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Figure 1. Functional Block Diagram aperture uncertainty of ±50ps. maintaining a considerably lower droop rate.
1 OUTPUT
Functional Specifi cations ABSOLUTE MAXIMUM RATINGS Positive Supply (Vcc) –0.3 to +18Vdc Negative Supply (Vee) +0.3 to –18Vdc +5V Supply Voltage, Pin 9 –0.5V to +7V Analog Input, Pin 13 c ±18V Digital Inputs, Pins 11, 12 –0.5V to +7V Output Current d ±65mA (Typical at +25°C with ±15V and +5V supplies unless otherwise noted.) ANALOG INPUT/OUTPUT MIN. TYP . MAX. UNITS Input/Output Voltage Range c ±10.25 ±11.25 — V Input Impedance — 1 — kΩ Output Current d — — ±50 mA Output Impedance 0.1 — Ω Maximum Capacitive Load — 250 — pF DIGITAL INPUT Input Logic Level Logic "1" +2.0 — +5.0 V Logic "0" 0 — +0.8 V Loading Logic "1" — — +40 μA TRANSFER CHARACTERISTICS Gain — –1 — V/V Gain Accuracy — ±0.05 ±0.1 % Gain Linearity Error e — ±0.005 ±0.01 %FS Sample-Mode Offset Voltage — ±0.5 ±5 mV Sample-to-Hold Offset Error f (Pedestal) — ±2.5 ±20 mV Gain Tempco (Drift) — ±0.5 ±5 ppm/°C Sample-Mode Offset Drift — ±3 ±15 g Sample-to-Hold Offset Drift — ±4 — g DYNAMIC CHARACTERISTICS Acquisition Time 10V to ±0.01%FS — 160 200 ns 10V to ±0.1%FS — 100 170 ns 10V to ±1%FS — 90 — ns 1V to ±1%FS — 75 — ns Sample-to-Hold Settling Time 10V to ±0.01%FS — 60 100 ns 10V to ±0.1%FS — 40 — ns Sample-to-Hold Transient — 180 — mV p-p DYNAMIC CHARACTERISTICS , Continued Aperture Delay Time — 6 — ns Aperture Uncertainty (Jitter) — ±50 — ps Output Slew Rate — ±300 — μV/μs Output Slew Rate — ±300 — μV/μs Small Signal Bandwidth (–3dB) — 8 — MHz Droop: +25°C — ±0.5 ±5 μV/μs +70°C — ±15 — μV/μs Feedthrough Attenuation — 74 — dB Overload Recovery Time Positive — 200 — ns Negative — 700 — ns POWER REQUIREMENTS Voltage Range: ±15V Supplies — ±3 — % +5V Supply — ±5 — % Power Supply Rejection Ratio — ±0.5 — mV/V Quiescent Current Drain +15V Supply — +21 +25 mA –15V Supply — –22 –25 mA +5V Supply — +17 +25 mA Power Consumption — 730 975 mW PHYSICAL/ENVIRONMENTAL Operating Temperature Ranges SHM-4860MC 0 to +70°C (ambient) SHM-4860MM, 883 –55 to +125°C (case) Storage Temperature Range –65 to +150°C Package Type 24-pin ceramic DDIP Output Footnotes: c Input signal should not exceed the supply voltage. d The SHM-4860’s output is current limited at approximately ±50mA. The device can withstand a sustained short to ground. However, shorts from the output to either supply will cause permanent damage. For normal operation, the load current should not exceed ±40mA. e Full Scale (FS) = 10V. Full Scale Range (FSR) = 20V. f Sample-to-Hold Offset Error (Pedestal) is constant regardless of input/output level. g Units are ppm of FSR/°C. TECHNICAL NOTES 1. All ground pins (10, 15, 21, 23) should be tied together and connected to system analog ground as close to the package as possible. It is recommended to use a ground plane under the device and solder all four ground pins directly to it. Care must be taken to ensure that no ground potentials can exist between Pin 10 and the other ground pins. 2. Although the power supply pins (9, 22, 24) are internally bypassed to ground with 0.01μF ceramic capacitors, additional external 0.1μF to 1μF tantalum bypass capacitors may be required in critical applications. 3. A logic "0" on the HOLD COMMAND input (Pin 11), or a logic "1" on the HOLD COMMAND input (Pin 12), will put the device in the sample mode. In this mode, the device acts as an inverting unity- gain amplifi er, and its output will track its input. A logic "1" on Pin 11 (logic "0" on Pin 12) will put the device in the hold mode, and the output will be held constant at the last input level present when the hold command was given. If the HOLD COMMAND input (Pin 11) is used to control the device, Pin 12 must be tied to digital ground. If HOLD COMMAND input (Pin 12) is used to control the device, Pin 11 must be tied to +5V. 4. The maximum capacitive load to avoid oscillation is typically 250pF. Recommended resistive load is 500Ω, although values as low as 250Ω may be used. Acquisition and sample-to-hold settling times are relatively unaffected by resistive loads down to 250Ω and capacitive loads up to 50pF. However, higher capacitances will affect both acquisition and settling time. DATEL, Inc. 11 Cabot Boulevard, Mansfi eld, MA 02048-1151 USA • Tel: (508) 339-3000 • www.datel.com • e-mail: help@datel.com SHM-4860 Industry-Standard, High-Speed ±0.01% Sample-Hold Amplifi ers 06 Oct 2015 MDA_SHM-4860.B04 Page 2 of 3
Model Number Operating Temperature Range SHM-4860MC 0 to +70°C SHM-4860MM –55 to +125°C SHM-4860/883 –55 to +125°C SHM-4860MM-QL –55 to +125°C MECHANICAL SPECIFICATIONS INPUT/OUTPUT CONNECTIONS PIN FUNCTION PIN FUNCTION
1 OUTPUT 24 +15V SUPPLY
2 N.C. 23 GROUND 3 N.C. 22 –15V SUPPLY 4 N.C. 21 GROUND 5 N.C. 20 N.C. 6 N.C. 19 N.C. 7 N.C. 18 N.C. 8 N.C. 17 N.C. 9 +5V SUPPLY 16 N.C.
10 GROUND 15 GROUND
11 HOLD COMMAND 14 N.C. HOLD COMMAND 13 INPUT Dimensions in inches (mm) 0.200 MAX. (5.080) 0.235 MAX. (5.969) 0.600 ±0.010 (15.240) 0.80 MAX. (20.32) 0.100 TYP. (2.540) 0.100 (2.540) 0.018 ±0.002 (0.457) 0.100 (2.540) 0.040 (1.016) 1.31 MAX. (33.27) 112 1324 1.100 (27.940) 0.190 MAX. (4.826) 0.010 (0.254) +0.002 –0.001 SEATING PLANE 0.025 (0.635) (unless otherwise indicated): 2 place decimal (.XX) ±0.010 (±0.254) 3 place decimal (.XXX) ±0.005 (±0.127) Kovar alloy 50 microinches (minimum) gold plating over 100 microinches (nominal) nickel plating 24-PIN DDIP © 2015 DATEL, Inc. DATEL, Inc. makes no representation that the use of its products in the circuits described herein, or the use of other technica l information contained herein, will not infringe upon existing or future patent rights. The descriptions contained herein do not imply the g ranting of licenses to make, use, or sell equipment constructed in accordance therewith. Specifi cations are subject to change without notice. www.datel.com • e-mail: help@datel.com DATEL is a registered trademark of DATEL, Inc.
11 Cabot Boulevard, Mansfi eld, MA 02048-1151 USA
ITAR and ISO 9001/14001 REGISTERED SHM-4860 Industry-Standard, High-Speed ±0.01% Sample-Hold Amplifi ers 06 Oct 2015 MDA_SHM-4860.B04 Page 3 of 3