table. All input, power supply and
ground voltages must be maintained between tests. The clock input is the waveform shown.
2. In addition to meeting the output levels specified, the device must divide by 5, 8 or 10 during this test. The clock
input is the waveform shown.
3. In addition to meeting the output levels specified, the device must divide by 6, 9 or 11 during this test. The clock
input is the waveform shown.
Clock Input
6
VIHmax
VILmin
MOTOROLA RF/IF DEVICE DATA
5

5 Page





MC12009 arduino
Sine Wave
Input
MC12009 MC12011 MC12013
Figure 6. Maximum Frequency Test Circuit
VCC = +2.0 V
0.1 µF
1
16
5.0 µF
Vout to
Scope
Vin
(To Scope)
VEE
0.1 µF
13
E1
12
E2
11
E3
10
E4
9
E5
15
C
2
Q
3
Q
1k
14
0.1 µF
VBB
0.1 µF
8
VEE = –3.0 V
Unused output connected to a 50 resistor to ground
Clock
Input
800 mV
Q (Pin 2)
3 Cycles
DIVIDE BY 6
3 Cycles
850 mV typ
Clock
Input
800 mV
Q (Pin 2)
5 Cycles
DIVIDE BY 9
850 mV typ
4 Cycles
Clock
Input
800 mV
Q (Pin 2)
DIVIDE BY 11
6 Cycles
850 mV typ
5 Cycles
MOTOROLA RF/IF DEVICE DATA
11

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