D-TYPE FLIP-FLOP. HMC723LC3C Datasheet

HMC723LC3C FLIP-FLOP. Datasheet pdf. Equivalent

Part HMC723LC3C
Description FAST RISE TIME D-TYPE FLIP-FLOP
Feature HMC723LC3C v03.0514 13 Gbps, FAST RISE TIME D-TYPE FLIP-FLOP w/ PROGRAMMABLE OUTPUT VOLTAGE HIGH SP.
Manufacture Analog Devices
Datasheet
Download HMC723LC3C Datasheet



HMC723LC3C
HMC723LC3C
v03.0514
13 Gbps, FAST RISE TIME D-TYPE FLIP-FLOP
w/ PROGRAMMABLE OUTPUT VOLTAGE
Typical Applications
The HMC723LC3C is ideal for:
• RF ATE Applications
• Broadband Test & Measurement
• Serial Data Transmission up to 13 Gbps
• Digital Logic Systems up to 13 GHz
Functional Diagram
Features
Supports High Data Rates: up to 13 Gbps
Differential & Singe-Ended Operation
Fast Rise and Fall Times: 19 / 17 ps
Low Power Consumption: 260 mW typ.
Programmable Differential
Output Voltage Swing: 700 - 1300 mV
Propagation Delay: 105 ps
Single Supply: -3.3V
16 Lead Ceramic 3x3mm SMT Package: 9mm2
General Description
The HMC723LC3C is a D-type Flip Flop designed to
support data transmission rates of up to 13 Gbps, and
clock frequencies as high as 13 GHz. During normal
operation, data is transferred to the outputs on the
positive edge of the clock. Reversing the clock inputs
allows for negative-edge triggered applications. The
HMC723LC3C also features an output level control pin,
VR, which allows for loss compensation or for signal
level optimization.
All input signals to the HMC723LC3C are terminated with
50 Ohms to ground on-chip, and maybe either AC or DC
coupled. The differential outputs of the HMC723LC3C
may be either AC or DC coupled. Outputs can be
connected directly to a 50 Ohm to ground terminated
system, while DC blocking capacitors may be used if
the terminating system is 50 Ohms to a non-ground
DC voltage. The HMC723LC3C operates from a single
-3.3V DC supply and is available in a ceramic RoHS
compliant 3x3 mm SMT package.
Electrical Specifications, TA = +25°C, Vee = -3.3V
Parameter
Conditions
Min.
Power Supply Voltage
-3.6
Power Supply Current
Maximum Data Rate
Maximum Clock Rate
Input High Voltage
-0.5
Input Low Voltage
-1.0
Input Return Loss
Frequency <13 GHz
Output Amplitude
Single-Ended, peak-to-peak
Differential, peak-to-peak
Output High Voltage
Typ.
-3.3
80
13
13
10
550
1100
-10
Max
Units
-3.0
V
mA
Gbps
GHz
0.5
V
0.0
V
dB
mVp-p
mVp-p
mV
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HMC723LC3C
HMC723LC3C
v03.0514
13 Gbps, FAST RISE TIME D-TYPE FLIP-FLOP
w/ PROGRAMMABLE OUTPUT VOLTAGE
Electrical Specifications, (continued)
Parameter
Conditions
Min.
Typ.
Max
Units
Output Low Voltage
-570
mV
Output Rise / Fall Time
Differential, 20% - 80%
19 / 17
ps
Output Return Loss
Frequency <13 GHz
10
dB
Random Jitter Jr
Deterministic Jitter, Jd
rms
peak-to-peak, 215-1 PRBS input [1]
0.2
ps rms
2
ps, p-p
Propagation Delay Clock to Data, td
105
ps
Clock Phase Margin
13 GHz
320
deg
Set Up & Hold Time, tSH
6
ps
[1] Deterministic jitter calculated by simultaneously measuring the jitter of a 300 mV, 13 GHz, 215-1 PRBS input, and a single-ended output
DC Current vs. Supply Voltage [1] [2]
95
90
+25C
+85C
85
-40C
80
75
70
65
60
-3.7 -3.6 -3.5 -3.4 -3.3 -3.2 -3.1 -3 -2.9
SUPPLY VOLTAGE (V)
Output Differential
vs. Supply Voltage [1] [3]
1600
1500
1400
+25C
+85C
-40C
1300
1200
1100
1000
-3.7 -3.6 -3.5 -3.4 -3.3 -3.2 -3.1 -3 -2.9
SUPPLY VOLTAGE (V)
Output Differential vs. VR [3]
1500
1300
1100
900
700
+25C
+85C
-40C
500
-1.2 -1 -0.8 -0.6 -0.4 -0.2 0 0.2 0.4
VR (V)
Output Differential vs. Frequency [1]
1400
1300
1200
1100
1000
900
800
2
4
6
8
10
12
14
16
FREQUENCY (GHz)
[1] VR = 0.0V
[2] Frequency = 13 GHz
[3] Frequency = 10 GHz
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