AD53513JSQ Analog Devices Inc, AD53513JSQ Datasheet - Page 2

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AD53513JSQ

Manufacturer Part Number
AD53513JSQ
Description
IC QUAD PIN DRIVER 100-LQFP
Manufacturer
Analog Devices Inc
Type
Driverr
Datasheet

Specifications of AD53513JSQ

Rohs Status
RoHS non-compliant
Number Of Drivers/receivers
4/0
Voltage - Supply
9V
Mounting Type
Surface Mount
Package / Case
100-LQFP Exposed Pad, 100-eLQFP, 100-HLQFP
Protocol
-
Parameter
DIFFERENTIAL INPUT CHARACTERISTICS
REFERENCE INPUTS (V
OUTPUT CHARACTERISTICS
DYNAMIC PERFORMANCE, DRIVE
AD53513–SPECIFICATIONS
(All specifications are at T
at T
(Data to DATA, INH to INH), RLD, VBB
Bias Currents
Logic High Range
Logic Low Range
Amplitude (V
Absolute Accuracy
Offset TC, V
Output Resistance
Output Leakage
Dynamic Current Limit
Static Current Limit
PSRR, Drive Mode
(V
J
Input Voltage
Differential Input Range
Bias Current
VBB Threshold Input
V
V
V
V
V
V
H
Propagation Delay Time
Propagation Delay TC
Delay Matching, Edge to Edge
Rise and Fall Time
Rise and Fall Time TC
Overshoot, Undershoot, and Preshoot
Settling Time
Delay Change vs. Pulsewidth
Minimum Pulsewidth
= 75 C–95 C). (A 39 nF capacitor must be connected between V
H
H
L
L
T
T
and V
1 V Swing
2 V Swing
3 V Swing
1 V Swing
2 V Swing
3 V Swing
to 15 mV
to 4 mV
2 V Swing
Toggle Rate
Offset
Gain and Linearity Error
Offset
Gain and Linearity Error
Offset
Gain and Linearity Error
L
)
H
H
, or V
–V
L
)
L
, or V
J
= 85 C
L
, V
TERM
H
, V
T
)
5 C, +V
S
= +9 V
Min
–2
–1
–50
–2.3
–2.5
0.2
–100
–100
–100
–1.0
0.3
3%, –V
Typ
ECL
Midrange
± 0.3 ± 5
± 0.3 ± 5
± 0.3 ± 5
± 0.5
20
130
± 85
35
± 0.5
100
300
450
650
± 1
± 1
± 1
± (6% +50 mV)
50
10
10
700
3.2
S
= –6 V
Max
0
+1
+50
+5.5
+5.3
8.0
+100
+100
+100
+1.0
1.1
CC
and V
3% unless otherwise noted. All temperature coefficients are measured
Unit
Volts
mA
V
µA
Volts
Volts
Volts
mV
% of V
mV
% of V
mV
% of V
mV/°C
µA
mA
mA
dB
ns
ps/°C
ps
ps
ps
ps
ps/°C
ps/°C
ps/°C
% of Step + mV a. V
ns
µs
ps
ps
GHz
HDCPL
H
L
T
and between V
+ mV
+ mV
+ mV
Test Conditions
V
V
Set to Midrange of Logic Levels
V
DATA = H
DATA = L
DATA = H, V
DATA = H, V
V
DATA = L, V
DATA = L, V
V
Term Mode, V
Term Mode, V
V
V
DATA = H, V
V
C
Output to –2.5 V, V
V
V
V
V
Measured at 50%, V
V
Measured at 50%, V
V
Measured at 50%, V
V
Measured 20%–80%, V
Measured 10%–90%, V
Measured 10%–90%, V
Measured 20%–80%, V
Measured 10%–90%, V
Measured 10%–90%, V
b. V
c. V
V
V
V
Pulsewidth/Period = 1.0 ns/4.0 ns, 30 ns/120 ns
700 ps Input, 10%/90% Output, V
V
V
V
BB
IN
L
T
T
H
L
OUT
T
H
L
S
L
L
L
L
L
L
L
L
OUT
BYP
, V
, V
= V
= +3 V
= 0; DATA = H and Output to 5.5 V,
= –3 V, DATA = L
= –800 mV
= –800 mV
= –800 mV
= 0 V, V
= 0 V, V
= 0 V, V
= 0 V, V
= –1.8 V, V
= +4.5 V
= +3 V
= +5.5 V, V
= –2 V, 0.0 V
= –1.3 V
L
L
L
H
H
= 39 nF, V
, V
, V
EE
, V
= –2 V to +5 V
> 300 mV p-p at 50 Ω Terminated
S
= 2 V
= 0 V
and V
± 3%
H
H
H
= 0 V, +1 V, V
= 0 V, +5 V, V
= 0 V, +3 V, V
H
H
H
H
LDCPL
= +0.5 V, V
= +0.5 V, V
= +2 V, V
= +2 V, 50 Ω Terminated
L
L
H
H
H
H
T
T
L
= 0 V, V
= –2 V to +5 V, V
= 0 V, V
= –2 V to +5 V, V
= 3 V, V
H
= –2.5 V, V
= 0 V, V
= –2.0 V to +5.0 V, V
= –0.8 V, V
.)
= +5 V, V
H
H
H
H
= +5.5 V, V
= 800 mV, 50 Ω Load,
= 800 mV, 50 Ω Load,
= 800 mV, 50 Ω Load,
L
L
L
L
L
L
T
L
H
L
T
T
L
= 0 V, V
= 0 V, V
= 0 V, V
= 0 V, V
= 0 V, V
= 0 V, V
T
T
T
= –2 V,
= –2 V, V
= 0 V, I
= +5 V, V
= –2 V, 50 Ω
= –2 V, 50 Ω
= –1 V, V
= –2 V, 50 Ω
= –2 V
= –2 V
T
T
L
= 0
= –2 V
= –2 V,
L
H
H
H
H
H
H
L
H
OUT
T
= –2.5 V,
= 1 V, V
= 2 V, V
= 3 V, V
= 1 V, V
= 2 V, V
= 3 V, V
= –2.5 V,
= +5.5 V,
T
= –2 V,
T
H
= +3 V
L
= +4.5 V
= +3 V
= 45 mA
= 0,
T
T
T
T
T
T
= –2 V
= –2 V
= –2 V
= –2 V
= –2 V
= –2 V

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