MAX1236EVKIT Maxim Integrated Products, MAX1236EVKIT Datasheet - Page 13

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MAX1236EVKIT

Manufacturer Part Number
MAX1236EVKIT
Description
EVAL KIT FOR MAX1236
Manufacturer
Maxim Integrated Products
Datasheets

Specifications of MAX1236EVKIT

Number Of Adc's
1
Number Of Bits
12
Sampling Rate (per Second)
94k
Data Interface
Serial
Inputs Per Adc
4 Single or 2 Differential
Input Range
±VREF/2
Power (typ) @ Conditions
3.35mW @ 94kSPS
Voltage Supply Source
Single Supply
Operating Temperature
0°C ~ 70°C
Utilized Ic / Part
MAX1236
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
A write cycle begins with the bus master issuing a
START condition followed by seven address bits (Figure
7) and a write bit (R/W = 0). If the address byte is suc-
cessfully received, the MAX1236–MAX1239 (slave)
issues an acknowledge. The master then writes to the
slave. The slave recognizes the received byte as the
set-up byte (Table 1) if the most significant bit (MSB) is
1. If the MSB is 0, the slave recognizes that byte as the
Figure 9. Write Cycle
Table 1. Setup Byte Format
(MSB)
BIT 7
REG
BIT
7
6
5
4
3
2
1
0
Configuration/Setup Bytes (Write Cycle)
2.7V to 3.6V and 4.5V to 5.5V, Low-Power,
4-/12-Channel, 2-Wire Serial, 12-Bit ADCs
______________________________________________________________________________________
BIP/UNI
NAME
BIT 6
SEL2
SEL2
SEL1
SEL0
REG
CLK
RST
X
A. ONE-BYTE WRITE CYCLE
B. TWO-BYTE WRITE CYCLE
S
S
1
1
SLAVE ADDRESS
SLAVE ADDRESS
MASTER TO SLAVE
SLAVE TO MASTER
Register bit. 1 = setup byte, 0 = configuration byte (see Table 2).
Three bits select the reference voltage and the state of AIN_/REF (Table 6). Default to 000 at
power-up.
1 = external clock, 0 = internal clock. Default to 0 at power-up.
1 = bipolar, 0 = unipolar. Default to 0 at power-up (see the Unipolar/Bipolar section).
1= no action, 0 = resets the configuration register to default. Setup register remains unchanged.
Don’t care, can be set to 1 or 0.
7
7
BIT 5
SEL1
SETUP OR CONFIGURATION BYTE
SETUP OR CONFIGURATION BYTE
MSB DETERMINES WHETHER
MSB DETERMINES WHETHER
W
W
1 1
1 1
A
A
CONFIGURATION BYTE
CONFIGURATION BYTE
SETUP OR
SETUP OR
BIT 4
SEL0
8
8
A
A
1
1
configuration byte (Table 2). The master can write either
one or two bytes to the slave in any order (setup byte,
then configuration byte; configuration byte, then setup
byte; setup byte or configuration byte only; Figure 9). If
the slave receives a byte successfully, it issues an
acknowledge. The master ends the write cycle by issu-
ing a STOP condition or a repeated START condition.
When operating in HS-mode, a STOP condition returns
the bus into F/S-mode (see the HS-Mode section).
P or Sr
CONFIGURATION BYTE
BIT 3
CLK
1
SETUP OR
DESCRIPTION
8
NUMBER OF BITS
BIP/UNI
BIT 2
A
1
P or Sr
1
NUMBER OF BITS
BIT 1
RST
(LSB)
BIT 0
X
13

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