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PDF LF198FE Data sheet ( Hoja de datos )

Número de pieza LF198FE
Descripción Sample-and-hold amplifiers
Fabricantes NXP Semiconductors 
Logotipo NXP Semiconductors Logotipo



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No Preview Available ! LF198FE Hoja de datos, Descripción, Manual

Philips Semiconductors Linear Products
Sample-and-hold amplifiers
Product specification
LF198/LF298/LF398
DESCRIPTION
The LF198/LF298/LF398 are monolithic sample-and-hold circuits
which utilize high-voltage ion-implant JFET technology to obtain
ultra-high DC accuracy with fast acquisition of signal and low droop
rate. Operating as a unity gain follower, DC gain accuracy is 0.002%
typical and acquisition time is as low as 6µs to 0.01%. A bipolar
input stage is used to achieve low offset voltage and wide
bandwidth. Input offset adjust is accomplished with a single pin and
does not degrade input offset drift. The wide bandwidth allows the
LF198 to be included inside the feedback loop of 1MHz op amps
without having stability problems. Input impedance of 1010allows
high source impedances to be used without degrading accuracy.
P-channel junction FETs are combined with bipolar devices in the
output amplifier to give droop rates as low as 5mV/min with a 1µF
hold capacitor. The JFETs have much lower noise than MOS
devices used in previous designs and do not exhibit high
temperature instabilities. The overall design guarantees no
feedthrough from input to output in the hold mode even for input
signals equal to the supply voltages.
Logic inputs are fully differential with low input current, allowing
direct connection to TTL, PMOS, and CMOS; differential threshold is
1.4V. The LF198/LF298/LF398 will operate from ±5V to ±18V
supplies. They are available in 8-pin plastic DIP, 8-pin Cerdip, and
14-pin plastic SO packages.
FEATURES
Operates from ±5V to ±18V supplies
Less than 10µs acquisition time
TTL, PMOS, CMOS compatible logic input
0.5mV typical hold step at CH=0.01µF
Low input offset
0.002% gain accuracy
Low output noise in hold mode
Input characteristics do not change during hold mode
High supply rejection ratio in sample or hold
Wide bandwidth
PIN CONFIGURATIONS
FE, N Packages
V+ 1
OFFSET VOLTAGE 2
INPUT 3
V– 4
8 LOGIC
7 LOGIC REFERENCE
6 Ch
5 OUTPUT
TOP VIEW
D1 Package
INPUT 1
NC 2
V– 3
NC 4
NC 5
NC 6
OUTPUT 7
14 VOS Adj
13 NC
12 V+
11 LOGIC
10 LOGIC REF
9 NC
8 Ch
TOP VIEW
NOTE:
1. SO and non-standard pinouts.
APPLICATION
The LF198/LF298/LF398 are ideally suited for a wide variety of
sample-and-hold applications, including data acquisition,
analog-to-digital conversion, synchronous demodulation, and
automatic test setup
ORDERING INFORMATION
DESCRIPTION
8-Pin Ceramic Dual In-Line Package (CERDIP)
14-Pin Plastic Small Outline (SO) Package
8-Pin Ceramic Dual In-Line Package (CERDIP)
8-Pin Plastic Dual In-Line Package (DIP)
8-Pin Ceramic Dual In-Line Package (CERDIP)
8-Pin Plastic Dual In-Line Package (DIP)
TEMPERATURE RANGE
-55°C to +125°C
0 to +70°C
0 to +70°C
0 to +70°C
-25°C to +85°C
-25°C to +85°C
ORDER CODE
LF198FE
LF398D
LF398FE
LF398N
LF298FE
LF298N
DWG #
0580A
0175D
0580A
0404B
0580A
0404B
August 31, 1994
879 853-0135 13721

1 page




LF198FE pdf
Philips Semiconductors Linear Products
Sample-and-hold amplifiers
Product specification
LF198/LF298/LF398
TYPICAL AC PERFORMANCE CHARACTERISTICS (Continued)
Dynamic Sampling Error
Output Droop Rate
100
330pF
10 0
10
330pF
±1
–10
1000pF
–100
0.1
1 10 100
INPUT SLEW RATE (V/ms)
1000
Phase And Gain
(Input to Output, Small-Signal)
5
Ch = 0
0
–5 Ch = 1000pF
–10 Ch 0.01µF
Ch = 1000pF
Ch = 0.01µF
80
70
60
50
40
30
Ch 0.01µF
1k 10k 100k
20
10
Ch = 0
0
1M 10M
FREQUENCY (Hz)
10–1
10–2
10–3
TJ =25°C
TJ =85°C
10–4
100pF
1000pF 0.01µF 0.1µF
HOLD CAPACITOR
1µF
Power Supply Rejection
160
TJ =25°C
140 V+ = V– = 15V
120 VOUT = 0°C
100
80
60
NEGATIVE
MODE
40
POSITIVE
MODE
20
0
100
1k 10k 100k
FREQUENCY (Hz)
1M
Feedthrough Rejection Ratio
(Hold Mode)
–130
V+ = V– = 15V
–120
–110
–100
Ch = 0.1µF
TJ =25°C
VIN = 10Vp-p
V7.8 = 0
–90 Ch = 0.01µF
–80
Ch = 1000pF
–70
–60
–50
10
100 100 1k 10k 100k
FREQUENCY (Hz)
1M
‘Hold’ Sampling Time
2
V+ = V– = 15V
1.8 SETTLING TIME
1.6
1.4
1.2
1
0.8
0.6
0.4
0.2
0
–50 –25 0 25 50 75 100 125 150
JUNCTION TEMPERATURE (°C)
Output Noise
160
140
120
100
‘HOLD’ MODE
80
60
40
SAMPLE
20 MODE
0
10 100 1k 10k
FREQUENCY (Hz)
100k
August 31, 1994
883

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