EEWORLDEEWORLDEEWORLD

Part Number

Search

SHM-43MC

Description
Sample and Hold Circuit, 1 Func, Sample, 0.025us Acquisition Time, Hybrid, MDIP14, METAL , DIP-14
CategoryAnalog mixed-signal IC    Amplifier circuit   
File Size116KB,4 Pages
ManufacturerMurata Power Solutions
Download Datasheet Parametric Compare View All

SHM-43MC Overview

Sample and Hold Circuit, 1 Func, Sample, 0.025us Acquisition Time, Hybrid, MDIP14, METAL , DIP-14

SHM-43MC Parametric

Parameter NameAttribute value
Is it lead-free?Contains lead
Is it Rohs certified?incompatible
Objectid1053941641
Parts packaging codeDIP
package instructionDIP, DIP14,.3
Contacts14
Reach Compliance Codecompliant
ECCN codeEAR99
Maximum acquisition time0.035 µs
Nominal acquisition time0.025 µs
Amplifier typeSAMPLE AND HOLD CIRCUIT
Minimum analog input voltage2 V
maximum rate of descent25000 V/s
JESD-30 codeR-MDIP-T14
length20.01 mm
Number of functions1
Number of terminals14
Maximum operating temperature70 °C
Minimum operating temperature
Package body materialMETAL
encapsulated codeDIP
Encapsulate equivalent codeDIP14,.3
Package shapeRECTANGULAR
Package formIN-LINE
Peak Reflow Temperature (Celsius)NOT SPECIFIED
power supply+-5,15 V
Certification statusNot Qualified
Sample and hold/Track and holdSAMPLE
Supply voltage upper limit7 V
Nominal supply voltage (Vsup)5 V
surface mountNO
technologyHYBRID
Temperature levelCOMMERCIAL
Terminal formTHROUGH-HOLE
Terminal pitch2.54 mm
Terminal locationDUAL
Maximum time at peak reflow temperatureNOT SPECIFIED
width7.62 mm

SHM-43MC Preview

®
®
SHM-43
High-Speed, 0.01% Hybrid Sample/Hold
Typical unit
FEATURES
„
35 nSec maximum acquisition time to 0.01%
„
30 nSec maximum hold-mode settling to 0.01%
„
1 pSec aperture uncertainty
„
150 MHz small-signal bandwidth
„
545 mW power dissipation
„
Small 14-pin DIP package
„
CMOS control signal
PRODUCT OVERVIEW
The SHM-43 sample-hold utilizes a proprietary
architecture in delivering an acquisition time of 35
nanoseconds maximum to 0.01% and 20 nanosec-
onds maximum to 0.1% accuracy.
Operation requires +15V and ±5V supplies and
the analog input range is ±2V. Packaged in a small
14-pin DIP, the SHM-43 offers a CMOS compat-
ible sample command while dissipating just 545
milliwatts.
The SHM-43 has been designed for applica-
tions that demand fast acquisition times (25 nS,
±0.01%), fast hold mode settling (20nS, ±0.01%),
wide bandwidth, and the ability to drive resis-
tive (100Ω), and capacitive (50 pF) loads with no
compromise in performance. These features make
the SHM-43 an ideal choice for driving flash A/D
converters in applications such as radar and com-
munications.
Two temperature ranges are offered: the com-
mercial 0 to+70 ˚C and military -55 to +125 ˚C.
SIMPLIFIED SCHEMATIC
DIGITAL
+5V
4
1
+1
+1
8
S/H OUT
+15V
POWER
12
ANALOG
+5V
14
-5V
POWER
13
INPUT
6
S/H CONTROL
S/H OR S/H
5
SWITCH
DRIVE
10 -5 BYPASS
9
+5 BYPASS
7
DIGITAL
GROUND
3
POWER
GND
11
ANALOG
GROUND
2
REF
BYPASS
Typical topology is shown.
Figure 1. Simplified Block Diagram
DATEL
11 Cabot Boulevard, Mansfield, MA 02048-1151 USA •
Tel: (508) 339-3000
www.datel.com
• e-mail: help@datel.com
04 Apr 2011 MDA_SHM-43.B03
Page 1 of 4
®
®
SHM-43
High-Speed, 0.01% Hybrid Sample/Hold
PERFORMANCE, CONT.
Hold Mode Settling,
0.1%, +25 ˚C
0 to +70 ˚C
-55 to +125 ˚C
Output Noise, Hold Mode
Droop Rate, +25 ˚C
0 to +70 ˚C
-55 to +125 ˚C
Functional Specifications
Apply over the operating temperature range,
±1
Volt input range, 100Ω load, +15V,
±5V
nominal
supplies, unless otherwise specified.
MIN
TYP
50
-80
1
25
MAX
30
35
35
100
5
25
50
UNITS
nSec.
nSec.
nSec.
μV rms
dB
μV/μS
μV/μS
μV/μS
PARAMETERS
Input Voltage Range
Input lmpedance
Digital Imputs
(Digital Supply = +5V)
Logic Levels
Logic 1
Logic 0
Logic Loading
Logic 1
Logic 0
MIN
-2
50
TYP
160
MAX
+2
UNITS
Volts
Kohms
Feedthrough Rejection 2V Step -76
3.8
1
1
1.35
5
5
Vdc
Vdc
μA
μA
POWER SUPPLY REOUIREMENTS
Range
Analog +5V
Digital +5V
-5V
+15V
Current Usage
Analog +5V
Digital +5V
-5V
+15V
Power Dissipation
Power Supply Rejection Ratio
+4.75
+4.75
-4.75
+14.25
-52
+5.0
+5.0
-5.0
+15.0
+38
+1.0
-47
8
545
-60
+5.25
+5.25
-5.25
+15.75
+45
+50
-50
12
655
Vdc
Vdc
Vdc
Vdc
mA
mA
mA
mA
mW
dB
OUTPUTS
Voltage Range
Output Current
Output lmpedance (DC)
Stable Capacative Load
±2
50
50
0.1
0.25
V
mA
Ohms
pF
PERFORMANCE
Nonlinearity, DC (±1V)
+25 ˚C
O to·70 ˚C
-55 to +125 ˚C
Sample Mode Offset, +25 ˚C
0 to +70 ˚C
-55to +125 ˚C
Pedestal, 25 ˚C
0 to +70 ˚C
-55 to +125 ˚C
Gain, +25 ˚C
Gain Error, +25 ˚C
O to +70 ˚C
-55 to +125 ˚C
Aperture DeIay, +25 ˚C
0 to + 70 ˚C
-55 to +125 ˚C
Aperture Jitter, +25 ˚C
0 to + 70 ˚C
-55 to +125 ˚C
Slew Rate
Full Power BW,
±1.5V
Small Signal Bandwidth
Harmonic Distortion
±1V,
DC to 5 MHz
±1V,
5 to 10 MHz, +25 ˚C
0 to +70 ˚C
-55 to +125 ˚C
Acq Time 0.01%,
±1V,
+25 ˚C
0 to +70 ˚C
-55 to +125 ˚C
Acq Time 0.1%,
±1V,
+25 ˚C
0 to +70 ˚C
-55 to +125 ˚C
Hold Mode Settling,
0.01%, +25 ˚C
0 to +70 ˚C
-55 to +125 ˚C
20
100
-70
-60
-50
-50
±5
±25
±25
±5
1
5
10
10
1
2
2
190
25
50
-74
-70
25
15
20
0.01
0.01
0.02
±30
±35
±35
±15
±20
±20
±2
±2.25
±2.25
10
20
20
3
6
6
250
35
35
45
25
35
35
30
50
50
%
%
%
mV
mV
mV
mV
mV
mV
V/V
%
%
%
nSec.
nSec.
nSec.
pS
pS
pS
V/μSec.
MHz
MHz
dB
dB
dB
dB
nSec.
nSec.
nSec.
nSec.
nSec.
nSec.
nSec.
nSec.
nSec.
ENVIRONMENTAL
Operating Temp. Range
-MC, ambient
-MM, case
Storage Temp. Range
Package Type
0
-55
-65
14-Pin metal DIP
+70
+125
+150
˚C
˚C
˚C
DATEL uses the conservative definition of Acquisition time, which includes the Aperture Delay time.
Absolute Maximum Ratings
PARAMETERS
+15V supply (pin 12)
+5V supply (pin 4, 14)
-5V supply (pin 13)
Analog input (pin 1)
Digital inputs (pins 5, 6)
Lead temperature (10 sec.)
Short circuit to ground
LIMITS
-0.5 to +18
-0.5 to +7
+0.5 to -7
+5V Supply +1
-5V Supply -1
-0.5 to +7
300
70
UNITS
Vdc
Vdc
Vdc
Vdc
Vdc
Vdc
˚C
mA
Output shorted to any supply will cause permanent damage.
TECHNICAL NOTES
1.
Bypass the
±5V
analog, +5V digital, +15V supplies with a 1μF, 25V tantalum capacitor in parallel with a O.O1
μF ceramic capacitor mounted as close to the pin as possible.
Additional bypass capacitors are necessary, because of internal high switching speeds, and high slew rates of
internal components. REF BYPASS (pin 2), +5 BYPASS (pin 9), and -5 BYPASS (pin 10) are internal connections
that must be bypassed with a minimum 1μF tantalum capacitor mounted as close to the pin as possible. The
polarity of the connections are shown on the test circuit drawing, Figure 2.
As with all high speed analog circuits, it is essential that good grounding tcehniques be used. Tie all ground
pins together at a single ground point beneath the device, and use a short low impedance run to the ground of
the analog power supplies. The ground point should be a solid ground plane under the device and any associ-
ated data converter.
The offset, pedestal, and gain errors of the SHM-43 are laser trimmed at DATEL and no external compensation
capabilities have been provided. This prevents introducing noise through the offset adjust terminals of the S/H
amplifier and guarantees excellent galn linearity, offset drift, and pedestal performance.
To achieve optimum performance-
2.
3.
4.
DATEL
11 Cabot Boulevard, Mansfield, MA 02048-1151 USA •
Tel: (508) 339-3000
www.datel.com
• e-mail: help@datel.com
04 Apr 2011 MDA_SHM-43.B03
Page 2 of 4
®
®
SHM-43
High-Speed, 0.01% Hybrid Sample/Hold
DIGITAL
+5V
1μF
+
ANALOG
+5V
+
1μF
+15V
+
1μF
0.01μF
4
1
INPUT
3
S/H *
5
11
6
7
0.01μF
+
1μF
-5V
13
SHM-43
14
0.01μF
12
0.01μF
8
10
9 +
2
1μF
minimum
+
+
S/H
OUTPUT
100Ω
R1 **
Figure 2. Test CIrcuit Connections
*
Connections shown for S/H; if opposite polarity sample hold command Is desired, connect
S/H CONTROL (pin 6) to DIGITAL +5V (pin 4). Using the opposite polarity S/H command will
not
effect speed or accuracy.
**
The SHM-43 MS been optimized tor driving 100Ω loads. R1 should be chosen so that the
total load on the S/H is 100Ω.
+5V
S/H COMMAND
0V (GND)
SAMPLE
HOLD
+1V
ANALOG INPUT
-1V
ACQUISITION
TIME
25nS
±0.01%
TYP.
20nS
20nS
±0.01%
TRACK
TO HOLD
SETTLING,
TYP.
±0.01%
FEEDTHRU
80 dB
25nS
±0.01%
+1V
SAMPLE HOLD OUTPUT
-1V
Figure 3. Test Method tor Circuit Shown In FIgure 2
DATEL
11 Cabot Boulevard, Mansfield, MA 02048-1151 USA •
Tel: (508) 339-3000
www.datel.com
• e-mail: help@datel.com
04 Apr 2011 MDA_SHM-43.B03
Page 3 of 4
®
®
SHM-43
High-Speed, 0.01% Hybrid Sample/Hold
ORDERING GUIDE SUMMARY
Model Number
SHM-43MC
SHM-43MC-C
SHM-43MM
Temperature Range
0 to +70 °C, non-RoHs
0 to +70 °C, RoHS-6 hazardous substance compliant*
-55 to +125 °C , non-RoHs
*Does not claim EU RoHS exemption 7b – lead in solder.
Contact DATEL for availability of MlL-STD-883 versions.
MECHANICAL DIMENSIONS
Tolerances unless otherwise specified:
2 PL DEC
±O.02
3 PL DEC ±0.002
±(O.50)
±(O.05)
Dimensions in inches (mm)
0.79
(20.01)
0.49
(12.45)
SHM-43
0.16
(4.06)
PIN 1 INDEX
0.025
(0.64)
0.010
(0.254)
0.018
(0.46)
0.040
(1.02)
0.20
(5.10)
0.300
(7.62)
0.010
(0.254)
0.010
(0.254)
INPUT/OUTPUT CONNECTIONS
Pin
Function
1
2
3
4
5
6
7
Input
Ref Bypass
Power Gnd
Digital +5V
S/H or S/H
S/H Control
Digital Ground
Pin
8
9
10
11
12
13
14
Function
S/H Out
+5 Bypass
-5 Bypass
Analog Ground
+15V Power
-15V Power
Analog +5V
DATEL
11 Cabot Boulevard, Mansfield, MA 02048-1151 USA
ITAR and ISO 9001/14001 REGISTERED
. makes no representation that the use of its products in the circuits described herein, or the use of other
technical information contained herein, will not infringe upon existing or future patent rights. The descriptions contained herein do not
imply the granting of licenses to make, use, or sell equipment constructed in accordance therewith. Specifications are subject to change
without notice.
www.datel.com • e-mail: help@datel.com
04 Apr 2011 MDA_SHM-43.B03
Page 4 of 4

SHM-43MC Related Products

SHM-43MC
Description Sample and Hold Circuit, 1 Func, Sample, 0.025us Acquisition Time, Hybrid, MDIP14, METAL , DIP-14
Is it lead-free? Contains lead
Is it Rohs certified? incompatible
Objectid 1053941641
Parts packaging code DIP
package instruction DIP, DIP14,.3
Contacts 14
Reach Compliance Code compliant
ECCN code EAR99
Maximum acquisition time 0.035 µs
Nominal acquisition time 0.025 µs
Amplifier type SAMPLE AND HOLD CIRCUIT
Minimum analog input voltage 2 V
maximum rate of descent 25000 V/s
JESD-30 code R-MDIP-T14
length 20.01 mm
Number of functions 1
Number of terminals 14
Maximum operating temperature 70 °C
Package body material METAL
encapsulated code DIP
Encapsulate equivalent code DIP14,.3
Package shape RECTANGULAR
Package form IN-LINE
Peak Reflow Temperature (Celsius) NOT SPECIFIED
power supply +-5,15 V
Certification status Not Qualified
Sample and hold/Track and hold SAMPLE
Supply voltage upper limit 7 V
Nominal supply voltage (Vsup) 5 V
surface mount NO
technology HYBRID
Temperature level COMMERCIAL
Terminal form THROUGH-HOLE
Terminal pitch 2.54 mm
Terminal location DUAL
Maximum time at peak reflow temperature NOT SPECIFIED
width 7.62 mm
Learning 3D visualization scene hierarchy from scratch (2)
1. Dynamically create combined scenes 2. Alignment of floors and buildings after loading 3. Predict the object structure of unknown loading scenes For some large 3D visualization scenes, it is difficu...
森友js Sensor
[Sipeed LicheeRV 86 Panel Review] V. The system image was finally created successfully, but...
[i=s]This post was last edited by zhang1gong on 2022-4-7 18:14[/i]A few days ago, when I was trying to make a system image of Tina-d1-h, a lot of errors occurred during the compilation process: "error...
zhang1gong Domestic Chip Exchange
[Atria AT32WB415 Series Bluetooth BLE 5.0 MCU] WDT Watchdog Analysis and Application
[Atria AT32WB415 Series Bluetooth BLE 5.0 MCU] WDT Watchdog Analysis and Application I am honored to have the opportunity to review the Arteli AT32WB415 series Bluetooth BLE 5.0 MCU. For this reason, ...
KING_阿飞 RF/Wirelessly
Design of Programmable SOC System Based on AXI4
"Programmable SOC System Design Based on AXI4" systematically introduces the principles and typical applications of programmable system-on-chip (SoC) design based on Xilinx's soft-core processor Micro...
arui1999 Download Centre
Universal control board based on 3U PXIe ZU11EG
Universal main control board based on 3U PXIe ZU11EG1. Board Introduction Based on 3U PXIe , ZU11EG/ZU7EG/ZU7EV realizes FMC data interface and main control calculation, and is widely used in industri...
VCC135 EE_FPGA Learning Park
No more looking down! ADAS gives rise to head-up display technology
Nowadays, more and more models are equipped with head-up display (HUD) systems as standard. HUD can project current speed, navigation and other information onto the photoelectric display device on the...
EEWORLD社区 Automotive Electronics

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Datasheet   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2024 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号