MAX394
MAX394 is CMOS Analog Switch manufactured by Analog Devices.
Description
The MAX394 is a precision, low-voltage, quad, singlepole/double-throw (SPDT) analog switch. The four independent switches operate with bipolar supplies ranging from ±2.7V to ±8V, or with a single supply of +2.7V to +15V. The MAX394 offers low on-resistance (less than 35Ω), guaranteed to match within 2Ω between channels and to remain flat over the analog signal range (Δ4Ω max). It also offers break-before-make switching (10ns typical), with turn-off times less than 75ns and turn-on times less than 130ns. The MAX394 is ideal for portable operation since quiescent current runs less than 1μA with all inputs high or low.
This monolithic, quad switch is fabricated with Maxim’s low-voltage silicon-gate process. Design improvements guarantee extremely low charge injection (10p C), low power consumption (10μW), and electrostatic discharge (ESD) greater than 2000V.
Logic inputs are TTL and CMOS patible and guaranteed over a +0.8V to +2.4V range for supply voltages up to +8V. When supplies exceed +8V, the inputs are typically +0.8V to +4V. Logic inputs and switched analog signals can range anywhere between the supply voltages without damage.
Applications
- Test Equipment
- munications Systems
- PBX, PABX
- Heads-Up Displays
- Portable Instruments
- Audio Signal Routing
- Set-Top Boxes
Pin Configuration
TOP VIEW IN1 1 NO1 2
1 3 NC1 4 V- 5 GND 6 NC2 7
2 8 NO2 9 IN2 10
20 IN4 19 NO4 18 4 17 NC4 16 V+ 15 N.C. 14 NC3 13 3 12 NO3 11 IN3
DIP/SO/TSSOP/SSOP
SWITCHES ARE SHOWN WITH LOGIC "0" INPUT N.C. = NOT INTERNALLY CONNECTED
Features
- Low On-Resistance, < 17Ω Typical (35Ω max)
- Guaranteed Matched On-Resistance Between
Channels, < 2Ω
- Guaranteed Flat On-Resistance over Analog
Signal Range, Δ4Ω Max
- Guaranteed Charge Injection < 10p C
- Guaranteed Off-Channel Leakage < 2.5n A at +85°C
- ESD Guaranteed > 2000V per Method 3015.7
- Single-Supply Operation (+2.7V to +15V)
Bipolar-Supply Operation (±2.7V to ±8V)
- TTL/CMOS-Logic patibility
- Rail-to-Rail Analog...