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DS2120N/a959avaiUltra3 LVD SCSI Terminator


DS2120 ,Ultra3 LVD SCSI TerminatorGENERAL DESCRIPTION The DS2120 Ultra3 LVD SCSI terminator is a low-voltage differential (LVD) termi ..
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DS2120
Ultra3 LVD SCSI Terminator
FEATURES � Fully Compliant with Ultra3, Ultra160,
Ultra320, and Ultra2 (LVD only) SCSI � Provides Low-Voltage Differential (LVD)
Termination for Nine Signal Line Pairs � Zero Temperature Coefficient Termination
Resistors � Autoselection of LVD Termination � 5% Tolerance on LVD Termination
Resistance � Low Power-Down Capacitance of 3pF � Built-In Mode Change Filter/Delay � On-Board Thermal Shutdown Circuitry � SCSI Bus Hot Plug Compatible
PIN CONFIGURATION

APPLICATIONS

Raid Systems
SCSI Host Bus Adapter Cards (HBA)
Servers
SCSI Cables
Network Attached Storage (NAS)
Storage Area Networks (SANs)
ORDERING INFORMATION
PART TEMP RANGE VOLTAGE
(V) PIN-PACKAGE TOP MARK*

DS2120B 0°C to +70°C 5 36 SSOP DS2120
DS2120B/T&R 0°C to +70°C 5 36 SSOP/Tape and Reel DS2120
DS2120E 0°C to +70°C 5 28 TSSOP DS2120
DS2120E+ 0°C to +70°C 5 28 TSSOP DS2120
DS2120E/T&R 0°C to +70°C 5 28 TSSOP/Tape and Reel DS2120
DS2120E+T&R 0°C to +70°C 5 28 TSSOP/Tape and Reel DS2120
DS2120
Ultra3 LVD SCSI Terminator

R1P
R1N
VREF
R2N
HS GND
HS GND
R3P
R3N
R4P
R4N
R2P
HS GND
R5P
R5N
ISO
GND
32
35
34
33
31
30
29
28
27
26
25
24
36
23
22
21
20
19
LVD
NC
R9N
R8N
R8P
HS GND
HS GND
HS GND
R7N
R7P
R6N
R9P
TPWR
NC
DIFF_CAP
DIFFSENSE
MSTR/SLV
R6P
SSOP

VREF
HS GND
R3P
R3N
R4P
R4N
R5P
R5N
ISO
GND
R1P
R1N
R2N
R2P
HS GND
R7N
R7P
R6N
TPWR
DIFF_CAP
DIFFSENSE
MSTR/SLV
R6P
R9N
R8N
R8P
R9P
TPWR115
16
17
18
28
27
26
25
24
23
22
21
20
19
TSSOP
DS2120
GENERAL DESCRIPTION

The DS2120 Ultra3 LVD SCSI terminator is a low-voltage differential (LVD) terminator. If the device is
connected in an LVD-only bus, the DS2120 uses LVD termination. If any single-ended (SE) or high-
voltage differential (HVD) devices are connected to the bus, the DS2120 disconnects from the bus. This
is accomplished inside the part automatically by sensing the voltage on the SCSI bus DIFFSENS line.
For the LVD termination, the DS2120 integrates two current sources with nine precision resistor strings.
Three DS2120 terminators are needed for a wide SCSI bus.
REFERENCE DOCUMENTS

Small Computer Systems Interface (SCSI-3) SCSI Parallel Interface (SPI) Project: 0855-M, 1995
Small Computer Systems Interface (SCSI-3) SCSI Parallel Interface 2 (SPI-2) Project: 1142-M, 1998
Small Computer Systems Interface (SCSI-3) SCSI Parallel Interface 3 (SPI-3) Project: 1302-D, 1999
Small Computer Systems Interface (SCSI-3) SCSI Parallel Interface 4 (SPI-4) Project: 1365-D, 200x
Available from:

American National Standards Institute (ANSI) Phone: 212-642-4900
Global Engineering Documents 15 Inverness Way East; Englewood, CO 80112 Phone: 800-854-7179
FUNCTIONAL DESCRIPTION

The DS2120 combines LVD termination with DIFFSENSE sourcing and detection.
LVD termination is provided by a laser-trimmed resistor biased with two current sources and a common-
mode voltage source, generated from a bandgap reference of 1.25V. The configuration is a y-type
terminator with a 105Ω differential and 150Ω common-mode resistance. A fail-safe bias of 112mV is
maintained when no drivers are connected to the SCSI bus. In non-LVD mode, the resistors are isolated
from the bus.
The DIFF_CAP pin of DS2120 monitors the DIFFSENS line to determine the proper operating mode of
the device. If the voltage on the DIFF_CAP is between 0.7V and 1.9V, the device enters LVD mode after
the mode-change delay. If the voltage at the DIFF_CAP later crosses one of the thresholds, the DS2120
again changes modes after the mode-change delay. The mode-change delay is the same when changing in
or out of LVD mode. A new mode change can start anytime after a previous mode change has been
detected. These modes are the following: • LVD Mode: LVD termination is provided by a precision laser-trimmed resistor string with two
current sources. This configuration yields a 105Ω differential and 150Ω common-mode
impedance. A fail-safe bias of 112mV is maintained when no drivers are connected to the SCSI
bus. • SE Isolation Mode: The DS2120 identifies that there is a SE (single-ended) device on the SCSI
bus and isolates the termination pins from the bus. • HVD Isolation Mode: The DS2120 identifies that there is an HVD device on the SCSI bus and
isolates the termination pins from the bus.
DS2120
During thermal shutdown, the termination pins are isolated from the SCSI bus and VREF becomes high
impedance. The DIFFSENS driver is shut down during either of these two events. The DIFF_CAP
receiver is disabled and the LVD goes low, indicating a non-LVD condition.
To ensure proper operation, the TPWR pin should be connected to the SCSI bus TERMPWR line. As
with all analog circuitry, the TERMPWR and VDD lines should be bypassed locally. A 2.2µF capacitor
and a 0.01µF high-frequency capacitor are recommended between TPWR and ground and placed as close
as possible to the DS2120. The DS2120 should be placed as close as possible to the SCSI connector to
minimize signal and power trace length, thereby lessening input capacitance and reflections that can
degrade the bus signals.
To maintain the specified regulation, a 4.7µF capacitor is required between the VREF pin and ground of
each DS2120. A high-frequency cap (0.1µF ceramic recommended) can also be placed on the VREF pin
in applications that use fast rise/fall-time drivers. A typical SCSI bus configuration is shown in Figure 2.
DIFFSENS Noise Filtering:
The DS2120 incorporates a digital filter to remove high-frequency
transients on the DIFFSENS control line, thereby eliminating erroneous switching between modes. This
filter eliminates the need for the external capacitor and resistor, which previously performed this function.
The external filter can be used in addition to the digital filter if the DS2120 and DS2118M or DS2119M
are to be used interchangeably.
NOTES:

1) DIFFSENS: Refers to the SCSI bus signal.
2) DIFFSENSE: Refers to the Dallas Semiconductor pin name and internal circuitry relating to
differential sensing.
DS2120
Figure 1. Block Diagram

MSTR/SLV
DIFFSENSE0.6V
2.15V
DIFF CAP
I_GEN
THERMAL
SHUTDOWN
Mode Change
Delay/Filter
REFERENCE
GENERATOR
1.25V
2.15V
1.30V
0.6V
CONTROL
LOGIC
ISO
1.30V
LVD
VREF
R1N
R1P
R9N
R9P
DS2120
Figure 2. SCSI Bus Configuration

DS2120
PIN DESCRIPTION
PIN
TSSOP SSOP NAME FUNCTION

1 1 VREF Regulator Output Voltage. 1.25V reference in LVD
mode; must be decoupled with a 4.7µF cap.
2–5, 7–12,
18–21,
23–26
4–7, 11–16,
22–25,
29–32
RxP, RxN Signal Termination. Connect to SCSI bus signal lines.
6, 22 8–10, 26–28 HS_GND Heat Sink Ground. Internally connected to the mounting
pad. Should be connected to ground.
13 17 ISO Isolation. When pulled high, terminating resistors and
biasing current sources are isolated from the SCSI bus.
14 18 GND Signal Ground
15 19 MSTR/SLV
Master/Slave. Mode select for the noncontrolling

terminator. When pulled high (MSTR), the DIFFSENS
driver is enabled.
16 20 DIFFSENSE DIFFSENSE. Output to drive the SCSI bus DIFFSENS
line.
17 21 DIFF_CAP
DIFFSENSE Capacitor. Connect a 0.1µF capacitor for

DIFFSENSE filter. Input to detect the type of device
(differential or single-ended) on the SCSI bus.
27, 28 36 TPWR Termination Power. Connect to the SCSI TERMPWR
line and decouple with 2.2µF capacitor.
— 34 LVD Low-Voltage Differential. Output of DIFFSENSE
receiver; output high indicates LVD bus operation. 2, 3, 33, 35 NC No Connection. Do not connect pins.
RECOMMENDED OPERATING CONDITIONS
PARAMETER SYMBOL MIN TYP MAX UNITSNOTES

Termpower Voltage, LVD Mode VTPWR(LVD) 2.7 5.5 V
Logic 0 VIL -0.3 +0.8 V 13
Logic 1 VIH 2.0 VTPWR +
0.3 V 13
Operating Temperature VAMB 0 70 °C
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